US410396A - Ferdinand bauee - Google Patents

Ferdinand bauee Download PDF

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US410396A
US410396A US410396DA US410396A US 410396 A US410396 A US 410396A US 410396D A US410396D A US 410396DA US 410396 A US410396 A US 410396A
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oil
valve
piston
chamber
ferdinand
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B5/00Machines or pumps with differential-surface pistons
    • F04B5/02Machines or pumps with differential-surface pistons with double-acting pistons

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  • My invention relates more particularly to that class of pumps employed in connection with gas compressing and refrigerating apparatus for introducing the oil or lubricating liquid into the compressor; and it consists in the construction of the piston-chamber, valvechamber, valve, and openings for receiving and discharging the oil into and from the pump, as hereinafter more fully described and claim ed.
  • Figure 1 is a longitudinal vertical section of the pump and connections, the same being taken on the line a: a: of Fig. 2, which is a plan View thereof; and Fig. 3 is a vertical cross-section of the same, taken on the line y 1 of Fig. 2.
  • A represents the piston cylinder or chamber; B, the piston, which may be actuated by suitable connections with the piston-rod b.
  • the pump receives its supply of oil through the inlet-pipe C, which may return the oil from the system after being discharged from the compressor and separated from the compressed gas in the usual way.
  • the inlet-pipe O is provided with a checkvalve 0, for regulating the flow of oil to the port cl, such valve being made to open and close by the pressure, which, when greater in the pipe C than in the port (1, causes the checkvalve to open and the oil flows into the port, and when the pressure in the port becomes greater than that obtained in the pipe the check-valve closes and cuts oif the supply of oil until the pressure in the port is again reduced below that in the pipe.
  • the oil flows into a cylindrical cupvalve D, which is provided with a cavity or receptacle d, for receiving the oil from the port d and supplying it to the piston-cylinder.
  • This cup-valve is inclosed within a chamber E, and moves back and forth according to the movements of the piston and consequent pressure thereby exerted upon the oil, which is admitted to and discharged from the cylinder, and is also preferably provided with flattened or elliptical guiding-stem d adapted to move in suitable socket in head of the chamber for preventing turning, and
  • Openings or passage ways e 6' make communication between the chamber E and the cylinder leading into the lat ter near each end thereof, and as the pump is intended to be double-acting the movements of the valve alternately bring the cavity d and the oil therein over or in connection with the passages e e, and when such cavity is in communication with one of such passages the outlet-opening e at the opposite end of the valve will be in communication with the other passage leading from the cylinder.
  • the passages e e are each connected with the opposite ends of the chamber E by branch passages c 6 so that when the piston, being in the position shown in Fig. 1, begins to move in the opposite di-' rection the oil which has flowed from the valve D to the chamber of the piston-cylinder is forced up through the passage 6, which at the beginning of the stroke is in communication with the valve, and, finding no outlet through the main passage way e, passes therefrom through the branch passage 6 and enters the chamber E between the end of the same and the valve, and the pressure exerted upon the oil moves the valve toward the opposite end of such chamber until the oil finds its outlet through the main passage-way e and outlet-opening e in-the valve, while by such movement the other outlet-opening e in the valve is passed beyond its corresponding passage-way e, and the cavity 61 is brought into communication therewith.
  • outlets e e in the valveD also communicate with outlets e e in the diaphragm or cover of the chamber E, and from such outlets proper con nections are made with the oil-inlets of the compressor, so that oil is supplied to the same with each stroke of the pump-piston, and it will be apparent that the construction and arrangements of the parts of the pump shown by the drawings herein are such as to introduce the oil in measured quantities of practically the same quantity at each injection thereof.
  • passages e e, and cupwalve D provided with passages e c, cavity 01, having ail-opening'therein, and guiding-stem d adapted to move in socket in head'of valve-chamber, arranged and operating substantiallyas described.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Reciprocating Pumps (AREA)

Description

UNITED. STATES PATENT OFFICE.
FERDINAND BAUER, OF BROOKLYN, NEW YORK.
PUMP.
SPECIFICATION forming part of Letters Patent No. 410,396, dated September 3, 1889. Application filed July 19, 1888- Serial No. 280,384. (No model.)
To all whom it may concern:
Be it known that I, FERDINAND BAUER, a resident of Brooklyn, Kings county, New York, have invented certain new and useful Improvements in Pumps, of which the following is such a full, clear, concise, and exact description as will enable others skilled in the art to which my invention appertains to make and use the same, reference being had to the accompanying drawings, forming part of this specification.
My invention relates more particularly to that class of pumps employed in connection with gas compressing and refrigerating apparatus for introducing the oil or lubricating liquid into the compressor; and it consists in the construction of the piston-chamber, valvechamber, valve, and openings for receiving and discharging the oil into and from the pump, as hereinafter more fully described and claim ed.
In the drawings, Figure 1 is a longitudinal vertical section of the pump and connections, the same being taken on the line a: a: of Fig. 2, which is a plan View thereof; and Fig. 3 is a vertical cross-section of the same, taken on the line y 1 of Fig. 2.
In the drawings, A represents the piston cylinder or chamber; B, the piston, which may be actuated by suitable connections with the piston-rod b. The pump receives its supply of oil through the inlet-pipe C, which may return the oil from the system after being discharged from the compressor and separated from the compressed gas in the usual way. The inlet-pipe O is provided with a checkvalve 0, for regulating the flow of oil to the port cl, such valve being made to open and close by the pressure, which, when greater in the pipe C than in the port (1, causes the checkvalve to open and the oil flows into the port, and when the pressure in the port becomes greater than that obtained in the pipe the check-valve closes and cuts oif the supply of oil until the pressure in the port is again reduced below that in the pipe. From the port (I the oil flows into a cylindrical cupvalve D, which is provided with a cavity or receptacle d, for receiving the oil from the port d and supplying it to the piston-cylinder. The cup-valve D is also provided with outlet= openings e c, for permitting the discharge of the oil after its passage through the cylinder, such discharge being effected by the pressure of the piston. This cup-valve is inclosed within a chamber E, and moves back and forth according to the movements of the piston and consequent pressure thereby exerted upon the oil, which is admitted to and discharged from the cylinder, and is also preferably provided with flattened or elliptical guiding-stem d adapted to move in suitable socket in head of the chamber for preventing turning, and
thus throwing the outlet and inlet openings therein out of position to admit of the flow of oil from the cavity cl of the valve D to the cylinder. Openings or passage ways e 6' make communication between the chamber E and the cylinder leading into the lat ter near each end thereof, and as the pump is intended to be double-acting the movements of the valve alternately bring the cavity d and the oil therein over or in connection with the passages e e, and when such cavity is in communication with one of such passages the outlet-opening e at the opposite end of the valve will be in communication with the other passage leading from the cylinder. To insure the proper movements of the valve, the passages e e are each connected with the opposite ends of the chamber E by branch passages c 6 so that when the piston, being in the position shown in Fig. 1, begins to move in the opposite di-' rection the oil which has flowed from the valve D to the chamber of the piston-cylinder is forced up through the passage 6, which at the beginning of the stroke is in communication with the valve, and, finding no outlet through the main passage way e, passes therefrom through the branch passage 6 and enters the chamber E between the end of the same and the valve, and the pressure exerted upon the oil moves the valve toward the opposite end of such chamber until the oil finds its outlet through the main passage-way e and outlet-opening e in-the valve, while by such movement the other outlet-opening e in the valve is passed beyond its corresponding passage-way e, and the cavity 61 is brought into communication therewith. The outlets e e in the valveD also communicate with outlets e e in the diaphragm or cover of the chamber E, and from such outlets proper con nections are made with the oil-inlets of the compressor, so that oil is supplied to the same with each stroke of the pump-piston, and it will be apparent that the construction and arrangements of the parts of the pump shown by the drawings herein are such as to introduce the oil in measured quantities of practically the same quantity at each injection thereof.
Having thus described my invention, what I claim as new, and desire to secure by Letters Patent, is-- N v v is r 1. In a pump, the combination of a pistonchamber with a piston adapted to move there the passage leading to piston-chamber and not connected with an outlet-opening, said valve and piston-chamber being further connected by channels at each end,whereby the cup-valve is given a reciprocating motion by means of the pressure of the oil forced through said channels under successive strokes of said piston, and the passages leading to and from said valve-chamber are opened and sealed and equal quantities of oil'discharged, substantially as described.
-2. In a pump, the combination oil the piston-chamber A, with piston adapted'to move therein, valve-chamber with port d, having discharge-openings e e, channels e (2*, and
passages e e, and cupwalve D, provided with passages e c, cavity 01, having ail-opening'therein, and guiding-stem d adapted to move in socket in head'of valve-chamber, arranged and operating substantiallyas described.
FERDINAND BAUER Witnesses: ALFRED SIEBERT, R. G. MONROE.
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