US480583A - Limit-stop for elevators - Google Patents

Limit-stop for elevators Download PDF

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US480583A
US480583A US480583DA US480583A US 480583 A US480583 A US 480583A US 480583D A US480583D A US 480583DA US 480583 A US480583 A US 480583A
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Prior art keywords
valve
stop
limit
elevators
cylinder
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B11/00Servomotor systems without provision for follow-up action; Circuits therefor
    • F15B11/06Servomotor systems without provision for follow-up action; Circuits therefor involving features specific to the use of a compressible medium, e.g. air, steam
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B15/00Details of, or accessories for, presses; Auxiliary measures in connection with pressing
    • B30B15/16Control arrangements for fluid-driven presses

Definitions

  • My invention relates more especially to hydraulic elevators in which as ordinarily constructed the car passes over the entire length of its travel at a single stroke of the elevatorpiston.
  • My device is designed to shut off the flow of fluid to or from the elevator-cylinder as the piston approaches the limit of its travel at either end of the cylinder.
  • Figure 1 is a side elevation of the elevator-cylinder and a portion of its attachments sufficient to illustrate my invention.
  • Fig. 2 is a plan view on a larger scale of the devices forming the limit-stop, and
  • Fig. 3 is a side elevation of the same.
  • A, Fig. 1, is the elevator-cylinder.
  • girder D serves as a guide for the cross-head E, in which the sheaves B are journaled.
  • a valve G is inserted in the passage-way between the control-valve F and the cylinder A.
  • the valve G is connected to a leverI by a rod J and rock-shaft K.
  • the lever I is supported by a stud L, fastened to the girder D, and is provided with arms M N, projecting on each side of its fulcrum.
  • a slide 0 is likewise supported upon the stud L and is connected Upon the rod P are adjustable stops R B.
  • An arm S is fastened to the cross-head E. 'Its outer end projects between the stops R R, being provided with an opening through which the rod P passes.
  • Secured to the lever I is an arm T, at the outer end of which is aweight U.
  • two projections V V which make contact with the opposite faces of the arms M N, respectively.
  • the projections V V are given the form of rollers mounted upon studs.
  • the operation of the device is as follows: In the position shown in Fig. 1 the weight U has moved to its lowest possible point, the arms M N being in simultaneous contact with the projections V V, respectively. In this position the valve H is open.
  • the adjustable stops R R are so set upon the rod P that the arm S, attached to the cross-head, comes in contact with one or the other'stop just as the piston approaches the limit of its movement at either end of the cylinder.
  • the contact of the arm S with either stop R moves the rod P longitudinally.
  • the effect of this movement is to push the slide 0 to the right or left, as seen in Fig. 1, the movement in either direction raising the weight U and closing the valve H through the action of the projection V on the arm N, or V upon the arm M.
  • the flow of fluid is thus gradually stopped or checked so that the piston comes to rest.
  • the valve H is not made perfectly tight, and a certain leakagemay take place through it. This permits the reversal of the movement of the piston, notwithstanding the closure of the valve H when the position of the controlvalve is changed, the speed of such movement being dependent upon the amount of leakage through the valve H until the reverse travel of the piston is sufficient to permit the reopening of said valve by the action of the Weight U.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • General Engineering & Computer Science (AREA)
  • Types And Forms Of Lifts (AREA)

Description

2 Sheets-Sheet 1.
(No Model.)
T. W. HEERMANS. LIMIT STOP FOR ELEVATORS.
Patented Aug. 9, 1892.
No Model.) 2 sheets Sheet 2.
T. W. HEERMANS. LIMIT STOP FOR ELEVATORS.
No. 480,583. Patented Aug. 9, 1892.
to arod P extending parallel'to the girder D.
' UNITED STATES PATENT ()FFICE.-
THADDEUS W. HEERMANS, OF OHIOAGO, ILLINOIS, ASSIGNOR, BY MESNE ASSIGNMENTS, TO THE NATIONAL COMPANY, OF ILLINOIS.
LIM lT-STOP FOR ELEVATORS.
SPECIFICATION forming part of Letters Patent No. 480,583, dated August 9, 1892. Application filed June 26, 1891. Serial No; 397,657. (No model.)
T0 at whom it may concern.-
Be it known that I, THADDEUS W. HEER- MANS, residing at Chicago, in the county of Cook, in the State of Illinois, have invented certain new and useful Improvements in Limit-Stops for Elevators, of which the following is a specification.
My invention relates more especially to hydraulic elevators in which as ordinarily constructed the car passes over the entire length of its travel at a single stroke of the elevatorpiston.
My device is designed to shut off the flow of fluid to or from the elevator-cylinder as the piston approaches the limit of its travel at either end of the cylinder.
- In the drawings, Figure 1 is a side elevation of the elevator-cylinder and a portion of its attachments sufficient to illustrate my invention. Fig. 2 is a plan view on a larger scale of the devices forming the limit-stop, and Fig. 3 is a side elevation of the same.
A, Fig. 1, is the elevator-cylinder.
B represents the movable sheaves connected to the piston-rod, and 0 represents the fixed sheaves mounted upon a girder D, extending to the cylinder. Said girder D serves as a guide for the cross-head E, in which the sheaves B are journaled.
F is the control-valve by which the admission and exhaust of fluid through the pipe H to and from the cylinder A is governed. A valve G is inserted in the passage-way between the control-valve F and the cylinder A. The valve G is connected to a leverI by a rod J and rock-shaft K. The lever I is supported by a stud L, fastened to the girder D, and is provided with arms M N, projecting on each side of its fulcrum. A slide 0 is likewise supported upon the stud L and is connected Upon the rod P are adjustable stops R B. An arm S is fastened to the cross-head E. 'Its outer end projects between the stops R R, being provided with an opening through which the rod P passes. Secured to the lever I is an arm T, at the outer end of which is aweight U. Upon the slide 0 are two projections V V, which make contact with the opposite faces of the arms M N, respectively.
In order to diminish friction, the projections V V are given the form of rollers mounted upon studs.
The operation of the device is as follows: In the position shown in Fig. 1 the weight U has moved to its lowest possible point, the arms M N being in simultaneous contact with the projections V V, respectively. In this position the valve H is open. The adjustable stops R R are so set upon the rod P that the arm S, attached to the cross-head, comes in contact with one or the other'stop just as the piston approaches the limit of its movement at either end of the cylinder. The contact of the arm S with either stop R moves the rod P longitudinally. The effect of this movement is to push the slide 0 to the right or left, as seen in Fig. 1, the movement in either direction raising the weight U and closing the valve H through the action of the projection V on the arm N, or V upon the arm M. The flow of fluid is thus gradually stopped or checked so that the piston comes to rest. The valve H is not made perfectly tight, and a certain leakagemay take place through it. This permits the reversal of the movement of the piston, notwithstanding the closure of the valve H when the position of the controlvalve is changed, the speed of such movement being dependent upon the amount of leakage through the valve H until the reverse travel of the piston is sufficient to permit the reopening of said valve by the action of the Weight U.
What I claim as new, and desire to secure by Letters Patent, is as follows:
1. The combination, in a limit-stop for elevators, of a valve in the passage between the control-valve and the cylinder, a lever connected to said valve, having arms projecting each side of the fulcrum, a slide having projections engaging with said arms on their 0pposite sides, and a rod connected to said slide, having stops thereon engaging with a moving part connected to the elevator-piston, su bstantially as described.
2. The combination, in a limit-stop for elevators, of a valve in the passage between the control-valve and the cylinder, a lever connected to said valve, having arms projecting oppositely-proj ectin g arms M N, a slide 0, sn pported upon said stud L and having projections V V engaging with opposite sides of the arms M N, respectively, a rod P, having stops R R thereon and connected to the slide 0 and the arm S, secured to the cross-head E and operating between said stops R R, and the weight stantially as described.
THADDEUS W. HEERMANS. Witnesses:
ELSIE NEMETT, Tom) MASON.
U, adapted to maintain the arms M N in con- 20 I tact with the studsv V V, respectively, sub-
US480583D Limit-stop for elevators Expired - Lifetime US480583A (en)

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