HK1113599A - Adjustable drive coupling for adjacent architectural coverings - Google Patents
Adjustable drive coupling for adjacent architectural coverings Download PDFInfo
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- HK1113599A HK1113599A HK08107650.8A HK08107650A HK1113599A HK 1113599 A HK1113599 A HK 1113599A HK 08107650 A HK08107650 A HK 08107650A HK 1113599 A HK1113599 A HK 1113599A
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- coupling
- coupling member
- members
- coupling according
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Description
The present invention relates to a coupling for drivingly coupling winding devices of adjacent architectural coverings. More in particular the invention relates to such force transmitting couplings that include a first coupling member, a second coupling member and engagement means between the first and second coupling members adapted to provide angular adjustment between the winding devices of the two adjacent architectural coverings.
It has been proposed in WO 2006/102894 to obtain angular fine adjustment between blind rollers by providing a wrap spring coupling between the two blind rollers, which normally is in frictional engagement, but which can be disengaged for making fine adjustments. While this arrangement has provided for accurate adjustment in aligning the lower blind edges of adjacent roller blinds, it has also offered little resistance against peak torques, that can occur during operation of the blinds, from disturbing the adjustments made. Such peak torques are due to inherrent inertia in the blinds themselves as well as changes in operating direction and/or speed. It has thus been proposed, such as in DE 19546203 , to resort to structural mating engagement between the adjustable drive coupling members to prevent the adjusted angular position from becoming disturbed by operating forces. However with larger blind units, such as often encountered in utility buildings, there have been cases where operating peak torques have completely ripped off the mating structural means that provided the positive engagement between the coupling members.
Accordingly it is an object of the present invention to overcome or ameliorate at least one of the disadvantages of the prior art. It is also an object of the present invention to provide alternative structures which are less cumbersome in assembly and operation and which moreover can be made relatively inexpensively. Alternatively it is an object of the invention to at least provide the public with a useful choice.
To this end the present invention provides a force transmitting coupling for drivingly coupling winding devices of adjacent window coverings, the coupling including: a first coupling member; a second coupling member; mating engagement means on the first and second coupling members adapted to establish mating engagement between the first and second coupling member to transmit a drive force from one of the first and second coupling members to another of the first and second coupling members, wherein the second coupling member includes a hub and wherein the engaging means on the second coupling member are resiliently connected to the hub. Surprisingly it has been found that the resilient connection between the engaging means on one of the coupling members and its relevant hub effectively cushions the occorring peak torques and thereby succesfully prevents any damage to the engagement means.
Other advantageous variations will become apparent from the below description and from the appended claims.
The invention will now be described in reference to the appended drawing Figures in which:
- Figure 1 is a general perspective view of a set of adjacent window covering, having a common intermediate bearing bracket, which includes a coupling in accordance with the invention;
- Figure 2 is an enlarged partial view of the set of window coverings of Figure 1, showing a suitable variant of an intermediate bearing and coupling;
- Figure 3 is a longitudinal cross-section of the intermediate bearing and coupling of Figure 2;
- Figure 4 is an exploded view of the partial assembly of Figures 2 and 3;
- Figure 5 is a detailed perspective view of the first and second coupling members of the invention;
- Figure 6 is a longitudinal cross-section of the intermediate bearing and coupling according to a further embodiment of the invention;
- Figure 7 is an enlarged detail view based on Figure 6;
- Figure 8A is an enlarged detail according to VIII-A in Figure 6;
- Figure 8B is an enlarged detail according to VIII-B in Figure 6;
- Figure 9 is a detailed perspective view of the first and second coupling members of the further embodiment; and
- Figure 10 is a detailed perspective view of the coupling members of the further embodiment, seen from a direction opposite to that of Figure 9.
On one side of a second, vertical flange 29 of the bracket 12, is positioned the coupling 30 that connects the winding device or roller 16 to the winding device or roller 18 on the opposite side of the vertical flange 29. The coupling 30 has first coupling member 31 that is drivingly connected to the first winding device 16 and a second coupling member 33 that is drivingly connected to the second winding device 18. The driving force from the second coupling member 33 is taken through a central bore in the second bracket flange 29 (not visible in Figure 2 ). The second member 33 drivingly engages an end plug 41 of the roller 18.
Referring back to Figure 3 it can be seen that the end plug 41 has a generally, cylindrical plug body 51 having an end wall 53 and thereby defining an axially extending central cavity. A cylindrical plunger 55 is accommodated within the central cavity of the body 51 for telescopically sliding movement. The telescopic movement of the plunger 55 is outwardly limited by retaining detents 57, 59 positioned on axially extending tongues 61,63 which each extend through openings in the end wall 53. The plunger 55 is biased towards its outermost position by a compression spring 65. In principle this telescopic end plug 41 is similar in function to the end plug described in GB 2339820 , except that its specific configuration allows the insertion of a coupling shaft 67. This coupling shaft 67 can have a hexagonal cross-section or any other non-circular cross-section adapted to transmit torque by a mating form fit, rather than by being clampingly engaged. Further the plunger 55 on its outer end has a journal 69 by which it is rotatably journalled in the central opening 47. The coupling shaft 67 has one axial end fixed to a hub 71 of the second coupling member 33. The first coupling member 31 has a cylindrical sleeve 73 that snuggly fits within the roller tube 16 in a torque transmitting member. To this end the inner circumference of the roller tube 16 and the outer circumference of the sleeve 73 preferably are provided with mating formations. Also the first coupling member 31 has a central aperture 75 to receive the hub 71 of the second coupling member 33. To guide the first coupling member 31 onto the second coupling member 33, the hub 71 preferably has a rounded end as shown in Figures 3 to 5 . Similarly the central aperture 75 of the first coupling member 31 can have a rounded or chamfered entrance to assist guidance of the hub 71 there into. The roller tube 18 can have an arrangement similar to the right hand end of the roller tube 16, at its right hand end. The telescoping end plug 41 will than allow the roller tube 18 to be moved to the left in Figure 3 and engaged with a corresponding hub structure 71 on its right hand end. This is a conventional manner of mounting roller blind rollers between opposite brackets, such as those shown in Figure 1 . Similarly the left hand end of roller tube 16 (in Figure 3 ) can have a telescoping end plug on its left hand end.
Referring now to Figures 4 and 5 it will be seen that the first coupling member 31 has first engagement means 81 on its face facing the second coupling member 33. The second coupling member 33 is provided with second complementary, mating engagement means 83 on its face facing the first coupling member 31.
As can also be seen in Figure 5 , the second coupling member 33 has a perimeter rim 91, which here is provided on its exterior with optional manual gripping means in the form of ribs 93. The perimeter rim 91 and the plurality of second teeth 87 are connected to the hub 71 by a plurality of radial spokes 95. The spokes 95 are somewhat resilient and allow for cushioning of peak torque values that are transmitted between the engagement means 81, 83 and the shaft 67.
The annular groove 101 is sufficiently wide in relation to the ridge 103 to allow full axial disengagement of the first and second coupling members 131, 133. Because the first coupling member 131 in this embodiment cannot rely on any axial movement of the winding tube 116 for its axial disengagement, a compression spring 105 is positioned between the first and second coupling members 131, 133 to urge them apart. However, the force of spring 105 is chosen to be substantially less than the axial spring force acting on the winding tube 116, while keeping the coupling members 131, 133 engaged. As explained in relation to the embodiment of Figures 2 to 5 such axial spring force results from a telescopic end plug 141 acting on the opposite end of the first winding tube 116.
As best seen in Figures 8A, 8B , 9 and 10 , the engagement means 181 of the first coupling member similar to the first embodiment, are represented by a plurality of first teeth 185 that are formed at the perimeter of the first coupling member 131. The engagement means 183 on the second coupling member 133 are represented by a plurality of second teeth 187, structurally mating and complementary to the first teeth 185. Figure 8A is an enlarged detail of the portion indicated as VIII-A in Figure 6 and Figure 8B is an enlarged detail of portion VIII-B in Figure 6 . In Figure 8A one dent 185 of the first coupling member 131 is shown in elevation, while a dent 187 of the second coupling member 133 is sectioned.
As more clearly seen in Figures 9 and 10 , the perimeter rim section 191 which carries the torque transmitting teeth 187 is connected to the hub part 171 by a plurality of relatively flexible spokes 195. These spokes 195 cushion any excessive torque loads that may result in operation of the blind roller by inertia.
In use, the force transmitting couplings of Figures 2-5 and 6-10 allow the first and second winding roller 16 and 18, respectively 116 and 118, to be angularly adjusted with respect to one another. In the case of two adjacent roller shades as shown in Figure 1 , this means that the bottom edges 7 and 9 can be accurately aligned, which can be desirable from an esthetic point of view. At the same time the engaging coupling parts 31 and 33, or 131 and 133 respectively, are prevented from becoming dislocated or damaged by peak loads which are thus effectively cushioned by the flexible spokes 95 or 195 respectively.
It is thus believed that the operation and construction of the present invention will be apparent from the foregoing description. The term comprising when used in this description or the appended claims should not be construed in an exclusive or exhaustive sense but rather in an inclusive sense. Expressions such as: "means for ...". should be read as: "component configured for ..." or "member constructed to ..." and are to be construed to include equivalents for the structures disclosed. The use of expressions like: "critical", "preferred", "especially preferred" etc., is not intended to limit the invention. Features which are not specifically or explicitely described or claimed may be additionally included in the structure according to the present invention without deviating from its scope.
The invention is further not limited to any embodiment herein described and, within the purview of the skilled person, modifications are possible which should be considered within the scope of the appended claims. Equally all kinematic inversions are to be considered within the scope of the present invention.
Directional references (e.g., upper, lower, upward, downward, left, right, top, bottom, above, below, vertical, horizontal, axially, radially, tangentially, clockwise, or counterclockwise) are only used for identification purposes to assist in the understanding of the present invention, and should not be costrued to create limitations, as to position orientation, or use of the invention. Reference to axially, radially and tangentially is generally in relation to rotatable or cylindrical bodies of elements described. Reference to longitudinal or lateral is generally in reference to the length or width directions respectively of elements which have an oblong appearance in the accompanying drawings.
Claims (14)
- Force transmitting coupling for drivingly coupling winding devices of adjacent architectural coverings, the coupling including:a first coupling member;a second coupling member;mating engagement means on the first and second coupling members adapted to establish mating engagement between the first and second coupling member to transmit a drive force from one of the first and second coupling members to another of the first and second coupling members, wherein the second coupling member includes a hub and wherein the engaging means on the second coupling member are resiliently connected to the hub.
- Coupling according to claim 1, wherein the annular engaging means are positioned annularly on the second coupling members at a radial distance from the hub.
- Coupling according to claim 2, wherein the resilient connection is formed integrally with the annular engaging means and the hub.
- Coupling according to claim 3, wherein the resilient connection includes a plurality of resilient spokes.
- Coupling according to claim 4, wherein the flexible spokes are rectilinear.
- Coupling according to any preceding claim, wherein the engaging means include a plurality of axially engaging teeth which each are supported from both axial and radial support surfaces on their respective first and second coupling members.
- Coupling according to claim 6, wherein the axially engaging teeth of at least one of the first and second coupling members each have a rounded or pent-roof shape on their respective front faces.
- Coupling according to any preceding claim, wherein the outer circumference of the second coupling member has manual gripping means on its outer circumference.
- Coupling according to any preceding claim, wherein the winding devices are roller blind rollers and an aligned drive shaft rotates the roller blind rollers.
- Coupling according to claim 8, wherein the first coupling member is an integral part of a roller blind end plug.
- Coupling according to claim 8 or 9, wherein the second coupling member cooperates with an intermediate mounting bracket to take the drive to a further roller.
- Coupling according to claim 11, wherein the second coupling member is connected for rotation with the aligned drive shaft.
- Coupling according to any preceding claim, wherein angular indexing can be adjusted with the first and second coupling members axially disengaged.
- Coupling according to any preceding claim, wherein the coupling includes a spring, between the first and second coupling members, urging the first and second coupling members out of engagement, when not otherwise held in engagement.
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP06026520 | 2006-12-21 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| HK1113599A true HK1113599A (en) | 2008-10-10 |
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