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US20010026085A1 - Device for adjusting the cover of a sunroof of an automobile - Google Patents

Device for adjusting the cover of a sunroof of an automobile Download PDF

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Publication number
US20010026085A1
US20010026085A1 US09/798,374 US79837401A US2001026085A1 US 20010026085 A1 US20010026085 A1 US 20010026085A1 US 79837401 A US79837401 A US 79837401A US 2001026085 A1 US2001026085 A1 US 2001026085A1
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US
United States
Prior art keywords
longitudinal direction
cover part
fact
adjusting
cover
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US09/798,374
Inventor
Rolf Farmont
Eckehard Kelm
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Meritor Automotive GmbH
Original Assignee
Meritor Automotive GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Meritor Automotive GmbH filed Critical Meritor Automotive GmbH
Priority to US09/798,374 priority Critical patent/US20010026085A1/en
Publication of US20010026085A1 publication Critical patent/US20010026085A1/en
Priority to US10/026,202 priority patent/US6428093B1/en
Abandoned legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60JWINDOWS, WINDSCREENS, NON-FIXED ROOFS, DOORS, OR SIMILAR DEVICES FOR VEHICLES; REMOVABLE EXTERNAL PROTECTIVE COVERINGS SPECIALLY ADAPTED FOR VEHICLES
    • B60J7/00Non-fixed roofs; Roofs with movable panels, e.g. rotary sunroofs
    • B60J7/02Non-fixed roofs; Roofs with movable panels, e.g. rotary sunroofs of sliding type, e.g. comprising guide shoes
    • B60J7/04Non-fixed roofs; Roofs with movable panels, e.g. rotary sunroofs of sliding type, e.g. comprising guide shoes with rigid plate-like element or elements, e.g. open roofs with harmonica-type folding rigid panels
    • B60J7/057Driving or actuating arrangements e.g. manually operated levers or knobs
    • B60J7/0573Driving or actuating arrangements e.g. manually operated levers or knobs power driven arrangements, e.g. electrical
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60JWINDOWS, WINDSCREENS, NON-FIXED ROOFS, DOORS, OR SIMILAR DEVICES FOR VEHICLES; REMOVABLE EXTERNAL PROTECTIVE COVERINGS SPECIALLY ADAPTED FOR VEHICLES
    • B60J7/00Non-fixed roofs; Roofs with movable panels, e.g. rotary sunroofs
    • B60J7/02Non-fixed roofs; Roofs with movable panels, e.g. rotary sunroofs of sliding type, e.g. comprising guide shoes
    • B60J7/04Non-fixed roofs; Roofs with movable panels, e.g. rotary sunroofs of sliding type, e.g. comprising guide shoes with rigid plate-like element or elements, e.g. open roofs with harmonica-type folding rigid panels
    • B60J7/043Sunroofs e.g. sliding above the roof
    • B60J7/0435Sunroofs e.g. sliding above the roof pivoting upwardly to vent mode and moving at the outside of the roof to fully open mode

Definitions

  • the invention pertains to a device for adjusting a cover of a sunroof according to the preamble of claim 1 .
  • Sunroofs of this type contain at least one cover part for selectively closing and at least partially opening an opening in a rigid roof surface of an automobile, wherein said cover part can be tilted and slid.
  • At least one cover carrying element is connected to the cover part and can be tilted about a first cam that extends transverse to the sliding direction of the cover part, wherein said cover carrying element can also be slid along the sliding direction in the tilted position.
  • Guide rails are provided near the edges of the opening in the roof of the automobile in order to realize said sliding, wherein a transport carriage can be slid along said guide rails.
  • adjustment means are provided for tilting the cover part in such a way that the transport carriage and the cover part carry out a movement relative to one another along the sliding direction. If the cover part of such sunroofs is slid above the roof surface of the automobile, they are generally referred to as “spoiler roofs.”
  • the cover part is rigidly connected to a cover carrier that can be tilted and slid along a guide rail.
  • the cover carrier represents a self-contained component that can be slid in the same guide rail as the transport carriage, wherein the tilting axis of said cover carrier is positioned a significant cant distance in front of the transport carriage (as seen from the forward direction of the automobile). Consequently, the slidable assembly unavoidably has a significant length that limits the maximum degree of opening the cover part. This problem is particularly evident in spoiler roofs of this type, particularly when they are retrofitted into automobiles.
  • an opening lever is connected to the transport carriage via a cam arrangement and to the cover carrier or the cover part via a turning knuckle in tilted/articulated fashion.
  • the cam arrangement allows relative movement between the opening lever and the transport carriages.
  • the opening lever contains a locking cam that, as the tilting angle of the opening lever increases, continuously moves out of a catch opening in the guide rail, which is stationarily fixed to the frame and into the guide rail, until the locking cam is entirely located in the guide rail and can be slid therein.
  • this known adjusting device In this known adjusting device, the length of the movable assembly was reduced in comparison to previously known arrangements, and the friction during the forward and backward sliding is, significantly reduced in particular. In addition, the jolt occurring during the switching process was practically eliminated due to the elimination of the cam arrangement between the opening lever and the transport carriage.
  • this adjusting device still has the disadvantage of a relatively complex design and, specifically, a large number of components, the assembly of which is correspondingly complicated.
  • the invention is based on the objective of minimizing the resistance, i.e. the friction during the transition from the tilting phase to the sliding phase or from the sliding phase to the tilting phase of the cover part despite the relatively short length of the transport carriage and a minimization of the required components.
  • an adjusting device according to the characteristics of claim 1 , wherein at least one locking means for separately interlocking at least one transport carriage and the adjusting means, e.g., a cover carrier, is provided in order to tilt the cover part.
  • the guide element for the carriage element transport carriage
  • the guide element for the carriage element transport carriage
  • the adjusting element are effectively interlocked in the sliding direction, i.e., they are unable to carry out relative movements when the carriage element is slid between positions, between which the cover part is merely slid along the sliding direction in the tilted position.
  • the carriage element and the adjusting element are not interlocked, i.e., they are able to carry out relative movements in the sliding direction.
  • the cover carrier is no longer interlocked to the guide element, i.e., the guide rail that is rigidly fixed to the roof, by means of a separate locking arrangement, but the separate lock acts between the cover carrier or, in general, the adjusting means of the roof part and the carriage element, i.e., the transport carriage.
  • the locking means according to the invention only fulfills the function of a driver between the carriage and the adjusting means of the cover part when sliding the cover part into the closing direction.
  • frictional resistance as described previously with reference to DE-C2 3,311,452 is reliably prevented.
  • Frictional resistance as it occurs with the intersecting guide curves according to WO 94/25301 can also be prevented with the locking means according to the invention because any constraints due to intersecting guide curves are practically eliminated during this moving phase as well as during the transition from the sliding phase into the tilting phase or from the tilting phase into the sliding phase.
  • FIG. 1A a (section of a) spoiler roof that can be retrofitted and installed in the roof of a automobile, wherein the adjusting device is located in the closed position;
  • FIG. 1B a schematic horizontal section through the spoiler roof according to FIG. 1A along line IB-IB;
  • FIG. 2A the same spoiler roof in an operating position at the end of the tilting phase
  • FIG. 2B a horizontal section through the spoiler roof according to FIG. 2A (corresponding to the illustration in FIG. 1B);
  • FIG. 3A the same spoiler roof, wherein the cover part is tilted upward and partially slid toward the rear;
  • FIG. 3B a horizontal section through the same spoiler roof during the phase according to FIG. 3A (corresponding to the sectional representations in FIGS. 1 B and 2 B);
  • FIG. 4A a vertical section through the same spoiler roof along line A-A in FIG. 1A;
  • FIG. 4B a vertical section through the same spoiler roof along line B-B according to FIG. 1A;
  • FIG. 4C a vertical section through the same spoiler roof along line C-C according to FIG. 2A;
  • FIG. 4D a vertical section through the same spoiler roof along line D-D according to FIG. 2A;
  • FIG. 5A a longitudinal section through the adjusting device of a second embodiment of a spoiler roof (sectioned along line VA-VA according to FIG. 5B);
  • FIG. 5B a top view of the same adjusting device (view E according to FIG. 5A), wherein the upper guide rail region is also visible in this figure;
  • FIG. 6A the same adjusting device in operating position, in which the cover carrier is tilted and slid (corresponding to the operating position in FIG. 3), in the form of a longitudinal section along line VIA-VIA according to FIG. 6B;
  • FIG. 6B a top view of the same adjusting device (view D according to FIG. 6A), wherein the upper guide rail region is also visible in this figure;
  • FIG. 7A a vertical section through the same spoiler roof along line VIIA-VIIA according to FIG. 5A;
  • FIG. 7B a vertical section through the same spoiler roof along line VIIB-VIIB according to FIG. 6A;
  • FIG. 8A a longitudinal section through a third embodiment of a spoiler roof which corresponds to the representation in FIG. 5A;
  • FIG. 8B a longitudinal section through the same adjusting device which corresponds to the representation in FIG. 6A.
  • a separate locking arrangement between the cover carrier and the transport carriage is realized in the form of a mechanically controllable locking means that can be horizontally slid transverse to the sliding direction. This embodiment is described in detail below:
  • FIG. 1A shows that an approximately rectangular roof opening 14 with conventionally rounded corner regions is arranged in the roof surface 16 of an automobile, e.g., a passenger car (not shown in detail).
  • a two-part frame 13 A, 13 B surrounds the edge of the roof surface 16 near the opening in sealed fashion, e.g., as known from retrofit sunroofs.
  • Long extended guide elements 32 are connected to the sunroof frame 13 A, 13 B on both longitudinal edges of the roof opening.
  • These guide elements which, for example, consist of extruded aluminum have the function of guiding carriage elements 30 , which are simply referred to as the transport carriages in the following description, along two parallel edges of the sunroof opening, which lie opposite one another, with little friction and play.
  • the transport carriages 30 respectively carry one cover carrying element 20 that is rigidly connected to the cover part 12 which closes the sunroof opening.
  • the cover carrying elements 20 are guided on or in the transport carriages 30 such that they can be longitudinally slid between two extreme positions.
  • the cover carrying elements 20 and the transport carriages 30 are connected via a first front cam 22 provided on the carriages element 30 which can be slid in a first guide curve 24 provided in the transport carriage 30 so as, to slightly raise the front edge of the cover (shown on the left side in FIG. 1A).
  • a second cam 26 provided on the transport carriage 30 can be slid along a second guide curve 28 provided in the cover carrying element 20 .
  • This second cam arrangement makes it possible to raise the rear cover edge which is located on the right in FIG. 1A higher than the front cover edge, i.e., to tilt or pivot the cover 12 into the desired ventilation position above the roof surface 16 .
  • the first and the second guide curves 24 and 28 which generally extend in the same direction as the guide elements 32 have a correspondingly curved progression.
  • a (third) guide curve 40 is provided.
  • This guide curve is located on the front end of the guide element 32 and initially extends obliquely upward, whereafter it transforms into a horizontal progression.
  • the guide curve 40 guides a part of the first cam 22 which extends through the first guide curve 24 .
  • the first cam 22 and consequently the cover part 12 are prevented from sliding appreciably toward the rear.
  • the first cam rather carries out an upward movement that is only slightly oriented toward the rear, wherein said movement subsequently transforms into a more defined movement toward the rear with a less defined upward movement. Consequently, the transition between the tilting of the cover into the position shown in FIG.
  • a cam arrangement 40 , 22 of this type also serves for tilting the cover carrier independently of the carriage/cover interlocking according to the invention and the simultaneous penetration of the additional guide curve 24 , i.e., this cam arrangement itself has inventive merit.
  • the transport carriage 30 has a horizontal slot in which a locking means 34 of practically identical cross section is guided in low-friction fashion.
  • the locking means 34 consists of a relatively short formed piece with inclined surfaces on its ends, wherein said inclined surfaces correspond to a catch limit stop 38 on the transport carriage 20 and a switching surface 36 B of a control means on the guide element 32 which is designated by reference numeral 36 .
  • the control means 36 consists of a vertically oriented inner wall region of the guide element 32 which is oriented parallel to the sliding direction (FIG. 1B) of the transport carriage 30 indicated by a double arrow within its entire rear region (its right region in FIG. 1B).
  • the control means 36 only has a different progression within its front region (its left region in the figure), wherein this different progression is realized in the form of a depression 36 A in the guide element 32 . In this case, one end of the depression is formed by the switching surface 36 B.
  • the first embodiment as well as the two other embodiments indicates that it is preferred to subject the locking means 34 to a mechanical control based on a suitable orientation of mutual control surfaces, when locking as well as unlocking the locking means.
  • FIG. 3B shows the new position of the locking means 34 .
  • the first embodiment as well as all embodiments described below are also suitable for several cover parts that are arranged behind one another, i.e., so-called multi-spoiler roofs.
  • FIGS. 5A through 7B only the design of the locking means 34 differs from that of the first embodiment: in this case, the locking means 34 is no longer arranged in slidable fashion, but rather in tilted fashion on the transport carriage 30 .
  • An opening in the transport carriage 30 which is adapted to the cross section of the locking means may, in contrast to the first embodiment, be eliminated.
  • FIGS. 5B and 6B clearly show that the locking means contains a pivot arm 34 A that is realized in the form of a one-armed lever, carries the locking means 34 on its free lever end, and contains a pivot point 34 B arranged on the transport carriage 30 on its front end.
  • a cam arrangement 22 , 24 analogous to that of the first embodiment is also provided in the second embodiment but is not shown in the figure because it is arranged inside the transport carriage 30 .
  • the difference in comparison to the first embodiment can be seen in the fact that the moving direction of the locking means 34 does not extend horizontally, but rather vertically, whereby the control means 36 is located on the bottom wall of the guide element 32 .
  • the design of the locking means in the form of a lever corresponds to that of the second embodiment according to FIGS. 5A through 7B.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Fittings On The Vehicle Exterior For Carrying Loads, And Devices For Holding Or Mounting Articles (AREA)
  • Power-Operated Mechanisms For Wings (AREA)
  • Lock And Its Accessories (AREA)

Abstract

An apparatus for a sunroof that contains at least one cover part for selectively closing and at least partially opening an opening in a rigid roof surface of an automobile. The apparatus is used in conjunction with a roof opening that contains a base part with side parts that lie opposite one another and define a longitudinal direction. The sunroof includes a cover part that can be tilted as well as slid along the longitudinal direction. The apparatus includes a cover carrying element that is connected to the cover part and can be pivoted about a cam pin which extends transverse to the longitudinal direction and can slide along the longitudinal direction.

Description

  • The invention pertains to a device for adjusting a cover of a sunroof according to the preamble of claim [0001] 1.
  • Sunroofs of this type contain at least one cover part for selectively closing and at least partially opening an opening in a rigid roof surface of an automobile, wherein said cover part can be tilted and slid. At least one cover carrying element is connected to the cover part and can be tilted about a first cam that extends transverse to the sliding direction of the cover part, wherein said cover carrying element can also be slid along the sliding direction in the tilted position. Guide rails are provided near the edges of the opening in the roof of the automobile in order to realize said sliding, wherein a transport carriage can be slid along said guide rails. In addition, adjustment means are provided for tilting the cover part in such a way that the transport carriage and the cover part carry out a movement relative to one another along the sliding direction. If the cover part of such sunroofs is slid above the roof surface of the automobile, they are generally referred to as “spoiler roofs.”[0002]
  • In such spoiler roofs, it is problematic that the same transport carriage is used for realizing the tilting as well as the sliding of the cover part in that the sliding is usually not desired during the tilting process. Consequently, a so-called switching process is required such that when opening the cover part at the end of the tilting phase, the cover part which is initially held and prevented from sliding can be suitably slid toward the rear in the tilted position during the additional sliding of the transport carriage. This process takes place in the corresponding, reverse sequence when the sunroof is closed. [0003]
  • In one known spoiler roof (DE-C2 3,311,452) that was introduced on the market quite some time ago, the cover part is rigidly connected to a cover carrier that can be tilted and slid along a guide rail. In this case, the cover carrier represents a self-contained component that can be slid in the same guide rail as the transport carriage, wherein the tilting axis of said cover carrier is positioned a significant cant distance in front of the transport carriage (as seen from the forward direction of the automobile). Consequently, the slidable assembly unavoidably has a significant length that limits the maximum degree of opening the cover part. This problem is particularly evident in spoiler roofs of this type, particularly when they are retrofitted into automobiles. In this case, an opening lever is connected to the transport carriage via a cam arrangement and to the cover carrier or the cover part via a turning knuckle in tilted/articulated fashion. The cam arrangement allows relative movement between the opening lever and the transport carriages. In order to ensure that the cover part is not slid during the upward tilting movement while the transport carriage carries out its initial adjusting movement, the opening lever contains a locking cam that, as the tilting angle of the opening lever increases, continuously moves out of a catch opening in the guide rail, which is stationarily fixed to the frame and into the guide rail, until the locking cam is entirely located in the guide rail and can be slid therein. This means that all moving sequences must be coordinated in such a way that the cam arrangement between the transport carriage and the opening lever has reached the position in which the sliding of the cover part was started at exactly the instant in which the locking cam is completely moved into the guide rail. This switching process is associated with a certain jolt because the guide rail of the cam arrangement which initiates the switching process and starts the sliding process must have a significant inclination of approximately 40° so as to not transmit excessively high clamping forces upon the various cams during the subsequent forward sliding of the tilted cover. [0004]
  • During the forward sliding of the tilted cover part, one encounters the problem that the locking cams are guided in the same guide rail as the tilting cam of the cover carrier and the transport carriage, and that the locking cam must prevent a backward tilting of the cover part into the closed position during this sliding phase of the cover part. Consequently, the friction, to which the locking cam is subjected in the guide rail, increases in proportion to the flatness of the guide rail of the cam arrangement which causes the aforementioned switching processes. This is the reason a compromise had to be found between the intensity of the jolt and the intensity of the friction. [0005]
  • The previously described problems were significantly reduced when a spoiler roof (DE-C2 4,405,583) was introduced to the market at a later time. In this adjusting device, a toggle lever arrangement without guide curves is used instead of a cam arrangement consisting of a guide curve and cams. In this case, only one component that can be slid in a guide rail fixed to the frame is provided. This component accommodates the transport carriage as well as the cover carrier and makes it possible for both of these components to move relative to one another. A locking pin assigned to the roof carrier serves for locking the cover carrier to the rigid roof frame of the automobile during the tilting phase of the cover part. This locking pin cooperates with an opening in the guide rail that is rigidly connected to the automobile. In this known adjusting device, the length of the movable assembly was reduced in comparison to previously known arrangements, and the friction during the forward and backward sliding is, significantly reduced in particular. In addition, the jolt occurring during the switching process was practically eliminated due to the elimination of the cam arrangement between the opening lever and the transport carriage. However, this adjusting device still has the disadvantage of a relatively complex design and, specifically, a large number of components, the assembly of which is correspondingly complicated. [0006]
  • A significant reduction in the required components was achieved with the adjusting device according to WO 94/25301 which was introduced to the market at a later time. In this case, only a cover carrier, a transport carriage and a guide rail are required. Even the locking of the cover part in the closed position within the rear region of the cover part can be achieved with the previously described components. This is essentially achieved due to the fact that the pins for tilting the cover carrier are always guided in guide curves that intersect, wherein one guide curve is rigidly arranged on the automobile and the other guide curve is arranged in the transport carriage. This also makes it possible to eliminate locking elements for holding the cover carrier during the tilting phase. The basic principle of guide curves that intersect one another and serve for simultaneously accommodating the tilting axes for a cover carrier is also known from Japanese Patent No. 1-54 208. In both of these adjusting devices for spoiler roofs, the simplicity of which can scarcely be additionally improved, a noticeable jolt during the transition from the tilting phase to the sliding phase of the cover part cannot be eliminated. [0007]
  • In a device for adjusting spoiler roofs of the initially mentioned type, the invention is based on the objective of minimizing the resistance, i.e. the friction during the transition from the tilting phase to the sliding phase or from the sliding phase to the tilting phase of the cover part despite the relatively short length of the transport carriage and a minimization of the required components. [0008]
  • This objective is attained with an adjusting device according to the characteristics of claim [0009] 1, wherein at least one locking means for separately interlocking at least one transport carriage and the adjusting means, e.g., a cover carrier, is provided in order to tilt the cover part. In this case, the guide element for the carriage element (transport carriage) is provided with at least one control means, such that the carriage element and the adjusting element are effectively interlocked in the sliding direction, i.e., they are unable to carry out relative movements when the carriage element is slid between positions, between which the cover part is merely slid along the sliding direction in the tilted position. When the carriage element is slid between positions when the cover part is essentially aligned with the roof opening and merely tilted, the carriage element and the adjusting element are not interlocked, i.e., they are able to carry out relative movements in the sliding direction.
  • In contrast to the state of the art according to DE-C2 3,311,452 or DE-C2 4,405,583, the cover carrier is no longer interlocked to the guide element, i.e., the guide rail that is rigidly fixed to the roof, by means of a separate locking arrangement, but the separate lock acts between the cover carrier or, in general, the adjusting means of the roof part and the carriage element, i.e., the transport carriage. [0010]
  • Thus, the typical jolt that occurs during the transition from the tilting phase into the subsequent sliding phase of the cover part is eliminated. This is attained due to the fact that the cover part is not unlocked from an initially locked position by the locking means at the end of the tilting of the cover part because the locking means according to the invention is already in the unlocked position during the tilting phase and consequently does not fulfill the function of holding the cover part with respect to the sliding direction during the tilting phase. [0011]
  • In the simplest instance, the locking means according to the invention only fulfills the function of a driver between the carriage and the adjusting means of the cover part when sliding the cover part into the closing direction. Thus, frictional resistance as described previously with reference to DE-C2 3,311,452 is reliably prevented. Frictional resistance as it occurs with the intersecting guide curves according to WO 94/25301 can also be prevented with the locking means according to the invention because any constraints due to intersecting guide curves are practically eliminated during this moving phase as well as during the transition from the sliding phase into the tilting phase or from the tilting phase into the sliding phase. [0012]
  • Due to the very simple means according to the invention, excellent advantages can be realized. These advantages are described in detail below with reference to various embodiments. [0013]
  • Additional characteristics that pertain in particular to the various options of designing the locking means as well as transitions between the tilting phase and the sliding phase or the sliding phase and the tilting phase which are subject to particularly unnoticeable jolts are disclosed in the additional claims. [0014]
  • The aforementioned components as well as the components claimed and described in the embodiments and the components to be utilized in accordance with the invention are not subject to any particular restrictions regarding their size, shape, material selection and technical concept, i.e., the selection criteria known in the respective field of application can be applied in unlimited fashion.[0015]
  • Additional details, characteristics and advantages of the invention result from the following description of the corresponding figures which show embodiment examples of the adjusting device. The drawing shows: [0016]
  • FIG. 1A a (section of a) spoiler roof that can be retrofitted and installed in the roof of a automobile, wherein the adjusting device is located in the closed position; [0017]
  • FIG. 1B a schematic horizontal section through the spoiler roof according to FIG. 1A along line IB-IB; [0018]
  • FIG. 2A the same spoiler roof in an operating position at the end of the tilting phase; [0019]
  • FIG. 2B a horizontal section through the spoiler roof according to FIG. 2A (corresponding to the illustration in FIG. 1B); [0020]
  • FIG. 3A the same spoiler roof, wherein the cover part is tilted upward and partially slid toward the rear; [0021]
  • FIG. 3B a horizontal section through the same spoiler roof during the phase according to FIG. 3A (corresponding to the sectional representations in FIGS. [0022] 1B and 2B);
  • FIG. 4A a vertical section through the same spoiler roof along line A-A in FIG. 1A; [0023]
  • FIG. 4B a vertical section through the same spoiler roof along line B-B according to FIG. 1A; [0024]
  • FIG. 4C a vertical section through the same spoiler roof along line C-C according to FIG. 2A; [0025]
  • FIG. 4D a vertical section through the same spoiler roof along line D-D according to FIG. 2A; [0026]
  • FIG. 5A a longitudinal section through the adjusting device of a second embodiment of a spoiler roof (sectioned along line VA-VA according to FIG. 5B); [0027]
  • FIG. 5B a top view of the same adjusting device (view E according to FIG. 5A), wherein the upper guide rail region is also visible in this figure; [0028]
  • FIG. 6A the same adjusting device in operating position, in which the cover carrier is tilted and slid (corresponding to the operating position in FIG. 3), in the form of a longitudinal section along line VIA-VIA according to FIG. 6B; [0029]
  • FIG. 6B a top view of the same adjusting device (view D according to FIG. 6A), wherein the upper guide rail region is also visible in this figure; [0030]
  • FIG. 7A a vertical section through the same spoiler roof along line VIIA-VIIA according to FIG. 5A; [0031]
  • FIG. 7B a vertical section through the same spoiler roof along line VIIB-VIIB according to FIG. 6A; [0032]
  • FIG. 8A a longitudinal section through a third embodiment of a spoiler roof which corresponds to the representation in FIG. 5A; and [0033]
  • FIG. 8B a longitudinal section through the same adjusting device which corresponds to the representation in FIG. 6A.[0034]
  • In the first embodiment according to FIGS. 1A through 4D, a separate locking arrangement between the cover carrier and the transport carriage is realized in the form of a mechanically controllable locking means that can be horizontally slid transverse to the sliding direction. This embodiment is described in detail below: [0035]
  • FIG. 1A shows that an approximately rectangular roof opening [0036] 14 with conventionally rounded corner regions is arranged in the roof surface 16 of an automobile, e.g., a passenger car (not shown in detail). At the edge of the opening, a two-part frame 13A, 13B surrounds the edge of the roof surface 16 near the opening in sealed fashion, e.g., as known from retrofit sunroofs. Long extended guide elements 32 are connected to the sunroof frame 13A, 13B on both longitudinal edges of the roof opening. These guide elements which, for example, consist of extruded aluminum have the function of guiding carriage elements 30, which are simply referred to as the transport carriages in the following description, along two parallel edges of the sunroof opening, which lie opposite one another, with little friction and play. The transport carriages 30 respectively carry one cover carrying element 20 that is rigidly connected to the cover part 12 which closes the sunroof opening. The cover carrying elements 20 are guided on or in the transport carriages 30 such that they can be longitudinally slid between two extreme positions. The cover carrying elements 20 and the transport carriages 30 are connected via a first front cam 22 provided on the carriages element 30 which can be slid in a first guide curve 24 provided in the transport carriage 30 so as, to slightly raise the front edge of the cover (shown on the left side in FIG. 1A). A second cam 26 provided on the transport carriage 30 can be slid along a second guide curve 28 provided in the cover carrying element 20. This second cam arrangement makes it possible to raise the rear cover edge which is located on the right in FIG. 1A higher than the front cover edge, i.e., to tilt or pivot the cover 12 into the desired ventilation position above the roof surface 16. In order to fulfill this function, the first and the second guide curves 24 and 28 which generally extend in the same direction as the guide elements 32 have a correspondingly curved progression.
  • In addition, a (third) [0037] guide curve 40 is provided. This guide curve is located on the front end of the guide element 32 and initially extends obliquely upward, whereafter it transforms into a horizontal progression. The guide curve 40 guides a part of the first cam 22 which extends through the first guide curve 24. Within the first section of the third guide curve 40 which extends obliquely upward toward the rear, the first cam 22 and consequently the cover part 12 are prevented from sliding appreciably toward the rear. Within this section, the first cam rather carries out an upward movement that is only slightly oriented toward the rear, wherein said movement subsequently transforms into a more defined movement toward the rear with a less defined upward movement. Consequently, the transition between the tilting of the cover into the position shown in FIG. 2A and the subsequent cover sliding phase into the open position shown in FIG. 3A takes place very smooth and without jolts. This means that the cover carrying element initially moves significantly more slowly than the transport carriage and only gradually assumes the speed of the transport carriage. A cam arrangement 40, 22 of this type also serves for tilting the cover carrier independently of the carriage/cover interlocking according to the invention and the simultaneous penetration of the additional guide curve 24, i.e., this cam arrangement itself has inventive merit.
  • To the extent described thus far, all three embodiments of the present invention essentially correspond to the arrangement known from WO 94/25301. The elements which are novel in comparison to the state of the art are described in detail below. [0038]
  • In the embodiment according to FIGS. 1A through 4D, the [0039] transport carriage 30 has a horizontal slot in which a locking means 34 of practically identical cross section is guided in low-friction fashion. The locking means 34 consists of a relatively short formed piece with inclined surfaces on its ends, wherein said inclined surfaces correspond to a catch limit stop 38 on the transport carriage 20 and a switching surface 36B of a control means on the guide element 32 which is designated by reference numeral 36. The control means 36 consists of a vertically oriented inner wall region of the guide element 32 which is oriented parallel to the sliding direction (FIG. 1B) of the transport carriage 30 indicated by a double arrow within its entire rear region (its right region in FIG. 1B). The control means 36 only has a different progression within its front region (its left region in the figure), wherein this different progression is realized in the form of a depression 36A in the guide element 32. In this case, one end of the depression is formed by the switching surface 36B.
  • When the [0040] cover part 12 is closed and in the carriage positions, in which the cover part is tilted, i.e., in all positions between the carriage positions shown in FIG. 1A and FIG. 2A, the locking means 34 in the transport carriage 30 is slid outwardly and protrudes into the aforementioned depression 36A of the control means 36, whereby said locking means does not engage with the cover carrying element 20, but is rather prevented in appropriate fashion.
  • The first embodiment as well as the two other embodiments indicates that it is preferred to subject the locking means [0041] 34 to a mechanical control based on a suitable orientation of mutual control surfaces, when locking as well as unlocking the locking means.
  • Once the [0042] transport carriage 30 is slid into the position shown in FIG. 2A and FIG. 2B, the additional sliding of the transport carriage 30 toward the rear (toward the right in the figure) causes the locking means 34 to be moved out of its position by means of the switching surface 36B, i.e., the locking means is moved out of the depression of the control means 36 and simultaneously pressed into the locked position relative to the catch limit stop 38 on the cover carrying element 20. FIG. 3B shows the new position of the locking means 34.
  • During the additional sliding of the [0043] transport carriage 30 toward the rear (toward the right in the figure), the locking means 34 is still not subjected to any stress because the first cam 22 is now in contact with the front end of the first guide curve 24 of the transport carriage 30, i.e., the transport carriage 30 drives the cover carrying element 20 toward the rear.
  • When the [0044] transport carriage 30 is slid forward again from its open position shown in FIGS. 3A/3B in order to gradually close the roof opening 14, the locking means 34 in the transport carriage 30 drives the cover carrying element 20 and is subjected to stress. The locking means 34 is only returned into its unlocked position according to FIG. 2B shortly before the carriage sliding position shown in FIGS. 2A/2B is reached again. This process takes place automatically due to the forward sliding of the transport carriage 30 (sliding toward the left in the figure). This automation is attained due to a suitable inclination of the catch limit stop 38 and the corresponding end region of the locking means 34, whereby the outer region of the first cam 22 is already moved into the third guide curve 40 and adjoins the region of the guide curve which extends transversely downward in this position. Consequently, the resistance generated between the transport carriage 30 and the cover carrying element 20 only need be high enough that the locking means 34 is laterally slid into the depression 36A of the control means 36. If the corresponding inclined surfaces of the locking limit stop 38 and the locking means 34 are suitably shaped, the force required for this lateral sliding is so low that it can be barely noticed.
  • Consequently, the end of the sliding path of the [0045] cover part 12 in the closing direction and the transition into the lowering phase of the cover part 12 are not subject to jolts. This effect is even promoted due to the fact that the first guide curve 24 in the transport carriage 30 has a nearly horizontal progression on its front end 24A, i.e., a progression that extends parallel to the guide element 32. This nearly horizontal progression not only serves as an insertion aid into the open end of the third guide curve 40, but also allows a completely smooth transition of the movement of the first cam 22 from its raised position into the subsequent lowering phase.
  • The first embodiment as well as all embodiments described below are also suitable for several cover parts that are arranged behind one another, i.e., so-called multi-spoiler roofs. [0046]
  • In the second embodiment according to FIGS. 5A through 7B, only the design of the locking means [0047] 34 differs from that of the first embodiment: in this case, the locking means 34 is no longer arranged in slidable fashion, but rather in tilted fashion on the transport carriage 30. An opening in the transport carriage 30 which is adapted to the cross section of the locking means may, in contrast to the first embodiment, be eliminated. FIGS. 5B and 6B clearly show that the locking means contains a pivot arm 34A that is realized in the form of a one-armed lever, carries the locking means 34 on its free lever end, and contains a pivot point 34B arranged on the transport carriage 30 on its front end. A cam arrangement 22, 24 analogous to that of the first embodiment is also provided in the second embodiment but is not shown in the figure because it is arranged inside the transport carriage 30.
  • In the third embodiment according to FIGS. [0048] 8A and BB, the difference in comparison to the first embodiment can be seen in the fact that the moving direction of the locking means 34 does not extend horizontally, but rather vertically, whereby the control means 36 is located on the bottom wall of the guide element 32. In other respects, the design of the locking means in the form of a lever corresponds to that of the second embodiment according to FIGS. 5A through 7B.
  • LIST OF REFERENCE NUMERALS
  • [0049] 10 Adjusting device
  • [0050] 12 Cover part
  • [0051] 13A Partial frame
  • [0052] 13B Partial frame
  • [0053] 14 Roof opening
  • [0054] 16 Roof surface
  • [0055] 18 Side parts
  • [0056] 20 Cover carrying element
  • [0057] 22 First cam
  • [0058] 24 First guide curve
  • [0059] 24A Horizontal region
  • [0060] 26 Second cam
  • [0061] 28 Second guide curve
  • [0062] 30 Transport carriage
  • [0063] 32 Guide element
  • [0064] 34 Locking means
  • [0065] 34A Pivot arm
  • [0066] 34B Pivot point
  • [0067] 36 Control means
  • [0068] 36A Depression
  • [0069] 36B Switching surface
  • [0070] 38 Catch limit stop
  • [0071] 40 Third guide curve
  • D Longitudinal direction [0072]

Claims (10)

1. Adjusting device (10) for a sunroof that contains at least one cover part (12) for selectively closing and at least partially opening an opening (14) in a rigid roof surface (16) of an automobile, wherein the roof opening is limited by a base part with side parts (18) that lie opposite one another and define a longitudinal direction (D), and wherein said cover part (12) can be tilted as well as slid along this longitudinal direction (D),
with at least one cover carrying element (20) that is connected to the cover part (12) and that can be tilted (pivoted) about a first cam (22) that extends transverse to the longitudinal direction (D) and slid along the longitudinal direction (D),
with at least one guide element (32) that extends along the longitudinal direction (D) and that is provided on the base part,
with at least one carriage element (transport carriage 30) that is guided in slidable fashion along the guide element (32) and moves the cover part (12), and
with adjusting means (20-28) for tilting and sliding the cover part (12), wherein said adjusting means connects the cover part (12) to the carriage element (30) such that they can be moved relative to one another and slid along the longitudinal direction (D), characterized by the fact
that at least one locking means (34) is provided for independently interlocking the at least one carriage element (30) and one adjusting means (20),
that the at least one guide element (32) is provided with at least one control means (36), such that the carriage element (30) and the adjusting means (20) are effectively interlocked in the longitudinal direction (D), i.e., the carriage element and the adjusting means are unable to move relative to one another, when the carriage element (30) is slid between positions between which the cover part (12) is essentially only slid in the longitudinal direction (D) in the tilted position, and
that the carriage element (30) and the adjusting means (20) are disengaged from one another, i.e., the carriage element and the adjusting means are able to move relative to one another in the longitudinal direction (D), when the carriage element (30) is slid between positions in which the cover part (12) is essentially aligned with the roof opening (14) and merely tilted.
2. Adjusting device according to
claim 1
, characterized by the fact that the locking means is realized in the form of a locking means that acts on one side and is arranged in such a way that it only transmits driving forces onto the adjusting means (20) during the closing movement of the carriage element (30) in the sliding phase.
3. Adjusting device according to
claim 2
, characterized by the fact that the locking means (34) engages behind the rear end region of the adjusting means (20) in the interlocked position.
4. Adjusting device according to one of claims 1-3, characterized by the fact that the control means is arranged on the guide element (32), and by the fact that the control means contains a depression (36A) for partially accommodating the locking means (34) in the unlocked position.
5. Adjusting device according to one of claims 1-4, characterized by the fact that the control means (36) contains a switching surface (36B) for sliding the locking means (34) during the opening movement of the carriage element (30), namely from the unlocked position into a position in which the carriage element (30) and the adjusting means (20) are interlocked.
6. Adjusting device according to one of claims 1-5, characterized by the fact that the locking means (34) is provided with a pivot arm (34A) for pivoting the locking means (34) about a pivot point (34B) arranged on the carriage element (30).
7. Adjusting device according to one of claims 1-6, characterized by the fact that first and second cam arrangements (22, 24; 26, 28) that act between the adjusting means (20) and the carriage element (30) carry out the raising and lowering movements of the adjusting means (20).
8. Adjusting device according to
claim 7
, characterized by the fact that the first cam arrangement (22, 24) which serves for raising the front edge of the cover is provided with a front guide curve zone (24A), the inclination of which approximately corresponds to the longitudinal direction (D), in particular, extends parallel to said longitudinal direction.
9. Adjusting device according to one of claims 1-8, characterized by the fact that a cam arrangement (22, 40) that acts between the adjusting means (20) and the guide element (32) is provided, wherein a guide curve (40) arranged within the front guide region contains a region (40A) that inclines toward the rear and transforms into a region (40B) that extends approximately parallel to the longitudinal direction (D).
10. Adjusting device according to
claim 9
, characterized by the fact that the guide curve (40B) contains an opening that is directed toward the rear and serves as an inlet and an outlet for the cam (22).
US09/798,374 1998-06-19 2001-03-02 Device for adjusting the cover of a sunroof of an automobile Abandoned US20010026085A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
US09/798,374 US20010026085A1 (en) 1998-06-19 2001-03-02 Device for adjusting the cover of a sunroof of an automobile
US10/026,202 US6428093B1 (en) 1998-06-19 2001-12-21 Device for adjusting the cover of a sunroof of an automobile

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE29811016U DE29811016U1 (en) 1998-06-19 1998-06-19 Adjustment device for a sun roof of a vehicle
DEDE29811016.4 1998-06-19
US33662099A 1999-06-18 1999-06-18
US09/798,374 US20010026085A1 (en) 1998-06-19 2001-03-02 Device for adjusting the cover of a sunroof of an automobile

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US33662099A Continuation 1998-06-19 1999-06-18

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US10/026,202 Continuation US6428093B1 (en) 1998-06-19 2001-12-21 Device for adjusting the cover of a sunroof of an automobile

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US20010026085A1 true US20010026085A1 (en) 2001-10-04

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US09/798,374 Abandoned US20010026085A1 (en) 1998-06-19 2001-03-02 Device for adjusting the cover of a sunroof of an automobile
US10/026,202 Expired - Fee Related US6428093B1 (en) 1998-06-19 2001-12-21 Device for adjusting the cover of a sunroof of an automobile

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090212603A1 (en) * 2008-02-26 2009-08-27 Yachiyo Industry Co., Ltd. Slider structure of sunroof apparatus
US20130276560A1 (en) * 2010-10-19 2013-10-24 Michael Heidan Drive system for a sliding roof or a window opener
US20140000168A1 (en) * 2012-06-27 2014-01-02 Yachiyo Industry Co., Ltd. Openable Roof Window
CN106467010A (en) * 2015-08-21 2017-03-01 博斯股份有限两合公司 Roof assembly for motor vehicles
CN110370903A (en) * 2018-04-12 2019-10-25 英纳法天窗系统集团有限公司 Roof systems for vehicles
CN110792351A (en) * 2019-10-31 2020-02-14 广东图特家居科技股份有限公司 Arc-shaped guide rail assembly, guide mechanism and horizontal sliding door device
CN112272623A (en) * 2018-06-12 2021-01-26 韦巴斯托股份公司 Assembly of a cover for a vehicle roof and vehicle roof for a motor vehicle

Families Citing this family (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10009387C5 (en) * 2000-02-29 2007-08-02 Webasto S.P.A., Venaria Device for controlling the movement of a vehicle sliding roof cover
US20020152686A1 (en) * 2001-04-18 2002-10-24 William Whitehead Illuminating weatherseal
DE10205612C2 (en) * 2002-02-11 2003-12-11 Webasto Vehicle Sys Int Gmbh Openable vehicle roof
US6695398B2 (en) * 2002-06-13 2004-02-24 Webasto Sunroofs, Inc. Spoiler sunroof mechanism
DE10240636A1 (en) 2002-09-03 2004-03-11 Arvinmeritor Gmbh Guide mechanism for a cover of a sliding / lifting roof
DE10354832A1 (en) * 2003-11-24 2005-06-23 Arvinmeritor Gmbh Adjustment mechanism for a sliding / lifting roof
DE202004001916U1 (en) * 2004-02-09 2004-04-08 Arvinmeritor Gmbh Mechanism for a sunroof
EP1844967A1 (en) * 2006-04-04 2007-10-17 ArvinMeritor GmbH Slidable sun roof system
DE102006050852B4 (en) * 2006-10-27 2009-04-23 Webasto Ag Cover lifting link for controlling a two-phase lifting movement of a lid
DE102006050848B4 (en) * 2006-10-27 2009-10-22 Webasto Ag guide rail
JP5029223B2 (en) * 2007-08-28 2012-09-19 村田機械株式会社 Machine tool with partition plate
US9623622B2 (en) 2010-02-24 2017-04-18 Michael Baines Packaging materials and methods
EP3138711B1 (en) * 2015-08-21 2019-03-27 BOS GmbH & Co. KG Roof system for a motor vehicle
DE102016102720A1 (en) 2016-02-16 2017-08-17 Webasto SE Arrangement for a cover for a vehicle roof and method for operating a mechanism for moving a cover for a vehicle roof

Family Cites Families (78)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1387062A (en) 1921-08-09 Am-cerculatiolt-controllotg device fob automobile-radiators
US1272983A (en) 1918-02-26 1918-07-16 Salvatore Guzzo Menzo Furniture construction.
US1787451A (en) 1929-12-09 1931-01-06 Nat Lock Washer Co Curtain fixture
GB349172A (en) 1930-03-08 1931-05-28 Duple Bodies And Motors Ltd Improvements in or relating to hoods for vehicles
US2338309A (en) 1939-05-03 1944-01-04 Briggs Mfg Co Vehicle body
GB573355A (en) 1943-12-10 1945-11-16 Edgar Walter Neale Improvements relating to slidable roofs for motor vehicle saloon bodies
US2516702A (en) 1946-12-26 1950-07-25 American Machine & Metals Damper and heating unit
US2497419A (en) 1946-12-30 1950-02-14 Victor Tool & Machine Corp Awning
US2853340A (en) 1956-12-17 1958-09-23 Vilas D Hershberger Telescoping roof for trucks and trailers
US3906669A (en) 1973-03-02 1975-09-23 Lockheed Aircraft Corp Window assembly
US3845591A (en) 1973-06-11 1974-11-05 J Stine Expandable cover system
CH571641A5 (en) 1974-05-14 1976-01-15 Baumann & Co G Hinged-slatted venetian draw-blind - with bottom slat angled when lowered for progressive angled overlap on raising
US4068699A (en) 1975-10-14 1978-01-17 Tucker Lyndell L Fireplace closure
US4286821A (en) 1980-03-26 1981-09-01 Herbert Cooper Automobile body with a retractable hard top roof
DE3020675C2 (en) 1980-05-30 1987-01-02 Rockwell Golde Gmbh, 6000 Frankfurt Lift and slide roof for motor vehicles
DE3116641A1 (en) 1981-04-27 1982-11-18 Sekura Komfortkabinen GmbH, 6252 Diez Protective driver's cabin for vehicles
JPS5825722U (en) 1981-08-14 1983-02-18 アイシン精機株式会社 Sun shades for car roof windows
US4403805A (en) 1982-01-06 1983-09-13 General Motors Corporation Sliding sunroof with power operated ventilator
JPS58118418A (en) * 1982-01-08 1983-07-14 Daikiyoo Bebasuto Kk Cover body shifting method of sun-roof
DE3311452A1 (en) * 1982-04-16 1983-10-20 Webasto-Werk W. Baier GmbH & Co, 8035 Gauting Tilting sunroof
JPS58157824U (en) * 1982-04-16 1983-10-21 ダイキヨ−・ベバスト株式会社 vehicle roof window
DE3218209C2 (en) 1982-05-14 1986-10-16 Webasto-Werk W. Baier GmbH & Co, 8035 Gauting Sliding roof for motor vehicles
DE3316739A1 (en) 1982-07-16 1984-01-19 Webasto-Werk W. Baier GmbH & Co, 8035 Gauting MOTOR VEHICLE ROOF
NL182461C (en) 1982-12-30 1988-03-16 Vermeulen Hollandia Octrooien SLIDING ROOF FOR A VEHICLE.
NL186303C (en) 1983-05-06 1990-11-01 Vermeulen Hollandia Octrooien ROOF CONSTRUCTION FOR A VEHICLE WITH A RIGID PANEL UNDER A FIXED ROOF AND ABOVE IN A VENTILATION POSITION.
NL8301610A (en) 1983-05-06 1984-12-03 Vermeulen Hollandia Octrooien OPEN ROOF CONSTRUCTION FOR A VEHICLE.
DE3408056A1 (en) 1984-03-05 1985-09-05 Webasto-Werk W. Baier GmbH & Co, 8035 Gauting LIFTING AND SUNROOF FOR VEHICLES
DE3442631A1 (en) 1984-11-22 1986-05-22 Webasto-Werk W. Baier GmbH & Co, 8035 Gauting SLIDING LIFTING ROOF
DE3442615C2 (en) 1984-11-22 1986-10-02 Daimler-Benz Ag, 7000 Stuttgart Sliding lifting roof
DE3506460A1 (en) 1985-02-23 1986-08-28 Andreas 4040 Neuss Krüll Roller shutter or roller web made of individual slats
GB8506558D0 (en) 1985-03-13 1985-04-17 Britax Weathershields Opening roof for motor vehicle
DE3524840A1 (en) 1985-07-11 1987-01-15 Weinsberg Karosseriewerke LOW-SIDED SUNROOF FOR MOTOR VEHICLES
DE3572330D1 (en) 1985-09-05 1989-09-21 Vermeulen Hollandia Octrooien Open roof-construction for a vehicle
DE3545870C2 (en) 1985-12-23 1993-12-09 Webasto Werk Baier Kg W Vehicle sunroof
US4869548A (en) 1986-03-10 1989-09-26 Ohi Seisakusho Company, Limited Sunroof apparatus for vehicle
DE3715268A1 (en) * 1986-07-12 1988-01-21 Webasto Werk Baier Kg W Operating device for a vehicle roof
FR2601303B1 (en) 1986-07-12 1992-02-14 Webasto Werk Baier Kg W MANEUVERING DEVICE FOR AN OPENING ROOF OF A VEHICLE IN WHICH THE OPERATION LEVER IS CONNECTED WITH THE FIRST SLIDING ELEMENT.
JPH0428816Y2 (en) * 1987-01-22 1992-07-14
JPH0341940Y2 (en) 1987-01-28 1991-09-03
US4852938A (en) 1987-02-05 1989-08-01 Nissan Design International, Inc. Transparent roof convertible automobile with retractable sunshade
US4982995A (en) 1987-07-17 1991-01-08 Ohi Seisakusho Co., Ltd. Lid regulating device for sun roof structure
JPS6454208A (en) 1987-08-25 1989-03-01 O G Joho Syst Kk Shape detecting method
DE3732548A1 (en) 1987-09-26 1989-04-20 Ford Werke Ag EXTENDING SUNROOF FOR MOTOR VEHICLES
NL8801028A (en) 1988-04-21 1989-11-16 Vermeulen Hollandia Octrooien OPEN ROOF CONSTRUCTION FOR A VEHICLE.
US4893868A (en) 1988-07-18 1990-01-16 Cars & Concepts, Inc. Vehicle door-to-door sunroof assembly
KR930000747B1 (en) 1988-07-30 1993-01-30 마쯔다 가부시기가이샤 Canvas top of car
US5026113A (en) 1988-09-09 1991-06-25 Sky-Top Sunroofs Ltd. Sliding and venting sunroof
NL8802552A (en) 1988-10-17 1990-05-16 Vermeulen Hollandia Octrooien OPEN ROOF CONSTRUCTION FOR A VEHICLE.
DE3903035A1 (en) 1989-02-02 1990-08-09 Webasto Ag Fahrzeugtechnik VEHICLE ROOF WITH A LOCKABLE ROOF CUTTING
JPH085319B2 (en) 1989-02-27 1996-01-24 日産自動車株式会社 Car sunroof structure
FR2648403A1 (en) 1989-06-15 1990-12-21 Heuliez Henri France Design MECHANISM FOR OPENING, CLOSING AND MAINTAINING A MOBILE PANEL WITH RESPECT TO A FIXED SURFACE, IN PARTICULAR FOR A ROOF OPENING FROM A MOTOR VEHICLE
DE3920909A1 (en) 1989-06-26 1991-01-03 Farmont Produktion Sliding roof for vehicle - makes use of positive connection drive wheel to move cover
US5197779A (en) 1989-06-27 1993-03-30 Mazda Motor Corporation Power sliding sunroof
DE3930756A1 (en) * 1989-09-14 1991-03-28 Webasto Ag Fahrzeugtechnik Sliding and tilting sunroof operating mechanism - has two levers, fixed at one end to each other and extending in same direction
JPH03125628A (en) 1989-10-09 1991-05-29 Daikyo Webasto Co Ltd Trim lifting and lowering device for sun roof
JPH0490924A (en) 1990-08-03 1992-03-24 Mazda Motor Corp Vehicle sunroof
IT1242092B (en) * 1990-10-09 1994-02-16 Zani Srl DRIVE DEVICE FOR OPENING AND CLOSING ROOFS FOR VEHICLES
DE4100898A1 (en) 1991-01-15 1992-07-16 Weinsberg Karosseriewerke Sliding roof for vehicle - makes use of sliding link to close roof against seal
DE4123229C2 (en) 1991-07-13 1994-02-24 Webasto Ag Fahrzeugtechnik Vehicle roof with a series of sliding slats
DE4127624C1 (en) 1991-08-21 1992-09-24 Webasto Ag Fahrzeugtechnik, 8035 Stockdorf, De
DE4129860C1 (en) 1991-09-07 1992-09-17 Webasto Ag Fahrzeugtechnik, 8035 Stockdorf, De
DE59204071D1 (en) 1992-02-18 1995-11-23 Webasto Karosseriesysteme Crank drive for an adjustable part of a vehicle roof.
DE4227402C1 (en) 1992-08-19 1994-01-13 Webasto Karosseriesysteme Vehicle roof
DE4227400C2 (en) 1992-08-19 1997-07-17 Webasto Karosseriesysteme sunroof
DE4233507C1 (en) 1992-10-06 1993-11-11 Webasto Karosseriesysteme Vehicle roof with a series of slats
DE4238944C1 (en) * 1992-11-19 1993-10-14 Webasto Karosseriesysteme Vehicle roof with sliding and tilting panel - has rear pins on panel working in horizontal guides fixed above roof and extension mechanism detachable from guide in panel
DE9301259U1 (en) 1993-01-29 1993-05-19 Koch, Hubert, 85716 Unterschleißheim Protective contact device for closing edges
DE9302762U1 (en) * 1993-02-25 1993-04-15 Kelm, Eckehart, 8031 Gilching Adjustment device for a lift-sliding roof
US5287655A (en) 1993-03-01 1994-02-22 Metal Industries, Inc. Roller arrangement for sliding panels
DE9306187U1 (en) * 1993-04-23 1993-11-25 Kelm, Eckehart, 82205 Gilching sunroof
DE4320106C2 (en) * 1993-06-17 1997-08-14 Hs Products Ag Systemtechnik U Device for controlling the movement of a vehicle sunroof cover
DE4407286C1 (en) 1994-03-04 1995-05-04 Webasto Karosseriesysteme Vehicle roof with a sequence of slats
US5464267A (en) 1994-04-18 1995-11-07 Webasto Sunroofs, Inc. Stable lift mechanism for spoiler sun roof panel
DE9412816U1 (en) 1994-08-09 1995-12-07 Westmont Technik GmbH & Co. KG, 40474 Düsseldorf Guide for slats
DE9412811U1 (en) 1994-08-09 1995-12-07 Westmont Technik GmbH & Co. KG, 40474 Düsseldorf Sun protection device, in particular for translucent sun roofs
KR0150855B1 (en) 1995-10-20 1998-08-17 강재헌 Heavy Metal Biosorbents Manufactured from Biological Resources
US5816647A (en) 1996-03-27 1998-10-06 Westmont Technik Gmbh & Co. Kg Louver arrangement for vehicle sun roofs, especially transparent ones
DE19613471A1 (en) 1996-04-04 1997-10-09 Asea Brown Boveri Bearing support for high-speed rotors

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090212603A1 (en) * 2008-02-26 2009-08-27 Yachiyo Industry Co., Ltd. Slider structure of sunroof apparatus
US7914073B2 (en) * 2008-02-26 2011-03-29 Yachiyo Industry Co., Ltd. Slider structure of sunroof apparatus
US20130276560A1 (en) * 2010-10-19 2013-10-24 Michael Heidan Drive system for a sliding roof or a window opener
US8939499B2 (en) * 2010-10-19 2015-01-27 Bos Gmbh Co. Kg Drive system for a sliding roof or a window opener
US20140000168A1 (en) * 2012-06-27 2014-01-02 Yachiyo Industry Co., Ltd. Openable Roof Window
US9222297B2 (en) * 2012-06-27 2015-12-29 Yachiyo Industry, Co., Ltd. Openable roof window
CN106467010A (en) * 2015-08-21 2017-03-01 博斯股份有限两合公司 Roof assembly for motor vehicles
US9834075B2 (en) 2015-08-21 2017-12-05 Bos Gmbh & Co. Kg Roof system for an automotive vehicle
CN110370903A (en) * 2018-04-12 2019-10-25 英纳法天窗系统集团有限公司 Roof systems for vehicles
CN112272623A (en) * 2018-06-12 2021-01-26 韦巴斯托股份公司 Assembly of a cover for a vehicle roof and vehicle roof for a motor vehicle
CN110792351A (en) * 2019-10-31 2020-02-14 广东图特家居科技股份有限公司 Arc-shaped guide rail assembly, guide mechanism and horizontal sliding door device

Also Published As

Publication number Publication date
EP0965469A3 (en) 2001-04-11
US20020053817A1 (en) 2002-05-09
DE69928601T2 (en) 2006-07-20
DE29811016U1 (en) 1999-10-28
JP2000062468A (en) 2000-02-29
EP0965469A2 (en) 1999-12-22
DE69928601D1 (en) 2006-01-05
US6428093B1 (en) 2002-08-06
EP0965469B1 (en) 2005-11-30

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