US948302A - Pump. - Google Patents
Pump. Download PDFInfo
- Publication number
- US948302A US948302A US1908414833A US948302A US 948302 A US948302 A US 948302A US 1908414833 A US1908414833 A US 1908414833A US 948302 A US948302 A US 948302A
- Authority
- US
- United States
- Prior art keywords
- valve
- disk
- pump
- opening
- stem
- 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
Links
- 238000010276 construction Methods 0.000 description 3
- 239000007921 spray Substances 0.000 description 2
- 240000001973 Ficus microcarpa Species 0.000 description 1
- 239000000945 filler Substances 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
- F16K11/00—Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves
- F16K11/02—Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit
- F16K11/06—Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit comprising only sliding valves, i.e. sliding closure elements
- F16K11/078—Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit comprising only sliding valves, i.e. sliding closure elements with pivoted and linearly movable closure members
- F16K11/0782—Single-lever operated mixing valves with closure members having flat sealing faces
- F16K11/0787—Single-lever operated mixing valves with closure members having flat sealing faces with both the supply and the discharge passages being on the same side of the closure members
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T137/00—Fluid handling
- Y10T137/8593—Systems
- Y10T137/85978—With pump
- Y10T137/86171—With pump bypass
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T137/00—Fluid handling
- Y10T137/8593—Systems
- Y10T137/86493—Multi-way valve unit
- Y10T137/86815—Multiple inlet with single outlet
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T137/00—Fluid handling
- Y10T137/8593—Systems
- Y10T137/87571—Multiple inlet with single outlet
- Y10T137/87676—With flow control
Definitions
- My object is to devise a simple and effective combined safety valve, by-pass from the pressure to the suction sides of the pump, and a tank iiller, and my invention consists essentially of the constructions hereinafter more specifically described, and then denitely claimed.
- Figure l is a vertical section through the valve chest of a spray pump, the by-pass and safety valve.
- Fi 2 is a vertical section on the line :zz-y in Fig. l.
- Fig 3 is a vertical section showing the by-pass combined with a filler.
- Fig. 4 is a sectional plan view of the same.
- a casing U is secured t-o the valve chest C preferably by being screwed into the collar formed thereon. The position of this casing is such that it communicates with the suction opening b of the valve chest.
- the casing is also provided with an opening u adapte to register with the opening 'u communicatingl with the pressure chamber F of the valve chest. 0n the casing U is screwed the bonnet V, through which s screwed the valve stem A. On this valve stem is formed or secured a stop disk a.
- a sleeve b carrying the valve disk B.
- a slotthrough which passes a pin o into the stem A.
- valve disk is placed a coil spring d tending normally to hold the valve disk B against the opening u.
- the stop disk a is provided with a seat e against which it may be screwed by revolving the stem A.
- the pin c is intermediate the ends of the slot in the sleeve b', so that the valve disk B is held against the opening u by the pressure of the spring.
- valve disk rotates with the valve stem. This enables it to grind any small particles off its seat, which might otherwise prevent its fitting tightly.
- the suction pipe C or the suction pipe D may be placed in communication with the opening f', and thus with the suction side of the pump.
- the suction is through the ⁇ pipe C, thence through the opening f into the valve casing.
- the valve E be operatedto close the opening g', and by opening the by-pass and safety valve the suct1on is through the pipe D, and through the opening f into the pump, thence from the pressure side of the pump through the openings lv and u into the pipe C.
- the plpe D be connected with a source of supply, the tank may be readily lled through the suction pipe C. As soon as the tank is lled the valves are again closed, as shown in Figs. 3 and 4, and the machine is ready for operation in the ordinary manner.
- a spring actuated safety valve normally closing the by pass communication and means for closing said valve or for positively opening it to permit free communication between the pressure and suction sides of the pump, means for varying the tension of said springy actuated valve, and means for limiting the increase of tension to prevent thev valve being forcibly held closed, substantially as described.
- a by-pass connection between the pressure and suction sides of a pump comprising a casing having an opening therein for communication with the pressure side of the pump and an openin for communication with the suction side o the pump; a suction pipe communicatin with the casing; a valve isk adapted to -c ose the first mentioned o ening; a stem on which the said disk is s 'idable; a stop disk on the stem; a seat in the casin for the stop disk; a spring adapted to hold't e valve disk against the aforesaid opening when the sto disk is on its seat; and means for operating the stem to press the stop disk a ainst its seat or to retract both the stop disk and valve disk, substantially as described.
- a by-pass connection between the pressure and suction sides of a pump comprlsing a casing having an opening therein for communication with the pressure side ofthe pump, and an openin s for communication with the suction side o the pump; a suction pipe communicating'with the casing; a valve aliases disk adapted to close the first mentioned opening; a stem on which the said disk is slidable; a stop disk on the stem; a seat in the casing for the stop disk; a spring adapted to hold the valve disk against the aforesaid opening when the stop disk is on its seat; means for opera-ting the stem to press the stop disk lagainst its seat or to retract both disk and valve disk, the parts being so proportioned that asfthe disks are forced home the valve disk contacts before the other, substantially as described.
- a by-pass connection between the pressure and suction sides of a pump comprising a casing having an opening therein for communication with the pressure side of the pump, rand an opening for communication with the suction side of the pump; a suction pipe communicatin with the casing; a valve disk adapted to c ose the first mentioned opening; a sleeve to which the disk is connected; a valve stem on the end of which the sleeve is slidable; a stop disk on the stem; a seat in the casing for the stop disk; a spring on the stem tending to force forward the valve disk; and means for operating the valve stem, substantially as described.
- a by-pass connection between the pressure and suction sides of a pump comprising a casing having an opening therein for communication with .the pressure side of the pump, and an opening for communication with the suction side of the pump; a suction pipe communicatin with the casing; a valve disk adapted to c ose the first mentioned opening; a sleeve to which the disk is connected; a valve stem on the end of which the sleeve is slidable; a stop disk on the stem; a seat in the casing for the stop disk; a spring on the stem tending to force forward the valve disk;a stop on the stem limiting the forward movement of the valve disk; and means for operating the valve stem, substantially as described.
- a by-pass connection between the pressure and suction sides of a pump comprising a' casing havinf an opening therein for communication witthe pressure side of the pump, and an'openin for communication with the suction side of the pump; a suction l pipe communicating with the casing; a
- valve disk adapted to close the first mentioned opening; a sleeve to which the disk is connected; a valve stem on the end ⁇ of which the sleeve is slidable; a stop disk on the stem; -a seat in the casing for the stop IIO disk; a spring on the stem tending to force forward the valve disk; a stop on the stem limiting the forward movement of the valve disk' and adapted to prevent its rotation; and means for operating the valve stem, substantially as described.
- a by-pass connection between the presl sure and suction sides of a pump comprising a casing having an opening therein for communication with the pressure side of the pump, and an opening for communication with the suction side of the pump; a suction pipe communicating with the casing; a valve disk adapted to close the first mentioned opening; a sleeve to which the disk is connected; a valve stem on the end of which the sleeve is slidable; a stop disk on the stem; a seat in the casing for the stop disk; a spring on the stem tending to force forward the valve disk; a stop on the stem limiting the forward movement of the valve disk; means for operating the valve stem, the parts being so proportioned that as the disks are forced home the valve disk contacts before the other, substantially as described.
- a by-pass connection between the pressure and suction sides of a pump comprising a casing having an opening therein for communication with the pressure side of the pump, and an opening for communication with the suction side of the pump; a suction pipe communicating with the casing; a valve disk adapted to close the first mentioned openin a stem on which the said disk is slida 1e but non-rotatable; a stop disk on the stem; a seat in the casin for the stop disk; a spring adapted to hol the valve dlsk against the aforesaid opening when the stop disk is on its seat; and means for operating the stem to press the stop disk against its seat or to retract both the stop disk and valve disk, substantially as described.
- a by-pass connection between the pressure and suction sidesof a pump comprisingv a casing having an opening therein for communication with the pressure side of a pump, and an opening for connection with the suction side of the pump; two suction pipes communicating with the casin a valve whereby either may be cut off rom communication with the suction opening; a communication between one of the suction pipes and the pressure openin and a valve controiiing said opening, su stantially as described.
Landscapes
- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Safety Valves (AREA)
Description
W. H. HEARD.
PUMP.
, APPLICATION FILED PEB.7, 1908. y 948,302. Patented Feb. 1, 1910.
'JF (I /fy l',
A TTOR/v 5 UNITED STATES PATENT oEErcE.
WILLIAM H. HEARD, OF LONDON, ONTARIO, CANADA.
PUMP.
Original application led February 7, 1906, Serial No. 299,943. Divided and this application filed February.
Patented Feb. 1, 1910.
7, 1908. Serial No. 414,833.
To all whom it may concern.'
Be it known that I, WILLIAM I-I. HEARD, of the city of London, in the county of Middlesex and IProvince of Ontario, Canada, have invented certain new and useful Improvements in Pumps, of which the following is a specification.
My object is to devise a simple and effective combined safety valve, by-pass from the pressure to the suction sides of the pump, and a tank iiller, and my invention consists essentially of the constructions hereinafter more specifically described, and then denitely claimed.
Figure l is a vertical section through the valve chest of a spray pump, the by-pass and safety valve. Fi 2 is a vertical section on the line :zz-y in Fig. l. Fig 3 is a vertical section showing the by-pass combined with a filler. Fig. 4 is a sectional plan view of the same.
In the drawings like letters of reference indicate corresponding parts in the diiferent figures.
I show my invention` in connection with the valve chest of a spray pump, but as this forms no part of the present invention it is unnecessary to describe it in detail. Sufiice it to say that D is the suction chamber, F the pressure chamber, H H discharge pipes, a a collar for the connection of an air chamber, and K K the Valve casings, provided with ball valves, as shown, controlling the openings between the suction chamber D and the intermediate chambers E, and between the intermediate chambersand the pressure chamber F. rIhe intermediate chambers E, it will be seen on reference to Fig. 2, communicate withl the plungertubes I. f
In power driven machines there is a special danger of the pressure in the pressure side of the pump becoming too great and it is necessary to provide means for its automatic relief. For this purpose I provide the combined safety valve and by-pass, shown more particularly in Fig. 1. A casing U is secured t-o the valve chest C preferably by being screwed into the collar formed thereon. The position of this casing is such that it communicates with the suction opening b of the valve chest. The casing is also provided with an opening u adapte to register with the opening 'u communicatingl with the pressure chamber F of the valve chest. 0n the casing U is screwed the bonnet V, through which s screwed the valve stem A. On this valve stem is formed or secured a stop disk a. On the end of the stem is slipped a sleeve b carrying the valve disk B. In the side of the sleeve is formed a slotthrough which passes a pin o into the stem A. valve disk is placed a coil spring d tending normally to hold the valve disk B against the opening u. The stop disk a is provided with a seat e against which it may be screwed by revolving the stem A. When the stop disk is in contact with its seat,it will be seen that the pin c is intermediate the ends of the slot in the sleeve b', so that the valve disk B is held against the opening u by the pressure of the spring. Thus, if at any time lthe pressure in the pump becomes excessive, it is relieved, by the lifting of the valve disk B, into the casing, and thence into the suction pipe C connected with the casing.
When starting the pump it is sometimes desired to blow back from the pressure side of the pump through the suction pipe, to clear the strainer, or for other purposes, and this may be done at any time by turning the stem and withdrawing the stop disk a and the valve disk B from their seats. Owing to the Slot and pin connection between the valve disk and the stem, the stop disk comes away iirst from its seat, and subsequently the valve disk, the reverse being the case when the stem is screwed in. The stop disk contacting with its nseat effectually prevents the coil spring D being compressed to give too great a tension on the valve disk.
It will be noted that owing to the slot and pin connection the valve disk rotates with the valve stem. This enables it to grind any small particles off its seat, which might otherwise prevent its fitting tightly.
I prefer to employ with the by-pass and safety valve an arrangement whereby the pump may be caused, when desired, to refill the tank' with which it is employed. I show the arrangement for this purpose in Figs. 3 and 4f.v The by-pass and safety valve remain as before, but in addition to the suction pipe C I provide a second Suction pipe D', and provide a suitable hand valve operated through the side of the casing and adapted to close the second suction pipe, as shown in Fig. 4. Between the suction pipe C and the suction opening f I form an opening g', adapted to be closed by the valve Between the stop disk and the' E. Thus by operating the valve E either the suction pipe C or the suction pipe D may be placed in communication with the opening f', and thus with the suction side of the pump. "When the valve E is in the position shown in Fig. 4 the suction is through the `pipe C, thence through the opening f into the valve casing. If, however, the valve E be operatedto close the opening g', and by opening the by-pass and safety valve the suct1on is through the pipe D, and through the opening f into the pump, thence from the pressure side of the pump through the openings lv and u into the pipe C. If the plpe D be connected with a source of supply, the tank may be readily lled through the suction pipe C. As soon as the tank is lled the valves are again closed, as shown in Figs. 3 and 4, and the machine is ready for operation in the ordinary manner.
Thus from the construction described it will be seen that I provide a safety valve, by-pass and Eller by means of a simple construction employing only two valves, conveniently arranged, adjacent to one another.
What I claim as my invention is:
l. In a valve chest provided with a pressure side and a suction side and having a valve controlled communication between them, and having also a by-pass communication between the two sides, the combination of a spring actuated safety valve normally closing the by pass communication and means for closing said valve or for positively opening it to permit free communication between the pressure and suction sides of the pump, means for varying the tension of said springy actuated valve, and means for limiting the increase of tension to prevent thev valve being forcibly held closed, substantially as described.
2. A by-pass connection between the pressure and suction sides of a pump, comprising a casing having an opening therein for communication with the pressure side of the pump and an openin for communication with the suction side o the pump; a suction pipe communicatin with the casing; a valve isk adapted to -c ose the first mentioned o ening; a stem on which the said disk is s 'idable; a stop disk on the stem; a seat in the casin for the stop disk; a spring adapted to hold't e valve disk against the aforesaid opening when the sto disk is on its seat; and means for operating the stem to press the stop disk a ainst its seat or to retract both the stop disk and valve disk, substantially as described.
3. A by-pass connection between the pressure and suction sides of a pump, comprlsing a casing having an opening therein for communication with the pressure side ofthe pump, and an openin s for communication with the suction side o the pump; a suction pipe communicating'with the casing; a valve aliases disk adapted to close the first mentioned opening; a stem on which the said disk is slidable; a stop disk on the stem; a seat in the casing for the stop disk; a spring adapted to hold the valve disk against the aforesaid opening when the stop disk is on its seat; means for opera-ting the stem to press the stop disk lagainst its seat or to retract both disk and valve disk, the parts being so proportioned that asfthe disks are forced home the valve disk contacts before the other, substantially as described.
4. A by-pass connection between the pressure and suction sides of a pump, comprising a casing having an opening therein for communication with the pressure side of the pump, rand an opening for communication with the suction side of the pump; a suction pipe communicatin with the casing; a valve disk adapted to c ose the first mentioned opening; a sleeve to which the disk is connected; a valve stem on the end of which the sleeve is slidable; a stop disk on the stem; a seat in the casing for the stop disk; a spring on the stem tending to force forward the valve disk; and means for operating the valve stem, substantially as described.
5. A by-pass connection between the pressure and suction sides of a pump, comprising a casing having an opening therein for communication with .the pressure side of the pump, and an opening for communication with the suction side of the pump; a suction pipe communicatin with the casing; a valve disk adapted to c ose the first mentioned opening; a sleeve to which the disk is connected; a valve stem on the end of which the sleeve is slidable; a stop disk on the stem; a seat in the casing for the stop disk; a spring on the stem tending to force forward the valve disk;a stop on the stem limiting the forward movement of the valve disk; and means for operating the valve stem, substantially as described.
6. A by-pass connection between the pressure and suction sides of a pump, comprising a' casing havinf an opening therein for communication witthe pressure side of the pump, and an'openin for communication with the suction side of the pump; a suction l pipe communicating with the casing; a
valve disk adapted to close the first mentioned opening; a sleeve to which the disk is connected; a valve stem on the end` of which the sleeve is slidable; a stop disk on the stem; -a seat in the casing for the stop IIO disk; a spring on the stem tending to force forward the valve disk; a stop on the stem limiting the forward movement of the valve disk' and adapted to prevent its rotation; and means for operating the valve stem, substantially as described.
7. A by-pass connection between the presl sure and suction sides of a pump, comprising a casing having an opening therein for communication with the pressure side of the pump, and an opening for communication with the suction side of the pump; a suction pipe communicating with the casing; a valve disk adapted to close the first mentioned opening; a sleeve to which the disk is connected; a valve stem on the end of which the sleeve is slidable; a stop disk on the stem; a seat in the casing for the stop disk; a spring on the stem tending to force forward the valve disk; a stop on the stem limiting the forward movement of the valve disk; means for operating the valve stem, the parts being so proportioned that as the disks are forced home the valve disk contacts before the other, substantially as described.
8. A by-pass connection between the pressure and suction sides of a pump, comprising a casing having an opening therein for communication with the pressure side of the pump, and an opening for communication with the suction side of the pump; a suction pipe communicating with the casing; a valve disk adapted to close the first mentioned openin a stem on which the said disk is slida 1e but non-rotatable; a stop disk on the stem; a seat in the casin for the stop disk; a spring adapted to hol the valve dlsk against the aforesaid opening when the stop disk is on its seat; and means for operating the stem to press the stop disk against its seat or to retract both the stop disk and valve disk, substantially as described.
9. A by-pass connection between the pressure and suction sidesof a pump, comprisingv a casing having an opening therein for communication with the pressure side of a pump, and an opening for connection with the suction side of the pump; two suction pipes communicating with the casin a valve whereby either may be cut off rom communication with the suction opening; a communication between one of the suction pipes and the pressure openin and a valve controiiing said opening, su stantially as described.
l0. Aby-pass connection between the pressure and suction sides of a pump, comprising a casing having an opening therein for communication with the pressure side of a pump, and an opening for connection with the suction side of the pump; two suction pipes communicating with the casing; a valve whereby either may be cut of romA communication with the suction opening; a communication between one of the suction pipes and the pressure opening; a spring actuated safety valve normallyciosing the communication; and means for closing said valve or for opening it to permit lfree communication between the pressure opening and the suction pipe, substantlally as described. v
London, Ont., 30th January, 1908.
WILLIAM I-I. HEARD. Signed in the presence of- MABEL I. HENDERSON, WINAFRED D. REILLY.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US1908414833 US948302A (en) | 1906-02-07 | 1908-02-07 | Pump. |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US29994306A US898471A (en) | 1906-02-07 | 1906-02-07 | Pump. |
| US1908414833 US948302A (en) | 1906-02-07 | 1908-02-07 | Pump. |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US948302A true US948302A (en) | 1910-02-01 |
Family
ID=3016718
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US1908414833 Expired - Lifetime US948302A (en) | 1906-02-07 | 1908-02-07 | Pump. |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US948302A (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2612837A (en) * | 1946-05-21 | 1952-10-07 | American Eng Co Ltd | Pump |
-
1908
- 1908-02-07 US US1908414833 patent/US948302A/en not_active Expired - Lifetime
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2612837A (en) * | 1946-05-21 | 1952-10-07 | American Eng Co Ltd | Pump |
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