US421159A - Island - Google Patents
Island Download PDFInfo
- Publication number
- US421159A US421159A US421159DA US421159A US 421159 A US421159 A US 421159A US 421159D A US421159D A US 421159DA US 421159 A US421159 A US 421159A
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- US
- United States
- Prior art keywords
- valve
- steam
- chest
- rod
- water
- 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
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- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 4
- 239000007787 solid Substances 0.000 description 2
- 241000220010 Rhode Species 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 230000008878 coupling Effects 0.000 description 1
- 238000010168 coupling process Methods 0.000 description 1
- 238000005859 coupling reaction Methods 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
- 238000004904 shortening Methods 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
- F04B7/00—Piston machines or pumps characterised by having positively-driven valving
- F04B7/0003—Piston machines or pumps characterised by having positively-driven valving the distribution member forming both the inlet and discharge distributor for one single pumping chamber
- F04B7/0011—Piston machines or pumps characterised by having positively-driven valving the distribution member forming both the inlet and discharge distributor for one single pumping chamber and having an oscillating movement
Definitions
- FREDRIC M BROUN, OF ⁇ VARREN, ASSIGNOR TO HIMSELF, AND J OSFPH A.
- My invention relates to that class of steampumps which are provided with horizontal steam and pump cylinders wherein the water valve is actuated dircctlyby the stea1n-valve; and it consists in certain novel features, hereinafter fully set forth and claimed, the object being to produce a simpler, cheaper, and more effective device of this character than is now in ordinary use.
- A represents the steamcylinder, and B the water-cylinder, said cylinders being horizontally in alignment and secured to bed-pieces F.
- a single piston-rod 0 works horizontally in the adjacent heads I) d of said cylinders, and is providedat one end with a steam-piston D and at the opposite end with a water-piston E.
- a cylindrical steam-chest II is disposed on top of the stoa1ncylinder, and is provided in its top with a supply-port f.
- a longitudinally-arranged chamber g (see Fig. 6) is formed in one wall of the chest H, and is connected centrally with an exhaust-port h, said chamber opening at each end into the steam-chamber, as shown in Figs. 5 and 6.
- a cylindrical plunger-valve J (see Fig. 3) is provided with four annular flanges j 7t, which fit steam-tight into said chest, and upon which said valve slides.
- a steanrport p enters the valve J centrally between the inner flangesj 76, and similar ports q 4 enter said valve, respectively, between the flanges jj and 7t 7t.
- valve K Fitted to slide in the main or plunger valve J there is a small solid valve K, provided centrally with a solid annular flange t, adapted to close the port 1) of the plunger. At each end of said valve there is an annular flange o 10, respectively adapted to close the ports q r.
- the body. of the valve K is flattened at each end near the flanges o w andchambered centrally through its ends at 2 (see Fig. 4:) in such manner that a duct or steampassage is formed into the plunger-valve when said valves are in position, as shown in Figs. 2 and 3.
- a water-chest P is disposed on top of the water-cylinder B.
- Two ducts 21 and 22 con nect said chest with each end of the cylinder respectively.
- a water-supply port 23 opens into said chest (see Fig. 2) between the mouths of said ducts.
- An air-chamber R is connected by a coupling 2% with the top of said chest, and a discharge-port 25 opens into said couplin of the ducts 21 and 22 and theport 23.
- the under side of said valve is chambered at 27 sufficiently to connect said port with one of the ducts during each stroke of the valve.
- a suitably-packed rod 29 is fitted to slide horizontall yin the water-chest head 28 and steamchest head 15, said rod passing through the to vertical bar 19, as shown in Fig. 7.
- One end of the bar 29 is screwed into a flange k; of the plunger-valve J, and its opposite end is detachably secured to the flat sliding valve 20.
- Two collars SO and 31 are adj ustably secured i 5 by set-screws on the rod 29one at each side of the bar 19--in position to be engaged thereby at determined points in thestroke of the piston.
- the water in the cylinder B is driven by piston E through the duct 21 into the water-chest and out the discharge 25.
- the piston having advanced a determined distance, the water-piston E engages the sliding rod 40 18, driving it into cylinder A.
- This causes the bar 19, secured to said rod, to force the rod 16, attached to the small steam-valve K, inward, driving said valve until its middle flange tpasses to the other side of the port 19 5 in the plunger-valve J and its flange o away from the ports (1 of said plunger, said ports noW acting as exhausts for the valves.
- the steam enters the port 19 and passes through the opening .2 in the inner end 10 of said small valve, and enters between the chest-head 15 and the outer flange 7t of the plunger-valve.
- the plunger is thus caused to travel until its inner flanges j 7c, respectively, pass to the opposite sides of the mouths of the ducts M1.
- the duct Z is now opened to direct steam for the next forward stroke of the piston, and the duct m is opened to exhaust into port 36 of the exhaust-chamber g.
- the water-piston E in thus advancing creates a vacuum in the cylinder into which the water flows from supply 23 and duct 22.
- the plunger J was moved by said piston, as described, it carried with it the rod 29, and the flat slid-' 'ing valve 26 was thereby moved until its chamber 27 served to connect the supply 23 with the duct 21 to fill the cylinder at the A flat sliding valve 26 is fitted to workon the bottom of said chest over the mouthsnext forward stroke of the piston.
- the bar 19, actuated by a pistonD or E, as described, will engage a' flange 30 or 3.1 011 the rod 29, secured to said plunger, and complete its stroke.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Multiple-Way Valves (AREA)
Description
(No Model.) 2 Sheets-Sheet 1. F. M. BROUN.
STEAM PUMP.
a m 3/ 0 2 w P. Q 1 I L w 1 w H P d e t n h mu 2 LIU .I, a 3 P a 3 E a f N. PETERS PholvLflhcgr-mpher, Washington, D C.
(No Model.) 2 Sheets-Sheet 2.
F. M. BROUN.
STEAM PUMP. No. 421,159. Patented Peb.11,1890.
//'| "IIIIIIIIIL'IIIIA dill/I114. grill/Ill VIIIIIIIIIIIIIIIIIIIIIIIIIIIIIh r |5 UNITED STATES Arnnr FICE.
FREDRIC M. BROUN, OF \VARREN, ASSIGNOR TO HIMSELF, AND J OSFPH A.
' HOAR, OF NEYVPORT, RHODE ISLAND.
STEAIVl PUiVlP.
SPECIFICATION forming part of Letters Patent No. 421,159, dated February 11, 1890.
Application filed August 3, 1889. Serial No. 319,627. (No model.)
To [1 whom it may concern.-
Be it known that I, FREDRIO M. BRO UN, of lVarren, in the county of Bristol, State of Rhode Island, have invented a certain new and useful Improvement in Steam-Pumps, of which the following is a description sufliciently full, clear, and exact to enable any person skilled in the art or science to which said invention appertains to make and use the same, reference being had to the accompanying drawings, forming part of this specification, in which Figure 1 is a side elevation of my improved pump; Fig. 2, a vertical longitudinal section of the same; Fig. 3, an enlarged longitudinal section of the main steanrvalve removed,the inner or small valve being shown in side elevation; Fig. 4, views showing a horizontal longitudinal section and plan view of the small steam-valve; Fig. 5, a Vertical transverse section of the steam end of the pump, taken on line 00 a: in Fig. 1; Fig. 6, a top plan Viewof the steam end, a portion being shown in horizontal section, taken on line y 'y in Fig. 5 and Fig. 7, an enlarged sectional view illustrating certain details of construction.
Like letters and figures of reference indicate corresponding parts in the different figures of the drawings.
My invention relates to that class of steampumps which are provided with horizontal steam and pump cylinders wherein the water valve is actuated dircctlyby the stea1n-valve; and it consists in certain novel features, hereinafter fully set forth and claimed, the object being to produce a simpler, cheaper, and more effective device of this character than is now in ordinary use.
The nature and operation of the improvement will be readily'understood by all conversant with such matters from. the following explanation.
In the drawings, A represents the steamcylinder, and B the water-cylinder, said cylinders being horizontally in alignment and secured to bed-pieces F. A single piston-rod 0 works horizontally in the adjacent heads I) d of said cylinders, and is providedat one end with a steam-piston D and at the opposite end with a water-piston E. A cylindrical steam-chest II is disposed on top of the stoa1ncylinder, and is provided in its top with a supply-port f. A longitudinally-arranged chamber g (see Fig. 6) is formed in one wall of the chest H, and is connected centrally with an exhaust-port h, said chamber opening at each end into the steam-chamber, as shown in Figs. 5 and 6. Steam supply and exhaust ducts Z m, respectively, lead directly from the steam-chest into opposite ends of the cylinder A. A cylindrical plunger-valve J (see Fig. 3) is provided with four annular flanges j 7t, which fit steam-tight into said chest, and upon which said valve slides. A steanrport p enters the valve J centrally between the inner flangesj 76, and similar ports q 4 enter said valve, respectively, between the flanges jj and 7t 7t.
Fitted to slide in the main or plunger valve J there is a small solid valve K, provided centrally with a solid annular flange t, adapted to close the port 1) of the plunger. At each end of said valve there is an annular flange o 10, respectively adapted to close the ports q r. The body. of the valve K is flattened at each end near the flanges o w andchambered centrally through its ends at 2 (see Fig. 4:) in such manner that a duct or steampassage is formed into the plunger-valve when said valves are in position, as shown in Figs. 2 and 3.
Fitted to slide horizontallyin the chest-head 15, adjacent to the pump, there is a suitablypacked rod 16, the inner end of which is secured by a pin 17 in the end of the small valve K. A rod 18, parallel with the rod 16, is fitted to slide in the cylinder-heads Z) (Z and project into the cylinders A B suiiiciently far to be engaged by the pistons D E. A vertical bar 19 is secured to the rod 18 between said cylinder heads. The rod 16 passes through the top of said bar, (see Fig. 7,) in which it is ad j ustably secured by a set-screw 20.
A water-chest P is disposed on top of the water-cylinder B. Two ducts 21 and 22 con nect said chest with each end of the cylinder respectively. A water-supply port 23 opens into said chest (see Fig. 2) between the mouths of said ducts. An air-chamber R is connected by a coupling 2% with the top of said chest, and a discharge-port 25 opens into said couplin of the ducts 21 and 22 and theport 23. The under side of said valve is chambered at 27 sufficiently to connect said port with one of the ducts during each stroke of the valve. A suitably-packed rod 29 is fitted to slide horizontall yin the water-chest head 28 and steamchest head 15, said rod passing through the to vertical bar 19, as shown in Fig. 7. One end of the bar 29 is screwed into a flange k; of the plunger-valve J, and its opposite end is detachably secured to the flat sliding valve 20. Two collars SO and 31 are adj ustably secured i 5 by set-screws on the rod 29one at each side of the bar 19--in position to be engaged thereby at determined points in thestroke of the piston.
The parts are shown in the drawings as in the posit-ion they assume at the completed stroke of the piston. For the return-stroke the steam entering the steam-chest through port f passes through duct on into the cylinder A between its head I) and the piston D. 2 5 This drives the piston back and with it the water-piston E. The steam in the cylinder is driven through duct Zinto the steam-chest between the outer plunger-flanges j j and passes into port 35, Fig. (3, of the exhaust-chamber g, and thence out of the exhaust-port 7i. As the ports (1 in the plunger are closed by flange Q7 of the small valve K, (see Fig. 3,) steam is thus prevented from entering and is forced into the proper exhaust. As the pistons thus advance, the water in the cylinder B is driven by piston E through the duct 21 into the water-chest and out the discharge 25. The piston having advanced a determined distance, the water-piston E engages the sliding rod 40 18, driving it into cylinder A. This causes the bar 19, secured to said rod, to force the rod 16, attached to the small steam-valve K, inward, driving said valve until its middle flange tpasses to the other side of the port 19 5 in the plunger-valve J and its flange o away from the ports (1 of said plunger, said ports noW acting as exhausts for the valves. The steam enters the port 19 and passes through the opening .2 in the inner end 10 of said small valve, and enters between the chest-head 15 and the outer flange 7t of the plunger-valve. The plunger is thus caused to travel until its inner flanges j 7c, respectively, pass to the opposite sides of the mouths of the ducts M1. The duct Z is now opened to direct steam for the next forward stroke of the piston, and the duct m is opened to exhaust into port 36 of the exhaust-chamber g. The water-piston E in thus advancing creates a vacuum in the cylinder into which the water flows from supply 23 and duct 22. lVhen the plunger J was moved by said piston, as described, it carried with it the rod 29, and the flat slid-' 'ing valve 26 was thereby moved until its chamber 27 served to connect the supply 23 with the duct 21 to fill the cylinder at the A flat sliding valve 26 is fitted to workon the bottom of said chest over the mouthsnext forward stroke of the piston. Should the direct action of the steam on theplungervalve fail to carry it su fficiently far, the bar 19, actuated by a pistonD or E, as described, will engage a' flange 30 or 3.1 011 the rod 29, secured to said plunger, and complete its stroke.
It will be seen that in my improvement the steam acts directly on the piston and a full exhaust is supplied, thereby preventing the piston-stroke from gradually shortening, as frequently happens in pumps of this description. Moreover, the action is direct, the valves advancing in the same direction and conjointly with the pistons and completing their strokes simultaneously therewith.
Having thus explained my invention,what I claim is 1. The combination of a steam-cylinder, a water-cylinder in alignment therewith, a piston -rod provided with two pistons at its opposite ends, one in each of said cylinders, an independent slide-rod extending through the adjacent heads of said cylinders, a steamchest on said steam-cylinder, an exhaustehamber having two ports opening into said chest, ducts connecting said chamber with opposite ends of said steam-chest, a tubular plunger-valve provided with two sets of flanges at its opposite ends and with a steamport between each set and between the flange of each set, a smaller auxiliary valve within said tubular plunger-valve, provided with three flanges adapted to close said ports, the body of said auxiliary valve being flattened and chambered at its opposite ends, a waterchamber on said water-cylinder, a watervalve therein for regulating the flow of Water into the water-cylinder, a rod connecting the water-valve with said plunger-valve, a vertical bar on said independent slide-rod, a valve connected to said auxiliary valve and adjustable in said bar, and collars on the rod connecting said water-valve and plungervalve.
2. The combination of a steam-cylinder provided with a steam-chest and connectingducts, a water-cylinder provided with a water-chest and connecting-ducts, a piston-rod provided with two pistons at its opposite ends, one in each of said cylinders, an independent slide-rod extending through the adjacent heads of said cylinders, a water-valve in said water-chest, a tubular plunger-valve in said steam-chest, a rod connecting said valves and provided with collars, an auxiliary valve within said plunger-valve, provided with a valve-stem extending through the chest-head, and an upright bar on said independent slide-rod adapted to engage said collars, and a clamping device for adjusting said stem on said bar.
FREDRIO M. BBOUN.
Witnesses:
O. M. SHAW, E. F. DIOCARTY.
IIQ
Gountersigned It is hereby certified that the name of the patenteev in Letters Patent No. 4215159, granted February 11, 18 90, for an improvement in Steam-Pumps, was erroneously Written and printed Fredric M. Broun, whereas said name should have been Written and printed Fredric M. Brown and that the said Letters Patent should be read with this correction therein that the same may conform vto the record of the case in the Patent Ofiice.
Signed, ccuntersigned, and sealed this 4th day of March, A. 1890.
[SEAL] cYRUs BUSSEY,
Assistant Secretary of the Interior.
0. E. MITCHELL,
Commissioner of Patents.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US421159A true US421159A (en) | 1890-02-11 |
Family
ID=2490078
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US421159D Expired - Lifetime US421159A (en) | Island |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US421159A (en) |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3082917A (en) * | 1959-10-09 | 1963-03-26 | Hudson Mfg Co H D | Hydraulic spray pump |
| US3162133A (en) * | 1962-02-26 | 1964-12-22 | James E Smith | Hydraulic power converter |
| US4637783A (en) * | 1980-10-20 | 1987-01-20 | Sri International | Fluid motor-pumping apparatus and method for energy recovery |
| US4830583A (en) * | 1988-03-02 | 1989-05-16 | Sri International | Fluid motor-pumping apparatus and system |
-
0
- US US421159D patent/US421159A/en not_active Expired - Lifetime
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3082917A (en) * | 1959-10-09 | 1963-03-26 | Hudson Mfg Co H D | Hydraulic spray pump |
| US3162133A (en) * | 1962-02-26 | 1964-12-22 | James E Smith | Hydraulic power converter |
| US4637783A (en) * | 1980-10-20 | 1987-01-20 | Sri International | Fluid motor-pumping apparatus and method for energy recovery |
| US4830583A (en) * | 1988-03-02 | 1989-05-16 | Sri International | Fluid motor-pumping apparatus and system |
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