US440719A - Steam and vacuum pump - Google Patents

Steam and vacuum pump Download PDF

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US440719A
US440719A US440719DA US440719A US 440719 A US440719 A US 440719A US 440719D A US440719D A US 440719DA US 440719 A US440719 A US 440719A
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steam
valve
vacuum pump
cylinder
water
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01BMACHINES OR ENGINES, IN GENERAL OR OF POSITIVE-DISPLACEMENT TYPE, e.g. STEAM ENGINES
    • F01B25/00Regulating, controlling, or safety means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04FPUMPING OF FLUID BY DIRECT CONTACT OF ANOTHER FLUID OR BY USING INERTIA OF FLUID TO BE PUMPED; SIPHONS
    • F04F1/00Pumps using positively or negatively pressurised fluid medium acting directly on the liquid to be pumped

Definitions

  • This invention relates to improvements in I valves for double-cylinder steam vacuumpumps which raise water by alternate vacuums in the cylinders, produced by a jet or jets of cold water ejected, respectively, into the cylinders after the water has been forced out by pressure of steam.
  • the purpose of this invention is to provide an oscillating valve which will be subjected to only a minimum of friction, and which shall under a continuous pressure of steam operate automatically to put steam alternately into the cylinders.
  • known hollow base to the pump is shown at Fig. 2, and it is not materially different from the base in the G. H. Nye pump patented on November 5, 1872, No. 132,731.
  • the portions J H I, Fig. 1, are the lower walls of the three chambers below the level top plate K K.
  • the induction-pipe to chamber H is shown at M, and admits water by air-pressure therein. From thence Water may enter either cylinder A B by means of valve to or 17. From the inside of either cylinder water may pass into a chamber L by means of a pipe 0 or d and a valve f or e.
  • C is a condensing-chamber, into which air and water may pass, respectively, from the cylinders by means of ports and pipes n g Z 7%, and m j m 2 ater may also pass from one The ordinary Wellcylinder to the other by pipes 0 p and j i.
  • Ball-valves are to be placed over ports at Z, so that water for condensing will return to either cylinder by means of reduced ports ij in the ordinary manner as the bases of these kind of pumps are constructed.
  • the valve is shown at Figs. 3 and 4. 4 4c are its heads, and U T and W V are those parts of the periphery which remain after the ports 2 2' Z are formed.
  • the portions W V extend in past the centers of the heads at 4, and longitudinally through the extension is formed a circular bearing which turns on a seat 5 on the top of a V-shaped portion X, projecting up from the central portion of the lower part of the pipe E F.
  • the steam from the pipe G enters port Z in the valve and may pass out through either port 2 or 2 and into either pipe E or F to either cylinder A or B.
  • the V-shaped notch between the solid periphery portions V IV of the valve is so much larger than the V-shaped portion X as will compensate for the throw of the valve in the oscillating movement.
  • This construction is such that when the steam is passing out of port 2 and into cylinder A there is a vacuum in cylinder B, and consequently the portion W has a seat against the V-shaped portion X, and the steam by means of the pipe Q has an equal bearing on both sides of the portion V. Hence the pipe P will be closed by the portion U. When there is a vacuum in cylinder A, the reverse is true. he portion T will close the port 2', and the port 2 will let steam into pipes P E and cylinder B.
  • small pipes 6 may be formed through the portions V W.
  • the case to the valve is shown at part-s Y S S, which, so far as they extend, have curves coinciding with the periphery of the valve.
  • One head to the case is shown at D, Fig. 1, there being one at each end of the valve closely fitting the same. The valve will operate it held only in position by the case, but the friction will be much less when it oscillates on the support 5.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Sorption Type Refrigeration Machines (AREA)

Description

2 Sheets-Sheet 11.
(No Model.) 7
G. E. NYE. STEAM AND VACUUM PUMP.
No. 440,719. Patented Nov. 18, 1890.
illl HI IIHILM SIIIIIIIR M Witnesses: Ina/c5191. v 1 ,ZW Q f Z man (No Model.) 2 Sheets-Sheet 2. G. E. NYE. STEAM AND VACUUM PUMP.
No. 440,719, Patented Nov. 18, 1890.
UNITED STATES PATENT OFFICE.
GEORGE E. NYE, OF AUSTIN, ILLINOIS.
STEAM AND VACUUM PUMP.
SPECIFICATION forming part of Letters Patent No. 440,719, dated November 18, 1890. Application filed March 24 1890. $erial 110.345.021- (No model.)
To all whom it may concern:
Be it known that I, GEORGE E. NYE, a citizen of the United States, residing in Austin, in the county of Cook and State of Illinois, have invented new and useful Improvements in Steam and Vacuum Pumps, of which the following is a specification, reference being had to the accompanying drawings, illustrating the invention, in which-- Figure 1, Sheet 1, is a side elevation of a steam vacuum-pump in which my invention is embodied; Fig. 2, a plan of the base of the pump with the cylinders removed; Fig. 3, Sheet 2, an enlarged longitudinal vertical central sectional elevation of the oscillating valve, its case and pipe-connections removed from the cylinders. Fig. 4; is an elevation of the valve and its pivotal stop-seat with the case removed, looking in direction of dart This invention relates to improvements in I valves for double-cylinder steam vacuumpumps which raise water by alternate vacuums in the cylinders, produced by a jet or jets of cold water ejected, respectively, into the cylinders after the water has been forced out by pressure of steam.
The purpose of this invention is to provide an oscillating valve which will be subjected to only a minimum of friction, and which shall under a continuous pressure of steam operate automatically to put steam alternately into the cylinders. known hollow base to the pump is shown at Fig. 2, and it is not materially different from the base in the G. H. Nye pump patented on November 5, 1872, No. 132,731. The portions J H I, Fig. 1, are the lower walls of the three chambers below the level top plate K K. The induction-pipe to chamber H is shown at M, and admits water by air-pressure therein. From thence Water may enter either cylinder A B by means of valve to or 17. From the inside of either cylinder water may pass into a chamber L by means of a pipe 0 or d and a valve f or e.
C is a condensing-chamber, into which air and water may pass, respectively, from the cylinders by means of ports and pipes n g Z 7%, and m j m 2 ater may also pass from one The ordinary Wellcylinder to the other by pipes 0 p and j i. Ball-valves are to be placed over ports at Z, so that water for condensing will return to either cylinder by means of reduced ports ij in the ordinary manner as the bases of these kind of pumps are constructed.
The valve is shown at Figs. 3 and 4. 4 4c are its heads, and U T and W V are those parts of the periphery which remain after the ports 2 2' Z are formed. The portions W V extend in past the centers of the heads at 4, and longitudinally through the extension is formed a circular bearing which turns on a seat 5 on the top of a V-shaped portion X, projecting up from the central portion of the lower part of the pipe E F. The steam from the pipe G enters port Z in the valve and may pass out through either port 2 or 2 and into either pipe E or F to either cylinder A or B. The V-shaped notch between the solid periphery portions V IV of the valve is so much larger than the V-shaped portion X as will compensate for the throw of the valve in the oscillating movement. This construction is such that when the steam is passing out of port 2 and into cylinder A there is a vacuum in cylinder B, and consequently the portion W has a seat against the V-shaped portion X, and the steam by means of the pipe Q has an equal bearing on both sides of the portion V. Hence the pipe P will be closed by the portion U. When there is a vacuum in cylinder A, the reverse is true. he portion T will close the port 2', and the port 2 will let steam into pipes P E and cylinder B. To form cushions against the portion X, small pipes 6 may be formed through the portions V W. The case to the valve is shown at part-s Y S S, which, so far as they extend, have curves coinciding with the periphery of the valve. One head to the case is shown at D, Fig. 1, there being one at each end of the valve closely fitting the same. The valve will operate it held only in position by the case, but the friction will be much less when it oscillates on the support 5.
I claim and desire to secure by Letters Patent- In a steam and vacuum pump having two Water-cylinders, a eondenseigwater inlet and and a valve-case with pipes leading to the outlet pipes, the combination of an oscillatcylinders, as and for the purpose specified. ing valve consisting of two heads, one induc- 1 tion steam-port, and'two exhaust-ports, with GEORGE 5 a longitudinal central bearing on the top of Witnesses:
the valve-stop 0f the case and the said stop G. L. OHAPIN, projecting up between the heads of the valve, ANNA D. JOHNSON.
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