US421940A - Fourths to john wehle - Google Patents
Fourths to john wehle Download PDFInfo
- Publication number
- US421940A US421940A US421940DA US421940A US 421940 A US421940 A US 421940A US 421940D A US421940D A US 421940DA US 421940 A US421940 A US 421940A
- Authority
- US
- United States
- Prior art keywords
- doors
- well
- elevator
- cam
- crank
- 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.)
- Expired - Lifetime
Links
- 230000001174 ascending effect Effects 0.000 description 1
- 230000000284 resting effect Effects 0.000 description 1
- 235000002020 sage Nutrition 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B66—HOISTING; LIFTING; HAULING
- B66B—ELEVATORS; ESCALATORS OR MOVING WALKWAYS
- B66B13/00—Doors, gates, or other apparatus controlling access to, or exit from, cages or lift well landings
- B66B13/02—Door or gate operation
- B66B13/06—Door or gate operation of sliding doors
- B66B13/08—Door or gate operation of sliding doors guided for horizontal movement
Definitions
- My improvement relates to sliding doors for closing the passages to elevator-wells.
- One feature of my invention is adoor composed of hinged sections or lags, and so arranged that it can he slid around the corner of an'elevator well, preserving close contact with the sides, thereby avoiding unnecessary projection of the door when opened and economizing space.
- the invention furtherconsists in the means for operating the doors automatically by the elevator in its passage up and down, as will be more fully described.
- Figure 1 is a front elevation of a portion of the elevator-well and two doors covering the passage to the same, said doors being shown in the closed position.
- Fig. 2 is a cross-section of one corner of the well in line x as of Fig. 1.
- Fig. 3 is a similar section of one corner of the well in line y y of Fig.
- Fig. 4 is an enlarged vertical cross-section in line a z of Fig. 1. view of the eccentric.
- A indicates the elevator-Well
- B B the two sliding doors covering the entrance to the same.
- These doors are suspended by hangers C C C, the rollers of which run forward and back 011 a track or way 1), similar to that of barn-doors, said track or way being permanently attached to the outside of the well above the doors, and extending not only across the front, but also around the sides, as shown in Fig. 2.
- the corners a a of the track, where it passes from the front to the sides, are curved,as shown in Fig. 2, to allow easy passage of the rollers.
- Each of the doors Bis made up of a series of Vertical lags or strips 1) b, which are hinged together, thus allowing the door to bend as it passes around the corner of the well.
- Fig. 5 is a detail sage, as shown in Fig. 1, they stand in a straight length; but when they are run back to open the passage, as shown in Fig. 3, they are curved, a portion standing in front and a portion 011 the sides, the doors adapting themselves closely to the sides of the well and having no projection.
- the doors are kept in place and guided by resting loosely inside a flange c, that extends all around.
- the doors are operated by the following means:
- E E are two pulleys on opposite sides, pivoted eccentrically to the outside of the well above the doors.
- d d are stiff arms attached to the pulleys and turning with them.
- f f are arms pivoted at one end to the stiff arms (Z (Z and at the other to studs g g, fixedly attached to the doors B B.
- the arms clf form toggles. When the doors are closed, these toggles straighten and lock the-doors in position, as shown in full lines, Fig. 1. To open the doors, the pulleys E E are turned, which raises. the arms (1 cl and draws the doors back, as indicated by the dotted lines, Fig. 1. The operation of opening and closing the doors is performed by turning the pulleys E E.
- G is a crank-arm pivoted at h on the inside of the well and provided at its lower swinging end with a projectingstud i.
- m is another cord or cable attached to the top of pulley E, thence extending back under and around pulley E, and attached to the latter permanently, as shown at the left in Fig. 1. It will be seen that when crankarm G is swung-to the left it draws on cable 70 and turns pulley E, and opens the door on that side, and pnlleyE draws on cable m and turns pulley E, and thus opens the door on the other side. The doors are closed again, when the power is removed, by means of a weight n, hung on a cord 0, which is attached to the stud g or to the door.
- H is a cam 011 the elevator I for operating the crank-arm G. It consists of two toggle-arms r r, pivoted together in the center and having free movement at that point. The upper end is permanently pivoted to the elevator, as shown at t, and the lower end has free vertical movement in a slot of the elevator, as shown at 8.
- J is an eccentric pivoted to the elevator opposite the center of the cam and provided wit a handle to, by which it is turned.
- eccentric is provided on one side with a flange n, which, when turned outward, strikes the joint ofthe cam II and forces it forward, as shown in full lines, Fig. at. ⁇ Vhen the eccentric is turned back, the flange frees from the cam and allows the latter to retract.
- the cam is thrown out, as in full lines, the inclined side strikes the stud 11 of the crankarm G and throws it to the left, thus opening the doors. VVhe-n the cam is thrown back, it runs entirely clear of the crank-arm and the latter will not be operated.
- crank-arn1 pivoted inside the well so as to swing forward and back, of a cam on the elevator-car for operating said crank, consisting of two togglearms capable of being thrown into an angular position to operate the crank-arm in ascending and descending and of being thrown into a straight position to run clear of the crank-arm, as herein shown and described.
- crank-arm pivoted inside the well so as to swing forward and back, of a cam on the elevator-car for operating said crank-arm, consisting of two toggle-arms, an eccentric for throwing said toggle-arms out, and a link connecting the togglearms with the eccentric for drawing the toggle-arms back, as herein shown and described.
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- Elevator Door Apparatuses (AREA)
Description
(No Model.) 3 Sheets-Sheet 1. r 0. J. LATZ.
. ELEVATOR GUARD. No. 421,940., Patehted Feb. 25, 1890.
12) macaw Suva do:
N PETERS. Phnlu-uma u her. Wuhlnglon. Dc.
(No Model.) 3 Sheets-Sheet 3 O. J. LATZ.
ELEVATOR GUARD.
Nq. 421,940. Patented Peb.25, 1890.
@542, %J arm Sworn Li flyw N. PETERS, Pmwumugm hur, wmm mn, n, c.
UNITED STATES PATENT OFFICE.
CHARLES J. LATZ, OF ROCHESTER, NEV YORK, ASSIGNOR OF THREE- FOURTI-IS TO JOHN VVEI-ILE, OF SAME PLACE.
ELEVATOR-G UARD.
SPECIFICATION forming part of Letters Patent No. 421,940, dated February 25, 1890.
Application filed April 26, 1889.
To all whom it may concern:
Be it known that 1, CHARLES J. LATZ, of Rochester, in the county of Monroe and State of New York, have invented a certain new and useful Improvement in Elevator-Guards; and I do hereby declare that the following is a full, clear, and exact description of the same, reference being had to the drawings accompanying this application.
My improvement relates to sliding doors for closing the passages to elevator-wells.
One feature of my invention is adoor composed of hinged sections or lags, and so arranged that it can he slid around the corner of an'elevator well, preserving close contact with the sides, thereby avoiding unnecessary projection of the door when opened and economizing space.
The invention furtherconsists in the means for operating the doors automatically by the elevator in its passage up and down, as will be more fully described.
In the drawingaFigure 1 is a front elevation of a portion of the elevator-well and two doors covering the passage to the same, said doors being shown in the closed position. Fig. 2 is a cross-section of one corner of the well in line x as of Fig. 1. Fig. 3 is a similar section of one corner of the well in line y y of Fig.
1. Fig. 4 is an enlarged vertical cross-section in line a z of Fig. 1. view of the eccentric.
A indicates the elevator-Well, and B B the two sliding doors covering the entrance to the same. These doors are suspended by hangers C C C, the rollers of which run forward and back 011 a track or way 1), similar to that of barn-doors, said track or way being permanently attached to the outside of the well above the doors, and extending not only across the front, but also around the sides, as shown in Fig. 2. The corners a a of the track, where it passes from the front to the sides, are curved,as shown in Fig. 2, to allow easy passage of the rollers.
Each of the doors Bis made up of a series of Vertical lags or strips 1) b, which are hinged together, thus allowing the door to bend as it passes around the corner of the well. lVhen the doors are in front and close the pas Fig. 5 is a detail sage, as shown in Fig. 1, they stand in a straight length; but when they are run back to open the passage, as shown in Fig. 3, they are curved, a portion standing in front and a portion 011 the sides, the doors adapting themselves closely to the sides of the well and having no projection. At the bottom the doors are kept in place and guided by resting loosely inside a flange c, that extends all around.
The advantage of these flexible doors is, that they are made close-fitting to the sides of the well and leave no projection outward when opened, as stiff sliding doors do. They are of service in those places where the space is narrow, as at landings at the head of stairs, and in basements, where a passage only is left between the elevator-well and wall and where a stiff door would stand in the way.
The doors are operated by the following means:
E E are two pulleys on opposite sides, pivoted eccentrically to the outside of the well above the doors. d d are stiff arms attached to the pulleys and turning with them. f f are arms pivoted at one end to the stiff arms (Z (Z and at the other to studs g g, fixedly attached to the doors B B. The arms clf form toggles. When the doors are closed, these toggles straighten and lock the-doors in position, as shown in full lines, Fig. 1. To open the doors, the pulleys E E are turned, which raises. the arms (1 cl and draws the doors back, as indicated by the dotted lines, Fig. 1. The operation of opening and closing the doors is performed by turning the pulleys E E.
G, Fig. 4, is a crank-arm pivoted at h on the inside of the well and provided at its lower swinging end with a projectingstud i.
70 is a cord attached to the lower end of the cranlearm, thence extending under and around a pulley Z at the side of the well, and thence extending up around the outside of the p ulley E and attached permanently thereto, as shown in Figs. 1 and 2.
m is another cord or cable attached to the top of pulley E, thence extending back under and around pulley E, and attached to the latter permanently, as shown at the left in Fig. 1. It will be seen that when crankarm G is swung-to the left it draws on cable 70 and turns pulley E, and opens the door on that side, and pnlleyE draws on cable m and turns pulley E, and thus opens the door on the other side. The doors are closed again, when the power is removed, by means of a weight n, hung on a cord 0, which is attached to the stud g or to the door.
H, Fig. 4, is a cam 011 the elevator I for operating the crank-arm G. It consists of two toggle-arms r r, pivoted together in the center and having free movement at that point. The upper end is permanently pivoted to the elevator, as shown at t, and the lower end has free vertical movement in a slot of the elevator, as shown at 8.
J is an eccentric pivoted to the elevator opposite the center of the cam and provided wit a handle to, by which it is turned. The
eccentric is provided on one side with a flange n, which, when turned outward, strikes the joint ofthe cam II and forces it forward, as shown in full lines, Fig. at. \Vhen the eccentric is turned back, the flange frees from the cam and allows the latter to retract. When the cam is thrown out, as in full lines, the inclined side strikes the stud 11 of the crankarm G and throws it to the left, thus opening the doors. VVhe-n the cam is thrown back, it runs entirely clear of the crank-arm and the latter will not be operated.
to is a link pivoted at one end to the eccentric J and at the other to the joint of the two toggle-arms 1" 1", that form the cam. When the eccentric is turned so as to free the cocentric flange from the cam, the link draws the cam back into its straight position. The operator, by turning the handle a, can adjust the cam so as to operate the doors as the ele Vator goes up and down, or so as to run free and leave the doors closed. The double inclined form of the cam causes the doors to be operated both in going up and down. This same mechanical arrangement can be used for operating stiff doors either horizontally or vertically, as well as the flexible doors described. It is obvious, also, that a single door only may be operated instead of double doors in those cases where only a single door is used opening into the well.
Having described my invention, what I claim as new, and desire to secure by Letters Patent, is-
1. The combination, with the flexible sliding door, of a pulley pivoted to the side of the well, folding toggle-arms connecting said pulley with a stud on the door by which said door is opened, a crank-arm pivoted inside the well so as to swing forward and back, a cam on the elevator-car for operating the crank-arm, and a cable connecting the crankarm with the pulley and by which the latter is operated, as described.
2. The combination, with the crank-arn1 pivoted inside the well so as to swing forward and back, of a cam on the elevator-car for operating said crank, consisting of two togglearms capable of being thrown into an angular position to operate the crank-arm in ascending and descending and of being thrown into a straight position to run clear of the crank-arm, as herein shown and described.
3. The combination, with a crank-arm pivoted inside the well so as to swing forward and back, of a cam on the elevator-car for operating said crank-arm, consisting of two toggle-arms, an eccentric for throwing said toggle-arms out, and a link connecting the togglearms with the eccentric for drawing the toggle-arms back, as herein shown and described.
a. The combination, with two flexible slid-,
R. F. OSGOOD, Z. L. DAVIS.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US421940A true US421940A (en) | 1890-02-25 |
Family
ID=2490858
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US421940D Expired - Lifetime US421940A (en) | Fourths to john wehle |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US421940A (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3741351A (en) * | 1971-03-05 | 1973-06-26 | Westinghouse Electric Corp | Integrated elevator construction |
-
0
- US US421940D patent/US421940A/en not_active Expired - Lifetime
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3741351A (en) * | 1971-03-05 | 1973-06-26 | Westinghouse Electric Corp | Integrated elevator construction |
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