[go: up one dir, main page]

US507025A - miles - Google Patents

miles Download PDF

Info

Publication number
US507025A
US507025A US507025DA US507025A US 507025 A US507025 A US 507025A US 507025D A US507025D A US 507025DA US 507025 A US507025 A US 507025A
Authority
US
United States
Prior art keywords
pump
piston
gas
liquid
cylinders
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
Application number
Publication date
Application granted granted Critical
Publication of US507025A publication Critical patent/US507025A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B7/00Piston machines or pumps characterised by having positively-driven valving
    • F04B7/04Piston machines or pumps characterised by having positively-driven valving in which the valving is performed by pistons and cylinders coacting to open and close intake or outlet ports

Definitions

  • FIG. 1 is a central horizontal section of our compressor.
  • Fig. 2 is a section through the same on line y, y, Fig. 1.
  • Fig. 3 is a vertical section on line 'v, c, Fig. 1.
  • the compressor preferably consists of single acting piston pumps which are advantageously combined to operate in a battery of two or more pumps in order to distribute the power to the several pumps as desired, and the strain evenly throughout the revolution of the driving shaft.
  • A represents the pump cylinders; B piston rods; 5 cross heads; 1 cross head guides; O the driving or crank shaft, and c the driving pulley.
  • Our compressor is preferably operated in connection with a body of liquid, preferably a heavy hydrocarbon oil, which serves to seal the joints and lubricate the working parts, and is so illustrated; it may, however, be advantageously operated with merely the amount of oil usually supplied to lubricate the working parts of ordinary machinery, as the capillary attraction of the liquidtogether with the motion of the pump will accomplish its proper distribution.
  • a body of liquid preferably a heavy hydrocarbon oil
  • G represents the tank or liquid chamber which is providedwith flanged openings L. Into these flanged openings are screwed, or otherwise secured, the forward or open ends of the cylinders A, bringing the open mouths of the cylinders into connection with the tank G, the piston rods passing through and having their stuffing boxes secured to the opposite side of the tank G.
  • M represents a dome from which the gas passes on to the condensing pipes through outlet pipe m.
  • N represents waterjackets surrounding the cylinders, for the purpose of keeping the pump cylinders and liquid of chamber G cool.
  • the in take valves 2 are located in the heads a closing one end of the cylinders.
  • a single pump might be used allowing the height of the liquid to rise and fall with each stroke of the pump, but we prefer to have two or more pumps operating simultaneously in the same tank, as they may thus be arranged so as to alternately take up the liquid discharged from the other cylinder and thus maintain a constant height of liquid in the tank; also as the work performed by the driving shaft is confined principally to the forward stroke of the pump and by using two or more pumps the work is evenly distributed over the whole revolution of the shaft, and we are thus enabled to utilize the back pressure exerted on the shaft on the return stroke of one piston to assist in the forward movement of the other, thereby economizing power.
  • the liquid H serves to keep the pump from becoming over heated, so that a soft elastic piston packing may be employed;
  • the piston stuffing box is packed against a liquid instead of a gas as is usually done which avoids the usual leakage at that point; or, if only a small amount of oil is used enough is supplied to the piston stulfing box by capillary attraction, and the action of the piston to seal it against the escape of gas;
  • third, it serves to automatically lubricate all of the working parts; fourth, it seals all the joints; fifth, by providing the space it and tapping it with the discharge pipe we avoid discharging the oil into the system of pipes; sixth, it assists in condensing the gas or re moving the heat therefrom as the gas bubbles up through the liquid.
  • the tank G may also if desired,be surrounded by a water jacket.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Compressors, Vaccum Pumps And Other Relevant Systems (AREA)
  • Compressor (AREA)

Description

(No Model.)
S. S. 8150. WLMILES. GOMPRESSION PUMP FOR REFRIGERATING APPARATUS.
No. 507,025. Patent ed Oct. 17,1893.
llNirEE STATES PATENT OFFICE.
STEPHEN S. MILES AND CASPER W. MILES, OF CINCINNATI, OHIO, ASSIGNORS OF ONE-THIRD TO LEMUEL WOOD, OF SAME PLACE.
COMPRESSION-PUMP FOR REFRIGERATING APPARATUS.
SPECIFICATION forming part of Letters Patent No. 507,025, dated October 1'7, 1893.
Application filed January 27, 1892. Serial No. 419,460. (No model.)
To all whom it may concern:
Be it known that we, STEPHEN S. MILES and CASPER W. MILES, citizens of the United States, residing at Cincinnati, in the county of Hamilton and State of Ohio, have invented certain new and useful Improvements in Oompression-Pumps for Refrigerating Apparatus, of which the following is a specification.
Our invention relates to ice or refrigerating machines. Its objects are, improved means for compressing the gas, and improved means for condensing the compressed gas, all of which will be fully set forth in the description of the accompanying drawings making a part of this specification, in which Figure 1 is a central horizontal section of our compressor. Fig. 2 is a section through the same on line y, y, Fig. 1. Fig. 3 is a vertical section on line 'v, c, Fig. 1.
The compressor preferably consists of single acting piston pumps which are advantageously combined to operate in a battery of two or more pumps in order to distribute the power to the several pumps as desired, and the strain evenly throughout the revolution of the driving shaft.
A represents the pump cylinders; B piston rods; 5 cross heads; 1 cross head guides; O the driving or crank shaft, and c the driving pulley.
(1 represents the intake pipes from the refrigerator. 1
Our compressor is preferably operated in connection with a body of liquid, preferably a heavy hydrocarbon oil, which serves to seal the joints and lubricate the working parts, and is so illustrated; it may, however, be advantageously operated with merely the amount of oil usually supplied to lubricate the working parts of ordinary machinery, as the capillary attraction of the liquidtogether with the motion of the pump will accomplish its proper distribution.
The manner of construction is as follows: G represents the tank or liquid chamber which is providedwith flanged openings L. Into these flanged openings are screwed, or otherwise secured, the forward or open ends of the cylinders A, bringing the open mouths of the cylinders into connection with the tank G, the piston rods passing through and having their stuffing boxes secured to the opposite side of the tank G.
M represents a dome from which the gas passes on to the condensing pipes through outlet pipe m.
N represents waterjackets surrounding the cylinders, for the purpose of keeping the pump cylinders and liquid of chamber G cool. The in take valves 2 are located in the heads a closing one end of the cylinders.
5 represent plungers in which are located exit valves 6. A space it is preferably, reserved above the liquid in the dome M, which is occupied by a portion of the compressed gas thus keeping the liquid constantly under the elastic pressure of the gas.
The operation of our device is as follows: A limited amount of liquefied gas is allowed to expand in the refrigerator pipes.- From the refrigerating pipes it is taken up by the pump at each forward stroke of the piston 5. Upon the return stroke of the piston the gas in the pump is compressed until it reaches a pressure sufficient to open the discharge valve 6 located in the piston head, and rises in bubbles through the liquid of the tank into the,
space h, from whence it passes to the condensing pipes to be cooled and liquefied in passing to the refrigerating coils. Thus, it will be observed that the liquid H retreats before and follows up the piston head in the cylinder at each reciprocation, and materially assists in the return stroke of the piston as it exerts a pressure against the piston head equal to the expansive pressure of the compressed gas in the space 71.. Thus,if the compressed gas in space it exerts a pressure of sixty pounds per square inch the piston making the forward stroke has to overcome this pressure but the piston making the return stroke receives at the commencement of its stroke an equal pressure assisting its return stroke, which pressure is gradually counterbalanced by the compression of the gas in the pump until the gas in the pump reaches a pressure sufiicient to discharge the gas from the pump into the chamber G.
A single pump might be used allowing the height of the liquid to rise and fall with each stroke of the pump, but we prefer to have two or more pumps operating simultaneously in the same tank, as they may thus be arranged so as to alternately take up the liquid discharged from the other cylinder and thus maintain a constant height of liquid in the tank; also as the work performed by the driving shaft is confined principally to the forward stroke of the pump and by using two or more pumps the work is evenly distributed over the whole revolution of the shaft, and we are thus enabled to utilize the back pressure exerted on the shaft on the return stroke of one piston to assist in the forward movement of the other, thereby economizing power. Further advantages are obtained by the liquid H, namely, first, it serves to keep the pump from becoming over heated, so that a soft elastic piston packing may be employed; second, the piston stuffing box is packed against a liquid instead of a gas as is usually done which avoids the usual leakage at that point; or, if only a small amount of oil is used enough is supplied to the piston stulfing box by capillary attraction, and the action of the piston to seal it against the escape of gas; third, it serves to automatically lubricate all of the working parts; fourth, it seals all the joints; fifth, by providing the space it and tapping it with the discharge pipe we avoid discharging the oil into the system of pipes; sixth, it assists in condensing the gas or re moving the heat therefrom as the gas bubbles up through the liquid. For this purpose the tank G, may also if desired,be surrounded by a water jacket.
Having described our invention, what we claim is- In a refrigerating machine, the combination of the open mouthed pump cylinders A, intake valves 2 located at the closed end of said cylinders, water jacket N inclosing said cylinders, reciprocating plungers 5 exit valves 6 located in the plungers and a liquid lubricant chamber G inclosing the open ends of said cylinders substantially as specified.
In testimony whereof we have hereunto set our hands.
STEPHEN s. MILES. CASPER W. MILES.
Witnesses:
E. E. W001), GEO. ASHTON.
US507025D miles Expired - Lifetime US507025A (en)

Publications (1)

Publication Number Publication Date
US507025A true US507025A (en) 1893-10-17

Family

ID=2575859

Family Applications (1)

Application Number Title Priority Date Filing Date
US507025D Expired - Lifetime US507025A (en) miles

Country Status (1)

Country Link
US (1) US507025A (en)

Similar Documents

Publication Publication Date Title
US507025A (en) miles
US1330458A (en) Refrigerator-machine
US323749A (en) Thirds to adolph reutlinger and moses schwartz
US545032A (en) Condensing- pump
US612226A (en) bailey
US495348A (en) Gas-compressor
US229940A (en) Half of his eight to eobeet a
US634335A (en) Apparatus for ice-making, &c.
US504094A (en) schmaltz
US424747A (en) Ice or refrigerating machine
US960233A (en) Process of compressing air, gas, or other gaseous fluids.
US332675A (en) Stuffing-box for piston-rods of ice-machines
US330540A (en) worthington
US274500A (en) Jce-making machine
US337874A (en) Refrigerating-machine
US504093A (en) schmaltz
US990231A (en) Air-compressor.
US828295A (en) Compressed-air motor.
US395060A (en) kaselowsky
US465276A (en) Pump for ice-machines
US636459A (en) Compressor for ice-machines.
US527081A (en) Gas-compressor
US556713A (en) giesler
US512776A (en) Edward h
US519225A (en) Washinqton