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US959533A - Pump. - Google Patents

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Publication number
US959533A
US959533A US49018809A US1909490188A US959533A US 959533 A US959533 A US 959533A US 49018809 A US49018809 A US 49018809A US 1909490188 A US1909490188 A US 1909490188A US 959533 A US959533 A US 959533A
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United States
Prior art keywords
cylinder
piston
pump
worms
shaft
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Expired - Lifetime
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US49018809A
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John Holst
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Individual
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Priority to US49018809A priority Critical patent/US959533A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02BINTERNAL-COMBUSTION PISTON ENGINES; COMBUSTION ENGINES IN GENERAL
    • F02B53/00Internal-combustion aspects of rotary-piston or oscillating-piston engines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C3/00Rotary-piston machines or pumps, with non-parallel axes of movement of co-operating members, e.g. of screw type
    • F04C3/02Rotary-piston machines or pumps, with non-parallel axes of movement of co-operating members, e.g. of screw type the axes being arranged at an angle of 90 degrees

Definitions

  • This invention relates to pumps, and has specially in view a novel type of piston therefor which is formed of two screws arranged in the same horizontal plane and rotating toward each other so as to cause a constant flow of liquid from an intake pipe, through the cylinder in which said worms are mounted, and discharge the same through a discharge pipe at the end of the cylinder opposite to the intake pipe.
  • the invention also contemplates the employment of a novel type of sectional cylinder for the screw pistons which may be readily taken apart for cleaning or other purposes, said cylinder having mounted therein suitable disks which cooperate with the worm pistons to prevent any inert water being retained within the pump.
  • Figure 1 is a central longitudinal sectional view of the improved pump.
  • Fig. 2 is an end view thereof.
  • Fig. 3 is a detail sectional view of the upper portion of the pump casing, showing one of the disks for agitating the inert water between the pistons.
  • Fig. 4 is a detail plan view of the pump pistons.
  • Fig. 5 is an end view of the same.
  • Fig. 6 is a transverse sectional view taken on the line 66, Fig. 1.
  • l designates an open base, the side members 2 of which form the rest for the piston cylinder 3.
  • Said piston cylinder 3 is made in two sections, each being of duplicate construction and provided with a piston chamber 41 the inner longitudinal upper and lower edges 5 and 6 of which carry, respectively, an upstanding plate or flange 7 and a depending plate or flange 8, the longitudinal edges of each of which terminate in fastening flanges Specification of Letters Patent.
  • the arrangement being such that when the two sections of the cylinder are brought together, the upstanding plates form a narrow chamber which is open to the cylinder, and the bottom or depending plates form a similar chamber which is also open to the cylinder.
  • the fastening flanges 9 are held in detachable engagement by means of the bolts 10.
  • Piston shafts 11 and 11 extend through the pump casing, one being in each piston chamber 4, and each being in the same horizontal plane.
  • the piston shaft 11 extends beyond the outlet end of the casing and has mounted on its outer end a pulley 12 or the like adapted for connection with a suitable source of rotary power, not shown.
  • the two piston shafts 11 and 11 are arranged in the same horizontal plane and have bearings in the ends of the said casing which may be in the form of Babbitt metal boxes 13, glands 11, and interposed packing 15.
  • each piston shaft has a worm 2122 mounted on it, said worms being of substantially the same longitudinal length as the pump casing, and being so arranged that they will have a nesting engagement, as isshown in Fig. t with their spirals close together while being rotated, but yet sufficiently spaced apart to obviate any danger of contact therebetween.
  • the intake end of the cylinder terminates in an integral downwardly extending pipe 23 the end of which is provided with an annular flange 2% adapted for connection with a source of liquid supply, not shown.
  • the discharge or outlet end of the cylinder is provided with an integral upwardly extending pipe 25 the flanged end 26 of which is adapted for connection with a discharge pipe, not shown.
  • a shaft 27 is mounted in each of the chambers formed between the upstanding and depending plates of the two sections of the cylinder or casing, said shafts each having mounted on it a disk 28 preferably star-shaped and having its edges 29 beveled. Said disks project down into the cylinder between each worm from opposite sides, :as
  • Figs. 1 and 6 of the drawings are shown in Figs. 1 and 6 of the drawings, and at approximately their central portions;
  • the cylinder is primed in the usual manner, and power is applied to the piston shaft 11 which communicates thesame to the-spiston'shaft 11 to cause said shafts to operate in opposite directions, thereby causing the worms to rotate toward one another and draw liquid through the intake end of the cylinder and discharge the samethrough the outlet end, as will be obvious.
  • a pump comprising a. cylinderhaving an inlet pipe and a discharge'pipe, said cylinder being provided with oppositely arranged piston chambers, a shaft extending through each chamber and arranged in the shafts being provided withmeans for causing them to rotate in opposite directions, and disks carried by said cylinder and projectingbetween said worms and being rotated thereby;
  • a pump comprising a cylinder .formed oftwo sections, each section being provided with a longitudinally arranged piston chamher, and also provided, respectively with an upstanding and a depending plate,”whereby when the sections of the cylinder are together, upper and lower chambers are provided, a shaftextendingthrough each side. chamber of'the cylinder, a worm on each shaft and extending longitudinally of its chamber, said worms beingheld in spaced relation: and intermeshing, means for rotating saidshafts, and a'disk mounted in" each upperand lower chamber of the cylinder and' projecting between said worms and adapted to contact therewith.
  • a pump comprising a cylinder having an inlet pipe and a discharge pipe, said cylinder being also provided with longitudinally extending oppositely disposed piston chambers and with an upper and a lower chamber communicating. with the central portion of the cylinder, a shaft extending through each piston chamber, a worm mounted on each shaft within the piston chambers so that a space will be formed between them and said worms adapted to intermesh, and a disk mounted in the upper chamberand the lower chamber and projecting between the said worms.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Reciprocating Pumps (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Details Of Reciprocating Pumps (AREA)

Description

J. HOLST.
PUMP.
APPLICATION FILED APE.15,1909.
Patented May 31, 1910.
2 SHEETS-SHEET l.
, flTTORNEh \r l l Illll) O numazw a BRANAM 00,. mom-umoammms, WASHINGTON. 11c,
J. HOLST.
PUMP.
APPLICATION FILED APB. 15,1909.
Patented May 31, 1910.
2 SHEETS-SHEET 2.
(Q m Xx Q m QL 9 Q\ R o a;
WITNESSES: INVENTOR I JZA 24 2 IHHIHHI I; v
flg ATTORNEY.
inarrnp sraans PATENT osrron.
JOHN HOLST, OF BERKELEY, CALIFORNIA.
PUMP.
To all whom it may concern:
Be it known that I, JOHN HoLs'r, citizen of the United States, residing at Berkeley, in the county of Alameda and State of California, have invented certain new and useful Improvements in Pumps, of which the following is a specification, reference being had therein to the accompanying drawing.
This invention relates to pumps, and has specially in view a novel type of piston therefor which is formed of two screws arranged in the same horizontal plane and rotating toward each other so as to cause a constant flow of liquid from an intake pipe, through the cylinder in which said worms are mounted, and discharge the same through a discharge pipe at the end of the cylinder opposite to the intake pipe.
In connection with the foregoing, the invention also contemplates the employment of a novel type of sectional cylinder for the screw pistons which may be readily taken apart for cleaning or other purposes, said cylinder having mounted therein suitable disks which cooperate with the worm pistons to prevent any inert water being retained within the pump.
In carrying out the objects of the invention generally stated above it will, of course, be understood that the essential features thereof are susceptible of changes in details and structural arrangements, but one preferred and practical embodiment thereof is shown in the accompanying drawings, where- 1n Figure 1 is a central longitudinal sectional view of the improved pump. Fig. 2 is an end view thereof. Fig. 3 is a detail sectional view of the upper portion of the pump casing, showing one of the disks for agitating the inert water between the pistons. Fig. 4: is a detail plan view of the pump pistons. Fig. 5 is an end view of the same. Fig. 6 is a transverse sectional view taken on the line 66, Fig. 1.
Referring to said drawings by numerals, l designates an open base, the side members 2 of which form the rest for the piston cylinder 3. Said piston cylinder 3 is made in two sections, each being of duplicate construction and provided with a piston chamber 41 the inner longitudinal upper and lower edges 5 and 6 of which carry, respectively, an upstanding plate or flange 7 and a depending plate or flange 8, the longitudinal edges of each of which terminate in fastening flanges Specification of Letters Patent.
Application filed April 15, 1909.
Patented May 31, 1910.
Serial No. 490,188.
9, the arrangement being such that when the two sections of the cylinder are brought together, the upstanding plates form a narrow chamber which is open to the cylinder, and the bottom or depending plates form a similar chamber which is also open to the cylinder. The fastening flanges 9 are held in detachable engagement by means of the bolts 10.
Piston shafts 11 and 11 extend through the pump casing, one being in each piston chamber 4, and each being in the same horizontal plane. The piston shaft 11 extends beyond the outlet end of the casing and has mounted on its outer end a pulley 12 or the like adapted for connection with a suitable source of rotary power, not shown. As aforesaid, the two piston shafts 11 and 11 are arranged in the same horizontal plane and have bearings in the ends of the said casing which may be in the form of Babbitt metal boxes 13, glands 11, and interposed packing 15. The said shafts project beyond the intake end of the pump casing and each carries a gear wheel l617, said gear wheels being held in mesh so that when power is applied to the piston shaft 11 the same will be communicated to shaft 11, thereby constantly rotating said shafts at the same speed, but in opposite directions. Each piston shaft has a worm 2122 mounted on it, said worms being of substantially the same longitudinal length as the pump casing, and being so arranged that they will have a nesting engagement, as isshown in Fig. t with their spirals close together while being rotated, but yet sufficiently spaced apart to obviate any danger of contact therebetween.
The intake end of the cylinder terminates in an integral downwardly extending pipe 23 the end of which is provided with an annular flange 2% adapted for connection with a source of liquid supply, not shown. The discharge or outlet end of the cylinder is provided with an integral upwardly extending pipe 25 the flanged end 26 of which is adapted for connection with a discharge pipe, not shown.
A shaft 27 is mounted in each of the chambers formed between the upstanding and depending plates of the two sections of the cylinder or casing, said shafts each having mounted on it a disk 28 preferably star-shaped and having its edges 29 beveled. Said disks project down into the cylinder between each worm from opposite sides, :as
is shown in Figs. 1 and 6 of the drawings, and at approximately their central portions; In operation, the cylinder is primed in the usual manner, and power is applied to the piston shaft 11 which communicates thesame to the-spiston'shaft 11 to cause said shafts to operate in opposite directions, thereby causing the worms to rotate toward one another and draw liquid through the intake end of the cylinder and discharge the samethrough the outlet end, as will be obvious. It has been found inpractical operation-s of pumps-of this character that owing to thespiral shape of the worms, an opening or pocket is formed attheir'central portions-that is between each worm, which retains some-of the liquid in aninert state, and in order to agitate this liquid, the di sks described in the foregoing are provided. The saiddisks project into the pocketsor openings, and as theyarebeing-constantly rotated owing totheir edgesbeingin contact withthe worms, it will beseen that the liquid in said pockets or openings will beconstantly acted upon by the disks, therebycausing the same tobeforced from the pockets.
It will, of course, be understood that while in the foregoing'description particular stress has beenlaid on'thestar-shape construction of the disks, the same may be of any other convenient .or desirable shape.
What I claim as my invention is:
1. A pump comprising a. cylinderhaving an inlet pipe and a discharge'pipe, said cylinder being provided with oppositely arranged piston chambers, a shaft extending through each chamber and arranged in the shafts being provided withmeans for causing them to rotate in opposite directions, and disks carried by said cylinder and projectingbetween said worms and being rotated thereby;
5. A pumpcomprising a cylinder .formed oftwo sections, each section being provided with a longitudinally arranged piston chamher, and also provided, respectively with an upstanding and a depending plate,"whereby when the sections of the cylinder are together, upper and lower chambers are provided, a shaftextendingthrough each side. chamber of'the cylinder, a worm on each shaft and extending longitudinally of its chamber, said worms beingheld in spaced relation: and intermeshing, means for rotating saidshafts, and a'disk mounted in" each upperand lower chamber of the cylinder and' projecting between said worms and adapted to contact therewith.
6. A pump comprising a cylinder having an inlet pipe and a discharge pipe, said cylinder being also provided with longitudinally extending oppositely disposed piston chambers and with an upper and a lower chamber communicating. with the central portion of the cylinder, a shaft extending through each piston chamber, a worm mounted on each shaft within the piston chambers so that a space will be formed between them and said worms adapted to intermesh, and a disk mounted in the upper chamberand the lower chamber and projecting between the said worms.
Intestimony whereof I hereunto afiix my signature in presence of two witnesses.
JOHN HOLST.
lVitnesses H. C. SoHRoEDER, F. P. SoHRoEnER.
US49018809A 1909-04-15 1909-04-15 Pump. Expired - Lifetime US959533A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2488784A (en) * 1945-03-03 1949-11-22 Hartford Nat Bank & Trust Co Device for passing a rotary shaft through a wall in a gasstight manner
US3054356A (en) * 1959-03-30 1962-09-18 Mahoney Thomas P Gear type pump

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2488784A (en) * 1945-03-03 1949-11-22 Hartford Nat Bank & Trust Co Device for passing a rotary shaft through a wall in a gasstight manner
US3054356A (en) * 1959-03-30 1962-09-18 Mahoney Thomas P Gear type pump

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