US549979A - Pneumatic hoist - Google Patents

Pneumatic hoist Download PDF

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US549979A
US549979A US549979DA US549979A US 549979 A US549979 A US 549979A US 549979D A US549979D A US 549979DA US 549979 A US549979 A US 549979A
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cylinder
pipe
piston
exhaust
air
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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
    • F15B11/02Systems essentially incorporating special features for controlling the speed or actuating force of an output member
    • F15B11/028Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force
    • F15B11/036Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force by means of servomotors having a plurality of working chambers
    • F15B11/0365Tandem constructions
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60TVEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
    • B60T17/00Component parts, details, or accessories of power brake systems not covered by groups B60T8/00, B60T13/00 or B60T15/00, or presenting other characteristic features
    • B60T17/08Brake cylinders other than ultimate actuators
    • B60T17/083Combination of service brake actuators with spring loaded brake actuators

Definitions

  • Another feature of the invention is the provision adjacent to the admission-port in the upper end of the cylinder of an oil-cup.
  • Figure 1 is a side elevation of my apparatus.
  • Fig. 2 is an elevation at right angles to that shown in Fig. 1.
  • A represents the cylinder
  • B the piston-rod
  • O the piston-head
  • D is the usual hook at the lower end of the piston-rod, to which the load is engaged, and E the usual eye on the upper end of the cylinder, by which the latter is suspended.
  • F is the pipe, which is connected with the compressedair supply and which enters the lower end of the cylinder througha pipe G, being controlled by the valve G.
  • H is the exhaust-pipe, also controlled by the valve G.
  • This pipe I-I extends up along the side of the cylinder to a point adjacent to the top, where it is provided with a port h, into the open air, and also with a pipe h lead ing into the cylinder.
  • Located on this branch it into the cylinder is an oil-cup J. It will be observed that the branch h is connected below the extreme upper end of the cylinder. This is for the purpose of leaving a body of air in the upper end to cushion the flow of the ascending piston-head.
  • the operation is obvious.
  • the Valve G is so set that the air will pass from the supplypipe F into the cylinder below the piston-head, thus elevating it, the air above the pistonhead exhausting through the pipe h and port h.
  • the valve G is thrown so that the supply-pipe is closed and the exhaustpipe H opened, the exhaust from beneath the piston-head passing up through the pipe and off through the port h, a sufficient percentage passing through the branch pipe h to relieve the vacuum above the piston-head.
  • a pneumatic hoist the combination of the cylinder and piston, a pipe into the lower end of the cylinder, a supply pipe and an exhaust pipe connected with the 'first named pipe, a Valve governing the admission of air from the supply to the cylinder and the emission of air from the cylinder to the exhaust, said exhaust connected with the upper end of the cylinder and with the atmosphere, substantially as described.
  • the cylinder having an iinperforate upper end, and an exhaust pipe leading from the lower to the upper end, said exhaust having also an opening to the atmosphere, substantially as described.
  • the cylinder having an imperforate upper end, an exhaust pipe leading from the lower to the upper end, said exhaust pipe having an opening to the atmosphere, and a source of oil supply e0nnected with said exhaust pipe between the cylinder and the opening to the atmosphere, substantially as described.
  • a cylinder having an imperforate upper end, a piston in the cylinder, an air supply pipe, an exhaust pipe, a pipe leading from the supply and exhaust pipes into the base of the cylinder, a valve governing the two pipes, a branch pipe from. the exhaust to the upper end of the cylinder, said exhaust provided With an opening to the atmosphere, and an oil cup 011 the branch from the exhaust to the cylinder, substan tially as described.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transportation (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • General Engineering & Computer Science (AREA)
  • Compressor (AREA)

Description

I I I I I 2 Sheets-5heet 1,
I I I I l Patented Nov. 19, 1895.
(No Model.)
G. A. TRUE. PNEUMATIC HOIST.
M,PHDTO-LITHD WASIIINGTUN. In)" (No Model.)
G. A. TRUE.
PNEUMATIC HOIST.
2 SheetsSheet 2.
' Patented Nov. 19', 1895.
F 5 I 5 u a R i i 4 7K7 F qz I WZZZ'JJ wmm UNITED STATES PATENT FFICE.
GEORGE A. TRUE, OF CHIOAGO ILLINOIS.
PNEUMATIC HOIST.
SPECIFICATION forming part of Letters Patent No. 549,979, dated November 19, 1895.
Application filed March 18, 1895. Serial No. 541,568. (No model.)
To aZZ whom it may concern:
Be it known that I, GEORGE A. TRUE, a citizen of the United States, residing at Chicago, county of Cook, State of Illinois, have invented a certain new and useful Improvement 1n Pneumatic Hoists; and I declare the following to be a full, clear, and exact description of the invention, such as will enable others skilled in the art to which it pertains to make and use the same, reference being had to the accompanying drawings, which form a part of this specification. My invention relates to that class of hoisting apparatus in which the direct pressure of ail-1n an upright cylinder lifts the pistonhead and thereby the load, the latter being engaged to the upwardly-moving piston-rod. In this class of air-hoists when the air beneath the piston-head is exhausted and the load lowered a vacuum is created above the piston. It has heretofore been customary to relieve this vacuum by providing the cylinder adjacent to the upper end with a series of orifices, but the serious objection to this is that the air entering the cylinder through these orifices carries the dust, grit, and metal particles of the shop into the cylinder, and they soon cut out the packing of the pistonhead and the interior of the cylinder. My invention is designed to overcome this radical-defect by providing a pipe leading from the exhaust-port at the base or lower end of the cylinder to a point adjacent to the top thereof and connecting this exhaust-pipe with the upper end of the cylinder.
Another feature of the invention is the provision adjacent to the admission-port in the upper end of the cylinder of an oil-cup.
The particular arrangement of the parts will be hereinafter described and claimed.
In the drawings, Figure 1 is a side elevation of my apparatus. Fig. 2 is an elevation at right angles to that shown in Fig. 1.
In carrying out the invention, A represents the cylinder, B the piston-rod, and O the piston-head.
D is the usual hook at the lower end of the piston-rod, to which the load is engaged, and E the usual eye on the upper end of the cylinder, by which the latter is suspended.
F is the pipe, which is connected with the compressedair supply and which enters the lower end of the cylinder througha pipe G, being controlled by the valve G.
H is the exhaust-pipe, also controlled by the valve G. This pipe I-I extends up along the side of the cylinder to a point adjacent to the top, where it is provided with a port h, into the open air, and also with a pipe h lead ing into the cylinder. Located on this branch it into the cylinder is an oil-cup J. It will be observed that the branch h is connected below the extreme upper end of the cylinder. This is for the purpose of leaving a body of air in the upper end to cushion the flow of the ascending piston-head.
The operation is obvious. The Valve G is so set that the air will pass from the supplypipe F into the cylinder below the piston-head, thus elevating it, the air above the pistonhead exhausting through the pipe h and port h. When it is desired to lower the pistonhead and load, the valve G is thrown so that the supply-pipe is closed and the exhaustpipe H opened, the exhaust from beneath the piston-head passing up through the pipe and off through the port h, a sufficient percentage passing through the branch pipe h to relieve the vacuum above the piston-head. It will thus be seen that the air employed to relieve the vacuum above the piston-head when the latter is lowered is not that taken from the atmosphere in the shop, which is dust and grit laden; but it is the air from beneath the piston-head, which just previously came from the compressor. Thus the admission into the cylinder of the fine particles always floating in the air of foundries and shops where this class of apparatus is employed and which soon wear out the piston-head packing and scratch and mar the interior of the cylinder is prevented. So also the oil in the oil-cup on the branch h will be drawn into the cylinder by the flow of air into the upper end thereof, and the parts are easily and effectually lubricated.
What I claim is-- I 1. In a pneumatic hoist, the combination with the cylinder and piston, said cylinder provided beneath the piston with an air supply, a valve governing the admission of air, an exhaust pipe leading from the lower end of the cylinder to the upper end, said exhaust pipe having an opening to the atmosphere, substantially as described.
2. In a pneumatic hoist, the combination of the cylinder and piston, a pipe into the lower end of the cylinder, a supply pipe and an exhaust pipe connected with the 'first named pipe, a Valve governing the admission of air from the supply to the cylinder and the emission of air from the cylinder to the exhaust, said exhaust connected with the upper end of the cylinder and with the atmosphere, substantially as described.
In a pneumatic hoist, the cylinder having an iinperforate upper end, and an exhaust pipe leading from the lower to the upper end, said exhaust having also an opening to the atmosphere, substantially as described.
i. In a pneumatic hoist, the cylinder having an imperforate upper end, an exhaust pipe leading from the lower to the upper end, said exhaust pipe having an opening to the atmosphere, and a source of oil supply e0nnected with said exhaust pipe between the cylinder and the opening to the atmosphere, substantially as described.
5. In a pneumatic hoist, a cylinder having an imperforate upper end, a piston in the cylinder, an air supply pipe, an exhaust pipe, a pipe leading from the supply and exhaust pipes into the base of the cylinder, a valve governing the two pipes, a branch pipe from. the exhaust to the upper end of the cylinder, said exhaust provided With an opening to the atmosphere, and an oil cup 011 the branch from the exhaust to the cylinder, substan tially as described.
In testimony whereof I sign. this specification in the presence of two Witnesses.
GEORGE A. TRUE.
\Vitnesscs W. H. CHAMBERLIN, FLORENCE EMBREY.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20200315350A1 (en) * 2019-04-08 2020-10-08 EQX Global LLC Height adjusted seismic base isolation system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20200315350A1 (en) * 2019-04-08 2020-10-08 EQX Global LLC Height adjusted seismic base isolation system
US11793308B2 (en) * 2019-04-08 2023-10-24 EQX Global LLC Height adjusted seismic base isolation system

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