US505441A - William craig - Google Patents

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US505441A
US505441A US505441DA US505441A US 505441 A US505441 A US 505441A US 505441D A US505441D A US 505441DA US 505441 A US505441 A US 505441A
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valve
valves
cylinder
chamber
discharge
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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
    • F04B53/00Component parts, details or accessories not provided for in, or of interest apart from, groups F04B1/00 - F04B23/00 or F04B39/00 - F04B47/00

Definitions

  • My invention relates to an improvement in double acting pumps in which the valves are arranged to open upwardly and are located in close proximity to the ends of the cylinder.
  • Figure 1 is a horizontal section through the cylinder, inlet and discharge chambers.
  • Fig. 2 is a vertical section through line fr, a; of Fig. l.
  • Fig. 8 is a vertical section through line @by of Fig. 1.
  • Figa is a vertical section through line z, e of Fig. l.
  • the pump cylinder is denoted by A, the piston by a and the piston rod by c'.
  • the structure of the cylinder, its piston and rod may b'e of any well known or approved form.
  • the cylinder is located in a vertical position and the inlet and discharge chambers B and B are located side by side in proximity to one side of the cylinder.V
  • the lower inlet valve is denoted by O, the upper inlet valve by C', the lower discharge valve by D and the upper discharge valve by D.
  • Their corresponding valve seats are denoted respectively by c, c', d and d.
  • the several seats are made removable and screwed into position,the openings for the reception of the two inlet valves and of the two discharge valves being located in alignment, one above the other, so that each pair of openings may be bored and tted by a single advance movement of the tool.
  • the valve chambers, in which the inlet valves C and C operate, are separated from one another by a screw cap E, the opening for which may also be provided in a diaphragm at the bottom of the inlet chamber B by the .same Y advance movement of the tool which forms the openings for the reception of the valve seats.
  • the lower valve chamber communicates with the lower end of the cylinder A through a port e and the ⁇ upper valve chamber communicates with the upper end ofthe cylinder through a port e.
  • valves C and C both move upwardly away from their seats and are guided by means of central studs c2 and c3, preferably formed integral with the valve seats c and c', the upper ends of the studs being adapted to it within sockets c4 and c5, the former formed in the under face of the cap E and the latter formed in the under face ot the top cap F which forms the ceiling of the valve chamber for the upper valve C.
  • the iuid to be moved, entering through the inlet pipe Ginto the inlet chamber B passes thence either up through the passage way opened or closed by the upper valve C or down into the chamber E underneath the lower valve C and thence up through the passage way opened and closed by the said lower valve C to the cylinder.
  • the discharge valves D and D are also both arranged to lift from their seats and the chambers in which they move are separated from each other by a cap H, the opening for which may be formed in a diaphragm extending across the discharge chamber, by the same advance movement of the tool which forms the open ings for the valve seats d and d.
  • the discharge valves D and D are guided in their movements away from and toward their seats by central studs d2 and da, preferably formed integral with the valve seats, the upper end of the stud cl3 being received in a socket d4 formed in the under face of the top cap F which forms the ceiling of the chamber in which the valve D operates.
  • the Iiuid escaping from the cylinder'A passes into a chamber I underneath the lower valve D., thence through the passage-way opened and closed by the valve D into the discharge chamber B or into a chamber I underneath the valve D and thence through the passage way opened and closed by the valve D and thence into the discharge chamber B from which it may pass through an outlet G.
  • a cylinder and its piston In combination, a cylinder and its piston, two inletting valves in alignment and separated by a removable partition in alignment with the Valves, two outletting valves in alignment and separated by a removable partition in alignment with the valves, an inletting chamber in open communication with the two inletting valves upon opposite sides of the partition, an inletting chamber in open communication with. the outletting valves upon opposite sides of their partition, inletting conduits leading from above the inletting valves to the opposite ends of the cylinder and outletting conduits leading from the opposite ends of the cylinder to the under sides of the outletting valves, substantially as set forth.

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

Description

(No Model.) rA
. W. CRAIG.
DOUBLE ACTING PUMP.
No. 505,441'.v l Patented sept. 26. 189s.
STATES PATENT OFFICE.N
WILLIAM CRAIG, OF BROOKLYN, NEVYORK.`
DOUBLE-ACTING PUMP.
SPECIFICATION forming part of Letters Patent No. 505,441,1:1ated-September 26, 1893.
Application filed June 11, 1892. Serial No. 436,289. (No model.)
To a/ZZ whom it may concern.-
Be it known that I, WILLIAM CRAIG, of Brooklyn, in the county of Kings and State of New York, have invented a new and useful Improvement in Double-Acting Pumps, of which the following is a specification.
My invention relates to an improvement in double acting pumps in which the valves are arranged to open upwardly and are located in close proximity to the ends of the cylinder.
A practical embodiment of my invention is represented in the accompanying drawings in which"n Figure 1 is a horizontal section through the cylinder, inlet and discharge chambers. Fig. 2 is a vertical section through line fr, a; of Fig. l. Fig. 8 is a vertical section through line @by of Fig. 1. Figa is a vertical section through line z, e of Fig. l.
In the form of pump which I have chosen to illustrate my invention, I have shown the inlet and discharge valves on the same side of the cylinder but they might be arranged upon opposite sides if so desired. I have also shown the pump arranged to act as a force or compressor pump, and in the form which I have shown it may be used for moving either aeriform iuids or liquids.
The pump cylinder is denoted by A, the piston by a and the piston rod by c'. The structure of the cylinder, its piston and rod may b'e of any well known or approved form. The cylinder is located in a vertical position and the inlet and discharge chambers B and B are located side by side in proximity to one side of the cylinder.V The lower inlet valve is denoted by O, the upper inlet valve by C', the lower discharge valve by D and the upper discharge valve by D. Their corresponding valve seats are denoted respectively by c, c', d and d. The several seats are made removable and screwed into position,the openings for the reception of the two inlet valves and of the two discharge valves being located in alignment, one above the other, so that each pair of openings may be bored and tted by a single advance movement of the tool. The valve chambers, in which the inlet valves C and C operate, are separated from one another by a screw cap E, the opening for which may also be provided in a diaphragm at the bottom of the inlet chamber B by the .same Y advance movement of the tool which forms the openings for the reception of the valve seats. The lower valve chamber communicates with the lower end of the cylinder A through a port e and the` upper valve chamber communicates with the upper end ofthe cylinder through a port e. The valves C and C both move upwardly away from their seats and are guided by means of central studs c2 and c3, preferably formed integral with the valve seats c and c', the upper ends of the studs being adapted to it within sockets c4 and c5, the former formed in the under face of the cap E and the latter formed in the under face ot the top cap F which forms the ceiling of the valve chamber for the upper valve C. The iuid to be moved, entering through the inlet pipe Ginto the inlet chamber B passes thence either up through the passage way opened or closed by the upper valve C or down into the chamber E underneath the lower valve C and thence up through the passage way opened and closed by the said lower valve C to the cylinder. The discharge valves D and D are also both arranged to lift from their seats and the chambers in which they move are separated from each other by a cap H, the opening for which may be formed in a diaphragm extending across the discharge chamber, by the same advance movement of the tool which forms the open ings for the valve seats d and d. The discharge valves D and D are guided in their movements away from and toward their seats by central studs d2 and da, preferably formed integral with the valve seats, the upper end of the stud cl3 being received in a socket d4 formed in the under face of the top cap F which forms the ceiling of the chamber in which the valve D operates. The Iiuid escaping from the cylinder'A, passes into a chamber I underneath the lower valve D., thence through the passage-way opened and closed by the valve D into the discharge chamber B or into a chamber I underneath the valve D and thence through the passage way opened and closed by the valve D and thence into the discharge chamber B from which it may pass through an outlet G.
The operation may be briefly stated as fol- IOO lows: Supposing the piston to be in the position shown in Fig. 2, as it moves upwardly, it
lwill discharge the fluid above it through an upper discharge Valve D into a discharge chamber B and will at the same time fill the cylinder below it through the lower inlet valve C from the inlet chambemB. On its downward stroke, the piston will discharge the fluid below it through the lower discharge valve D into the discharge chamber B and will at the same time till the cylinder above it through the upper inlet valve C from the inlet chamber B. It will be observed that the ports connecting the interior of the cylinder A with the valves are short, requiring but slight travel of the fluid being moved, that the entire set of valves open upwardly and hence seat under the iniiuence of gravity so that there is no derangement of the action of the pump caused by the breaking or weakening of the springs, and that the valve seats and the separating caps or plugs are so arranged .that access thereto may be conveniently had at any time and the necessary fitting for their reception may be made with great facility.
In combination, a cylinder and its piston, two inletting valves in alignment and separated by a removable partition in alignment with the Valves, two outletting valves in alignment and separated by a removable partition in alignment with the valves, an inletting chamber in open communication with the two inletting valves upon opposite sides of the partition, an inletting chamber in open communication with. the outletting valves upon opposite sides of their partition, inletting conduits leading from above the inletting valves to the opposite ends of the cylinder and outletting conduits leading from the opposite ends of the cylinder to the under sides of the outletting valves, substantially as set forth.
WILLIAM CRAIG. Witnesses:l
FREDK. HAYNEs, OHARLEs E. SUNDGREN.
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