US512991A - Sinking pump - Google Patents
Sinking pump Download PDFInfo
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- US512991A US512991A US512991DA US512991A US 512991 A US512991 A US 512991A US 512991D A US512991D A US 512991DA US 512991 A US512991 A US 512991A
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- water
- valve
- pump
- chests
- cylinders
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- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 23
- 210000000038 chest Anatomy 0.000 description 15
- 238000005192 partition Methods 0.000 description 5
- 230000008878 coupling Effects 0.000 description 4
- 238000010168 coupling process Methods 0.000 description 4
- 238000005859 coupling reaction Methods 0.000 description 4
- 239000004576 sand Substances 0.000 description 4
- 238000010276 construction Methods 0.000 description 3
- 230000009471 action Effects 0.000 description 2
- 239000002184 metal Substances 0.000 description 2
- 239000002245 particle Substances 0.000 description 2
- 239000004575 stone Substances 0.000 description 2
- POSKOXIJDWDKPH-UHFFFAOYSA-N Kelevan Chemical compound ClC1(Cl)C2(Cl)C3(Cl)C4(Cl)C(CC(=O)CCC(=O)OCC)(O)C5(Cl)C3(Cl)C1(Cl)C5(Cl)C42Cl POSKOXIJDWDKPH-UHFFFAOYSA-N 0.000 description 1
- 230000008901 benefit Effects 0.000 description 1
- 238000004140 cleaning Methods 0.000 description 1
- 210000005069 ears Anatomy 0.000 description 1
- 230000007246 mechanism Effects 0.000 description 1
- 230000000284 resting effect Effects 0.000 description 1
- 239000000126 substance Substances 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04B—POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
- F04B53/00—Component parts, details or accessories not provided for in, or of interest apart from, groups F04B1/00 - F04B23/00 or F04B39/00 - F04B47/00
Definitions
- the object of my invention has been to. provide an improved sinking pump, for removing water from mines and other shafts,
- the pump to which my invent1on especially relates, belongs to the vertical slnking class, and is of the duplex double plunger kind, the mechanism for aotu atmg the plungers and moving the steamvalves, and the general construction of the cylinders, with which such plungers act, being substantially like those used in the well known 1 Worthington pump.
- A designates the supportmg plate or bed, to which the various parts of the pump are to be secured, having the usgal sharpened hooks a, a, which are em-' ployed with vertical sinking pumps, to engage the cross-timbers or other supports-B, B, from which the pump is to be hung, while being operated.
- the steam-cylinders O, O are situatedjust far enough apart, to accommodate, between them, the water-eduction-pipe D, which has its lower end turned outward or forward and provided with a coupling flange d, for a purpose to be described.
- the water-cylinders E E are of the well-known divided kind used in the Worthington pump, each consisting of two parts, one for each end of the respective plunger or pump-piston E. Such parts are bolted to the bed plate A, and are, at their inner ends, connected together by the bolt-rods e, 6.
- Each cylinder E has a pipe E extending directly outward or forward from each of its end portions, to allow the passage of water into and out of the water spaces within such portions, and, on the outer end of this pipe, is a coupling fiange e
- the corresponding waterchests F, F, at each end of the two pump-cylinders E, E, being connected with the pipes E E from their respective cylinders, by the flanged connections f, f, bolted or otherwise secured to the flanges on said pipes, 1 have cast in one piece, as shown.
- Each of these chests has within it, the three chambers F, F and F of which F is the lowest, formed by'horizontal partitions dividing the interior of the chest.
- the intermediate one F is connected with the pipe E from therespective pump-cylinder E, through the conn ection f described above.
- the uppermost one F is made smaller than the intermediate one F in order that the latter may project out to one side, beyond the former, so as to leave a considerable portion of its top exposed,for a purpose tobe explained.
- valve-portf situated in its outer part directly below the projecting portion of the middle chamber, just above described, while the partition between the latter and the uppermost chamber F has a similar valve-port f
- Each of these ports is provided with a removable valveseat f in the form of an outer ring, fitting the port-opening, connected with a central smaller one f, by the radial arms f f Resting upon each of the seats so formed, is an upwardly opening valve consisting of a disk-shaped body G, preferably, of metal, with an upright central stem g, on its upper side, and an elastic facing g, preferably of rubber, on its under side adapted to cover the valve-seat when the valve is down.
- This elastic facing consisting of a disk of rubber placed between the valve seat and body G, is especially desirable for use in sinking pumps, on account of the grit and sand which is apt to be drawn up with the water by the pump.
- any sand or grit getting between it and the seat would prevent such closing ofthe port, as is necessary to the proper action of the pump, and would cut and wear both valve and seat; while, when the elastic disk is used, the latter yields to any pieces of stone or particles of grit or sand, and engages the valve-seat all around them, so as to close the port properly, when the valve is down.
- the elasticity of the disk will cause the stone, sand, or grit particles to be thrown out, so that they will be carried away by the passing water.
- I For guiding each valve, in its movements to and from its seat, I provide the water-chest with upright guide-ribs g 9 preferably, but not necessarily, four in number, situated so as to engage the outer edge of the body G of the valve, while leaving sufficient space between them for the free passage of the water around the edge of the valve, when the latter is raised from its seat.
- Each chamber F F has, in its top, directly over the valve within, an opening f 6 large enough to permit the valve and its valveseat to be readily removed and replaced, as desired.
- a swinging cover f is provided for each of these openings which, while serving to close its respective opening tightly, also serves as an abutment forthe upperend of the valve-closing spring 9 which, surrounding the valve-stem g, bears at its lower end down upon the valvebody G, with a pressure sufficient to close the valve, and hold it normally closed, when water is not being drawn or forced, by the action of the pump, up through the respective valveport.
- each of these covers f may be secured firmly and closely in place, and at the same time may be most readily raised when it is desired to get at the valve or valve seat below it.
- One of these bolts extends up through a bolt-hole in the respective cover, while the other passes through an open-ended slot or notch f in the side of the cover diametrically opposite to the hole for the other bolt.
- each bolt above the cover, is a nut f WVith this construction the cover canbe forced tightly down into its normal position to close the respective opening in the water chest top by screwing the nuts downward, while with the nuts loosened, the bolt engaging the notch or open-ended slot in the cover can be swung out of such notch or slot, and the cover can be swung with the other bolt as a hinge support so as to uncover the opening in the water chesttop, without any danger of being dropped ofi or lost down the shaft being pumped out.
- the unclosed opening can be quickly closed again by swinging the cover into place, moving the disengaged bolt up into the cover notch again, and screwing down the notch.
- each of the latter with a pin or key f so situated as to allow a sufficient unscrewing of the nut, while stopping it before it leaves the bolt end.
- the upper and lower pairs of water-chests are connected by the central hollow trunk H,
- the former being the one designated by H is connected by ports h, h,with the lower chamber E in all the water chests, while the latter, being the inner of the two passages, is connected, by ports h, h, with the several water-chestchambers F F F.
- This trunk connected withthechambersofthedifferent water-chests, as described, I cast in one piece with such chests, as shown in full lines in the drawings.
- each half being cast in one piece withapair of the waterchests, and provided, on its inner end, with a a suitable coupling flange 72. which can be bolted or clamped to the corresponding flange on the other half of the trunk.
- Such trunk is placed in line with the'Tspace between the water-cylinders E, E, and so that its partition H, dividing the suction and delivery passages H and H is about on a plane with the middle portions of the water-chests.
- a tubular extension h which, forming a continuation of the suction-passage H is provided with a flange hf, or other suitable means whereby it can be coupled to the suction-pipe h 1eadiug down from the pump.
- the form of coupling preferred is the hinged bolt one shown, which is like that used on the upper end of eduotion-pipe D, and consists of bolts 71 hinged to one of the parts to be coupled, and passing through corresponding open slots or notches 'h in the two abutting flanges, and nuts 71 on the outer portions of such bolts, to draw the flanges together in the manner which will be understood from the drawings.
- each plunger With the steam turned on, and the plungers actuated alternately, as in the well known form of Worthington pump, each plunger will, as it is moved down into the lower end of its respective cylinder, force the water from the latter out into the intermediate chamber of the respective valve-chest, and past the Valve closing the port into the uppermost chamber F From the latter, the water then flows into the delivery or eduction-passage 1-1 on the outer side of trunk H.
- This operation goes on with each side of the pump, so that, with the alternately acting plungers of the two sides, a continuous flow of water through the suction pipe h and passage H to the pump cylinders, and from the latter to and through the delivery passage H of the pump, so that they are in the most convenient position to be got at, when they or their seats are to be reached, for removal or replacing, and that upon the removal of the caps or covers f f alone, the valves and seats are left free to be removed directly upward, through the upwardly turned openings in the water-chest-tops.
- I stead of having sixteen in the connections of the plunger-barrels or cylinders, and tne water-chests, as in pumps of this class heretofore made, I have but four, which are so situated and constructed, that they can easily be kept tight, even during long continued use of the pump. I.
- a duplex double plunger pump in combination with the two cylinders or barrels, the water-chests connected with the ends of the cylinders or barrels, and the trunk-pipe, containing the common suction and delivery passages forthe water-chests, cast in one piece with such chests, substantially as and for the purpose shown.
- a vertical duplex double plunger pump in combination with the two water-cylinders or barrels, the water-chests for the corresponding ends of the cylinders or barrels situated on the outer or front side of the latter, and each containing three chambers with orts for connecting the latter, the automatic check valves to allow passage of water from one of these chambers into another and from the latter into the third, and the common suction and eduction passages connected respectively, with the first and third chambers of all the water chests, substantially as and for the purpose specified.
- the automatic check valves in the intermediate and outlet-chambers of each water-chest adapted to allow flow of water only into, and not from their respective chambers, removably fastened covers for the tops of the outlet and intermediate chambers, through which the valves therein can be reached ,for removal or replacing, and the trunk-pipe cast in one piece with the water-chests, and containing theoommon suction and delivery passages connected, respectively, with the inlet and outlet chambers of all the water-chests, substantially as and for the purpose shown.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Details Of Reciprocating Pumps (AREA)
Description
(No Model.) 2 Sheets-Sheet 2'.
J. RENSHAW. SINKING PUMP.
No. 512,991. Patented Jan; 16,1894.
flflmfilllllllllllllllllll llllllllllllwllll'z bm /z ma NATIDNAL umoammma COMPANT.
wuumcfon. n. 0
UNITED STATES,
PATENT OFFICE.
JAMES RENSHAW, or DENVER, COLORADO.
SINKING PUMP.
SPECIFICATION forming part of Letters Patent No. 512,991, dated January 16, 1894. Application filed May 15, 1893. Serial No. 474.271. (no mod l-l T0 at whom it may concern.-
Be it known that I, JAMES RENSHAW, a citi-' zen of the United States, residing at Denver, in the county of Arapahoe, and in the State of Colorado, have invented certain new and useful Improvements in Sinking Pumps; and I do declare that the following is a full, clear, and exact description thereof, reference being had to the accompanying drawings, in which Flgure 1 shows a view of my pump in front elevat on; Fig. 2, a view of the same in side elevation; Fig.3, a plan view of the same; Flgs. 4, 5, 6 and 7, views of sections on lines 0c, 0c,y, g ,z, z,and 0c, 4r, respectively, and Fig. 8, a detail perspective view of the valve and valve-seat, which I prefer to use in the Water chests. Fig. 9 is a top plan view of one of the valve chest covers.
Letters of like name and kind refer to like parts 1n each of the figures.
The object of my invention has been to. provide an improved sinking pump, for removing water from mines and other shafts,
which shall take up less room horizontally in' the shaft, have its valves more readily ac cesslble, for cleaning or replacing, and have a much smaller number of joints in the wa ter-end, than the pumps heretofore made and used for the same purpose, and to this end my invention consists in the pump with its parts constructed, arranged and combined as hereinafter specified.
As will be seen from the description and the drawlngs, the pump, to which my invent1on especially relates, belongs to the vertical slnking class, and is of the duplex double plunger kind, the mechanism for aotu atmg the plungers and moving the steamvalves, and the general construction of the cylinders, with which such plungers act, being substantially like those used in the well known 1 Worthington pump. I In the drawings A designates the supportmg plate or bed, to which the various parts of the pump are to be secured, having the usgal sharpened hooks a, a, which are em-' ployed with vertical sinking pumps, to engage the cross-timbers or other supports-B, B, from which the pump is to be hung, while being operated.
Fastened to the bed-plate A, in any desired way, are the steam and water-cylinders of a duplex double acting pump of the Worthington type.
As my present invention has nothing to do with the construction of the steam and water-cylinders, or the valve-mechanism used The steam-cylinders O, O, are situatedjust far enough apart, to accommodate, between them, the water-eduction-pipe D, which has its lower end turned outward or forward and provided with a coupling flange d, for a purpose to be described.
The water-cylinders E E, shown, are of the well-known divided kind used in the Worthington pump, each consisting of two parts, one for each end of the respective plunger or pump-piston E. Such parts are bolted to the bed plate A, and are, at their inner ends, connected together by the bolt-rods e, 6. Each cylinder E has a pipe E extending directly outward or forward from each of its end portions, to allow the passage of water into and out of the water spaces within such portions, and, on the outer end of this pipe, is a coupling fiange e The corresponding waterchests F, F, at each end of the two pump-cylinders E, E, being connected with the pipes E E from their respective cylinders, by the flanged connections f, f, bolted or otherwise secured to the flanges on said pipes, 1 have cast in one piece, as shown. Each of these chests has within it, the three chambers F, F and F of which F is the lowest, formed by'horizontal partitions dividing the interior of the chest. Of these chambers, the intermediate one F is connected with the pipe E from therespective pump-cylinder E, through the conn ection f described above. Of these chambers, the uppermost one F is made smaller than the intermediate one F in order that the latter may project out to one side, beyond the former, so as to leave a considerable portion of its top exposed,for a purpose tobe explained.
The partition between the lowest and middle chambers is provided with a valve-portf, situated in its outer part directly below the projecting portion of the middle chamber, just above described, while the partition between the latter and the uppermost chamber F has a similar valve-port f Each of these ports is provided with a removable valveseat f in the form of an outer ring, fitting the port-opening, connected with a central smaller one f, by the radial arms f f Resting upon each of the seats so formed, is an upwardly opening valve consisting of a disk-shaped body G, preferably, of metal, with an upright central stem g, on its upper side, and an elastic facing g, preferably of rubber, on its under side adapted to cover the valve-seat when the valve is down. This elastic facing, consisting of a disk of rubber placed between the valve seat and body G, is especially desirable for use in sinking pumps, on account of the grit and sand which is apt to be drawn up with the water by the pump. Were the face of the valve, which is to rest on the valve-seat, made of metal or other unyielding substance, any sand or grit getting between it and the seat, would prevent such closing ofthe port, as is necessary to the proper action of the pump, and would cut and wear both valve and seat; while, when the elastic disk is used, the latter yields to any pieces of stone or particles of grit or sand, and engages the valve-seat all around them, so as to close the port properly, when the valve is down. As the valve rises again, the elasticity of the disk will cause the stone, sand, or grit particles to be thrown out, so that they will be carried away by the passing water.
For guiding each valve, in its movements to and from its seat, I provide the water-chest with upright guide-ribs g 9 preferably, but not necessarily, four in number, situated so as to engage the outer edge of the body G of the valve, while leaving sufficient space between them for the free passage of the water around the edge of the valve, when the latter is raised from its seat.
Each chamber F F has, in its top, directly over the valve within, an opening f 6 large enough to permit the valve and its valveseat to be readily removed and replaced, as desired. A swinging cover f is provided for each of these openings which, while serving to close its respective opening tightly, also serves as an abutment forthe upperend of the valve-closing spring 9 which, surrounding the valve-stem g, bears at its lower end down upon the valvebody G, with a pressure sufficient to close the valve, and hold it normally closed, when water is not being drawn or forced, by the action of the pump, up through the respective valveport. In order that each of these covers f may be secured firmly and closely in place, and at the same time may be most readily raised when it is desired to get at the valve or valve seat below it, I use'the two hinged bolts f pivoted at their lower ends to suitable ears on the water chest casing. One of these bolts extends up through a bolt-hole in the respective cover, while the other passes through an open-ended slot or notch f in the side of the cover diametrically opposite to the hole for the other bolt. On the upper portion of each bolt, above the cover, is a nut f WVith this construction the cover canbe forced tightly down into its normal position to close the respective opening in the water chest top by screwing the nuts downward, while with the nuts loosened, the bolt engaging the notch or open-ended slot in the cover can be swung out of such notch or slot, and the cover can be swung with the other bolt as a hinge support so as to uncover the opening in the water chesttop, without any danger of being dropped ofi or lost down the shaft being pumped out. The unclosed opening can be quickly closed again by swinging the cover into place, moving the disengaged bolt up into the cover notch again, and screwing down the notch.
To prevent the various nuts from being lost off of their respective bolts, I provide each of the latter with a pin or key f so situated as to allow a sufficient unscrewing of the nut, while stopping it before it leaves the bolt end.
The upper and lower pairs of water-chests are connected by the central hollow trunk H,
which has its interior divided by the longitudinal partition H, into the two passages H and H of which the former is on the outer, and the latter is on the inner side or toward the front of the pump. These are, respectively, the suction anddelivery-passagescommon to the different parts of the pump. The former, being the one designated by H is connected by ports h, h,with the lower chamber E in all the water chests, while the latter, being the inner of the two passages, is connected, by ports h, h, with the several water-chestchambers F F F F. This trunk, connected withthechambersofthedifferent water-chests, as described, I cast in one piece with such chests, as shown in full lines in the drawings. If desired, it can be divided, at or near its middle, as indicated in dotted lines (see Figs. 1 and 2), each half being cast in one piece withapair of the waterchests, and provided, on its inner end, with a a suitable coupling flange 72. which can be bolted or clamped to the corresponding flange on the other half of the trunk.
In order that it may take up as little room as possible, and may not project beyond the front side of the water-chests, to any considerable extent, and thatthe covers of the openings in the tops of such chests may be left, so that access to them may be most free and unimpeded, I make the trunk of the shape shown,
with flattened sides, and its greatest diame ter running from the front to the rear, the passages within being correspondingly shaped. Such trunk is placed in line with the'Tspace between the water-cylinders E, E, and so that its partition H, dividing the suction and delivery passages H and H is about on a plane with the middle portions of the water-chests.
At the lower end of the trunk is a tubular extension h which, forming a continuation of the suction-passage H is provided with a flange hf, or other suitable means whereby it can be coupled to the suction-pipe h 1eadiug down from the pump.
The form of coupling preferred is the hinged bolt one shown, which is like that used on the upper end of eduotion-pipe D, and consists of bolts 71 hinged to one of the parts to be coupled, and passing through corresponding open slots or notches 'h in the two abutting flanges, and nuts 71 on the outer portions of such bolts, to draw the flanges together in the manner which will be understood from the drawings.
The operation of my pump, which will be understood from the foregoing description, and the drawings, is briefly, as follows: With the steam turned on, and the plungers actuated alternately, as in the well known form of Worthington pump, each plunger will, as it is moved down into the lower end of its respective cylinder, force the water from the latter out into the intermediate chamber of the respective valve-chest, and past the Valve closing the port into the uppermost chamber F From the latter, the water then flows into the delivery or eduction-passage 1-1 on the outer side of trunk H. In the meantime, the descent of the upper end of the plunger, in the upper end of its cylinder, draws water, from the common suction-passage H of the trunk, through the lower chamber F in the respective waterchest and the valve-port between such chamher and the intermediate chamber F to and into the cylinder, the valve, for closing said port, opening, to allow the passage of the water, and the other valve, for the port between the intermediate and uppermost chambers, closing, to prevent any back flow of water from the latter chamber into the intermediate one. As the plunger rises again, the water is forced, from the upper end of its cylinder, through theintermediate chamber connected therewith, and the uppermost chamber, into the common'delivery passage H in the trunk H, the valves automatically closing and opening, respectively, the ports leading from the intermediate to the lowest and highest chambers, and water is drawn from the common suction passage B through the lowest and intermediate chambers in the respective lower water-chest,intothepump-cylinder,thevalves for the ports leading from the intermediate to the uppermost and lowest chambers automatically closing and opening respectively. This operation goes on with each side of the pump, so that, with the alternately acting plungers of the two sides, a continuous flow of water through the suction pipe h and passage H to the pump cylinders, and from the latter to and through the delivery passage H of the pump, so that they are in the most convenient position to be got at, when they or their seats are to be reached, for removal or replacing, and that upon the removal of the caps or covers f f alone, the valves and seats are left free to be removed directly upward, through the upwardly turned openings in the water-chest-tops. With the common suction and delivery-passages arranged n the single trunk, and the latter cast in one piece with the pairs of water-chests for the opposite ends of the pump-cylinders, I avoid the projecting joints and connections, which have been necessaryin duplex double acting pumps, as heretofore made, and have been found very objectionable, where the pumps were to be used for sinking, because of their taking up too much space, horizontally, in a shaft.
Another advantage of my constructlon, combining the water-chests and delivery and suction-pipes or passages in one piece, is that, by it, I am enabled to very greatly reduce the numberof joints necessary; for, in-
stead of having sixteen in the connections of the plunger-barrels or cylinders, and tne water-chests, as in pumps of this class heretofore made, I have but four, which are so situated and constructed, that they can easily be kept tight, even during long continued use of the pump. I.
Having thus described my invention, what "I claim is- ICC ively, the common suction and delivery-passages for all the chests, substantially as and for the purpose specified.
2. In a duplex double plunger pump, in combination with the two cylinders or barrels, the water-chests connected with the ends of the cylinders or barrels, and the trunk-pipe, containing the common suction and delivery passages forthe water-chests, cast in one piece with such chests, substantially as and for the purpose shown.
3. In aduplex double plungerpump 1n combination with the two cylinders, or barrels the water-chests connected with the cylinders or barrels having suitable water-chambers and valve-ports, and the trunk-pipe containing the two passages forming, respectively, the common suction and delivery-passages for the several chests, arranged opposite the space between the cylinders or barrels, and having its passages parallel to each other, in a plane at right angles to that in which the cylinders lie, substantially as and for the purpose set forth.
4. In a vertical duplex double plunger pump' in combination with the two cylinders or barrels, the water-chests for the corresponding MA A 4 ends of the cylinders arranged on the outer sides of the latter, and cast in one piece, and the trunk-pipe, connecting the chests at the opposite ends of the cylinders, containingthe two passages forming, respectively, the common suction and delivery-passages, connected with the several chests, substantially as and for the purpose described.
5. In a vertical duplex double plunger pump in combination with the two water-cylinders or barrels, the water-chests for the corresponding ends of the cylinders or barrels situated on the outer or front side of the latter, and each containing three chambers with orts for connecting the latter, the automatic check valves to allow passage of water from one of these chambers into another and from the latter into the third, and the common suction and eduction passages connected respectively, with the first and third chambers of all the water chests, substantially as and for the purpose specified.
6. In a vertical duplex double plunger pump, in combination with the two water-cylinders or barrels, the water-chests for the corresponding ends of the cylinders or barrels situated on the outer or front sides of the latter, and each containing an inlet, an intermediate, and an outlet-chamber, of which the intermediate one is connected with the other two by suitable valve ports, the automatic check valves in the intermediate and outlet-chambers of each water-chest adapted to allow flow of water only into, and not from their respective chambers, removably fastened covers for the tops of the outlet and intermediate chambers, through which the valves therein can be reached ,for removal or replacing, and the trunk-pipe cast in one piece with the water-chests, and containing theoommon suction and delivery passages connected, respectively, with the inlet and outlet chambers of all the water-chests, substantially as and for the purpose shown.
In testimony that I claim the foregoing I have hereunto set my hand this 3d day of April, 1893.
JAMES RENSHAW.
\Vitnesses:
DUNCAN Bonn, GEO. VooRI-IIEs.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US512991A true US512991A (en) | 1894-01-16 |
Family
ID=2581809
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US512991D Expired - Lifetime US512991A (en) | Sinking pump |
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| Country | Link |
|---|---|
| US (1) | US512991A (en) |
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- US US512991D patent/US512991A/en not_active Expired - Lifetime
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