EP0012467B1 - Pump - Google Patents
Pump Download PDFInfo
- Publication number
- EP0012467B1 EP0012467B1 EP19790200708 EP79200708A EP0012467B1 EP 0012467 B1 EP0012467 B1 EP 0012467B1 EP 19790200708 EP19790200708 EP 19790200708 EP 79200708 A EP79200708 A EP 79200708A EP 0012467 B1 EP0012467 B1 EP 0012467B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- piston
- cylinder
- pump
- inlet
- outlet
- 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
Links
- 239000007788 liquid Substances 0.000 claims description 21
- 239000012530 fluid Substances 0.000 claims description 10
- 239000000725 suspension Substances 0.000 claims description 7
- 239000002245 particle Substances 0.000 claims description 2
- 239000007787 solid Substances 0.000 claims description 2
- 239000000203 mixture Substances 0.000 description 5
- 239000012895 dilution Substances 0.000 description 2
- 238000010790 dilution Methods 0.000 description 2
- 239000006185 dispersion Substances 0.000 description 1
- 230000001360 synchronised effect Effects 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
- F04B3/00—Machines or pumps with pistons coacting within one cylinder, e.g. multi-stage
-
- 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
- F04B13/00—Pumps specially modified to deliver fixed or variable measured quantities
- F04B13/02—Pumps specially modified to deliver fixed or variable measured quantities of two or more fluids at the same time
Definitions
- the present invention relates to a pump, more particularly to a pump intended for metering and mixing a relatively thick fluid, or a suspension of solid particles in a liquid with, for example, another liquid.
- a mixing pump is known from DE-B-1173805 in which a differential piston has three different diameters in three different chambers.
- the displaced volume in the first chamber, into which liquid is drawn, is larger than the displaced volume in the second chamber in which the liquid passes from the first chamber.
- the liquid is therefore forced into a third chamber into which a dispersion or suspension is drawn, and the liquid mixes with the latter.
- the pump according to the present invention comprises a cylinder having a first inlet; a second inlet and an outlet, means for closing communication between the cylinder and the first inlet and between the cylinder and the outlet, and, inside the cylinder, two relatively movable pistons each having at least one port provided with one or more valves.
- communication between the cylinder and either the first inlet or the outlet is closed by a distributor valve, and at least one of the pistons is provided with a non-return valve.
- one piston has a port which is closable by a spring-loaded valve.
- the pump comprises a cylinder 1 in which two pistons 2 and 3 are able to reciprocate.
- Piston 2 is mounted on a piston-rod 4
- piston 3 is mounted on a tube 5 coaxial with the piston-rod 4.
- Piston-rod 4 and tube 5 are actuated independently by means not represented (for example by air cylinders). In another embodiment, they are actuated and synchronised by cams. Adjustable stops limit the stroke of the pistons.
- Piston 2 is provided with a central port which is normally held closed by a valve 6 by means of a spring coaxial with piston-rod 4.
- piston 2 is mounted on piston-rod 4 and the valve 6 is actuated by independent means.
- Piston 3 comprises several ports having non-return valves 7 which enable a liquid to flow only from right to left in the drawing.
- Cylinder 1 comprises two inlets preferably under adequate pressure, a first one 8 for a thick fluid or a suspension and a second one 9 for a liquid.
- the cylinder also comprises an outlet 10 through which the resulting mixture of diluate flows.
- a rotatable distributor valve 11 at the end of the cylinder 1 enables to select alternatively the communication between the cylinder and the first inlet 8 ( Figure 1) or the cylinder and the outlet 10 ( Figure 2).
- This distributor valve is actuated according to the movement of the pistons 2 and 3 by means not represented, as will be explained hereunder.
- the first inlet 8 is provided with a non-return valve which enables fluid to flow into the cylinder, but prevents it from flowing out through the inlet.
- Outlet 10 is provided with a non-return valve which enables the resulting mixture or diluate to flow out of the cylinder but stops suction in.
- Distributor valve 11 is then rotated to provide a communication between cylinder 1 and outlet 10 ( Figure 2) and the pistons move the other way) i.e. from right to left in the drawing).
- the non-return valves 7 close and piston-rod 4 opens valve 6.
- the portion of liquid which was contained between the two pistons passes through piston 2 and mixes with the fluid.
- the passage of the mixture through the outlet 10 is substantially completed and the cycle starts again.
- 12a and 12b may be regarded as two parts of one cylinder 12 at right angles to each other.
- the pump comprises two inlets preferably under adequate pressure, the first, 13, for a thick fluid or a suspension and the second, 14, for a liquid. It also comprises an outlet 16 through which the resulting mixture or diluate flows, a rotatable distributor valve 17 closing a port at the end of the part 12b (left on the drawing), thus providing communication between the cylinder and either the inlet 13 (as shown in Figure 3) or the outlet 16 (as shown in Figure 4).
- This distributor valve is actuated in synchronism with the movements of piston 18 reciprocating in the part 12a of the cylinder and of piston 19 reciprocating in the part 12b of the cylinder.
- the piston 18 is mounted on a piston rod 20 and is actuated by means (not represented) such as for example an air cylinder connected to the piston rod 20.
- the piston 19 is mounted on a piston rod 21 and is normally held at the right end of the part 12b of the cylinder by means of a coil spring coaxial with the piston rod 21. Stops limit the travel of the pistons.
- the piston 18 has several ports provided with non-return valves which only enable a liquid to flow through the piston when the latter is moving upwards.
- the piston 19 has a central port provided with a valve 22 which is normally held closed by a coil spring. This valve 22 is connected to a plate 23 located in a chamber inside the piston; the chamber communicates with the part 12b of the cylinder by ports in the right hand wall of the piston.
- the distributor valve 17 is then turned to the position shown in Figure 4, providing a communication between cylinder 12 and outlet 16.
- the piston 18 moves downwards, its non-return valves close, liquid is drawn into the cylinder through inlet 14 and piston 19 is moved to the left by the liquid between pistons 18 and 19 until it reaches its left stop.
- Pressure of the liquid on the plate 23 then opens the valve 22 ( Figure 4) and the liquid passes through the central port of the piston 19 towards the outlet 16.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Accessories For Mixers (AREA)
- Reciprocating Pumps (AREA)
- Details Of Reciprocating Pumps (AREA)
Description
- The present invention relates to a pump, more particularly to a pump intended for metering and mixing a relatively thick fluid, or a suspension of solid particles in a liquid with, for example, another liquid.
- A mixing pump is known from DE-B-1173805 in which a differential piston has three different diameters in three different chambers. The displaced volume in the first chamber, into which liquid is drawn, is larger than the displaced volume in the second chamber in which the liquid passes from the first chamber. The liquid is therefore forced into a third chamber into which a dispersion or suspension is drawn, and the liquid mixes with the latter.
- The pump according to the present invention comprises a cylinder having a first inlet; a second inlet and an outlet, means for closing communication between the cylinder and the first inlet and between the cylinder and the outlet, and, inside the cylinder, two relatively movable pistons each having at least one port provided with one or more valves.
- In one embodiment of the present invention, communication between the cylinder and either the first inlet or the outlet is closed by a distributor valve, and at least one of the pistons is provided with a non-return valve.
- Preferably, one piston has a port which is closable by a spring-loaded valve.
- Preferred embodiments of the present invention are illustrated with reference to the accompanying drawings, in which:
- Figure 1 is a diagrammatic section of an embodiment showing the components in the starting position of the pump cycle;
- Figure 2 is the same section as in Figure 1 but showing operation of the components during the cycle;
- Figure 3 is a diagrammatic section of a second embodiment showing the components at the beginning of a metering stroke;
- Figure 4 is the same section as in Figure 3 but with the components nearing the end of the mixing or dilution stroke.
- In the drawings, the pump comprises a cylinder 1 in which two
pistons 2 and 3 are able to reciprocate. Piston 2 is mounted on a piston-rod 4, and piston 3 is mounted on a tube 5 coaxial with the piston-rod 4. Piston-rod 4 and tube 5 are actuated independently by means not represented (for example by air cylinders). In another embodiment, they are actuated and synchronised by cams. Adjustable stops limit the stroke of the pistons. - Piston 2 is provided with a central port which is normally held closed by a
valve 6 by means of a spring coaxial with piston-rod 4. In another embodiment,piston 2 is mounted on piston-rod 4 and thevalve 6 is actuated by independent means. - Piston 3 comprises several ports having
non-return valves 7 which enable a liquid to flow only from right to left in the drawing. - Cylinder 1 comprises two inlets preferably under adequate pressure, a first one 8 for a thick fluid or a suspension and a second one 9 for a liquid. The cylinder also comprises an
outlet 10 through which the resulting mixture of diluate flows. - In a preferred embodiment, a
rotatable distributor valve 11 at the end of the cylinder 1 (left in the drawing) enables to select alternatively the communication between the cylinder and the first inlet 8 (Figure 1) or the cylinder and the outlet 10 (Figure 2). This distributor valve is actuated according to the movement of thepistons 2 and 3 by means not represented, as will be explained hereunder. - In another embodiment - not shown -, the first inlet 8 is provided with a non-return valve which enables fluid to flow into the cylinder, but prevents it from flowing out through the inlet.
Outlet 10 is provided with a non-return valve which enables the resulting mixture or diluate to flow out of the cylinder but stops suction in. The operation of the pump is as follows: - Starting from the pisition shown in Figure 1, the two
pistons 2 and 3 move from the left to the right, piston 3 having a greater speed and a longer stroke thanpiston 2. During this movement,piston 2 draws in the fluid through the first inlet 8 (valve 6 being closed) whereas the liquid drawn in through thesecond inlet 9 by the other piston 3 passes from the right to the left of piston 3 through thenon-return valves 7. At the end of the stroke of eachpiston 2, a portion of the liquid brought in through thesecond inlet 9 is contained between thepistons 2 and 3 and a portion of fluid brought in through the first inlet 8 is contained betweendistributor valve 11 andpiston 2. -
Distributor valve 11 is then rotated to provide a communication between cylinder 1 and outlet 10 (Figure 2) and the pistons move the other way) i.e. from right to left in the drawing). Thenon-return valves 7 close and piston-rod 4 opensvalve 6. In this way, the portion of liquid which was contained between the two pistons passes throughpiston 2 and mixes with the fluid. At the end of the stroke of eachpiston 2, 3, the passage of the mixture through theoutlet 10 is substantially completed and the cycle starts again. - In the embodiment shown in Figures 3 and 4, 12a and 12b may be regarded as two parts of one
cylinder 12 at right angles to each other. As in the embodiment of Figures 1 and 2, the pump comprises two inlets preferably under adequate pressure, the first, 13, for a thick fluid or a suspension and the second, 14, for a liquid. It also comprises anoutlet 16 through which the resulting mixture or diluate flows, arotatable distributor valve 17 closing a port at the end of the part 12b (left on the drawing), thus providing communication between the cylinder and either the inlet 13 (as shown in Figure 3) or the outlet 16 (as shown in Figure 4). This distributor valve is actuated in synchronism with the movements ofpiston 18 reciprocating in the part 12a of the cylinder and of piston 19 reciprocating in the part 12b of the cylinder. - The
piston 18 is mounted on apiston rod 20 and is actuated by means (not represented) such as for example an air cylinder connected to thepiston rod 20. The piston 19 is mounted on apiston rod 21 and is normally held at the right end of the part 12b of the cylinder by means of a coil spring coaxial with thepiston rod 21. Stops limit the travel of the pistons. - The
piston 18 has several ports provided with non-return valves which only enable a liquid to flow through the piston when the latter is moving upwards. The piston 19 has a central port provided with a valve 22 which is normally held closed by a coil spring. This valve 22 is connected to a plate 23 located in a chamber inside the piston; the chamber communicates with the part 12b of the cylinder by ports in the right hand wall of the piston. - Operation of this pump is as follows:
- Beginning with the position shown in Figure 3, the
piston 18 moves upwards, its non-return valves open and the liquid which entered through theinlet 14 passes from the upper to the lower face of the piston. Due to the pressure release between thepistons 18 and 19 while the former goes up, the valve 22 closes; assisted by the coil spring, the piston 19 moves from left to right, drawing the thick fluid or suspension through theinlet 13 into the cylinder. When thepiston 18 has reached its upper position and the piston 19 its right hand stop, part 12a of the cylinder is full of liquid and part 12b of the cylinder is full of the thick fluid or suspension. This is the end of the metering stroke. - The
distributor valve 17 is then turned to the position shown in Figure 4, providing a communication betweencylinder 12 andoutlet 16. Thepiston 18 moves downwards, its non-return valves close, liquid is drawn into the cylinder throughinlet 14 and piston 19 is moved to the left by the liquid betweenpistons 18 and 19 until it reaches its left stop. Pressure of the liquid on the plate 23 then opens the valve 22 (Figure 4) and the liquid passes through the central port of the piston 19 towards theoutlet 16. - When the
piston 18 has reached its lower stop, ending the mixture or dilution stroke, the cycle starts again.
Claims (6)
Applications Claiming Priority (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| GB7848526 | 1978-12-14 | ||
| GB4852678 | 1978-12-14 | ||
| GB7901504 | 1979-01-16 | ||
| GB7901504 | 1979-01-16 | ||
| GB7928618 | 1979-08-16 | ||
| GB7928618A GB2038929B (en) | 1978-12-14 | 1979-08-16 | Mixing pump |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP0012467A1 EP0012467A1 (en) | 1980-06-25 |
| EP0012467B1 true EP0012467B1 (en) | 1982-05-12 |
Family
ID=27260643
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP19790200708 Expired EP0012467B1 (en) | 1978-12-14 | 1979-12-03 | Pump |
Country Status (5)
| Country | Link |
|---|---|
| EP (1) | EP0012467B1 (en) |
| CA (1) | CA1160101A (en) |
| DE (1) | DE2962850D1 (en) |
| DK (1) | DK147605C (en) |
| ES (1) | ES486844A1 (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| RU2553849C1 (en) * | 2014-02-10 | 2015-06-20 | Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Вологодская государственная молочнохозяйственная академия имени Н.В. Верещагина" | Piston-type dosing pump |
Families Citing this family (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB2089440B (en) * | 1980-12-16 | 1984-08-01 | Nestle Sa | Pump |
| DK112386D0 (en) * | 1986-03-11 | 1986-03-11 | On Computer Electronics A S | DEVICE AND METHOD FOR DOSING LIQUID MEDIA |
| EP0303861B1 (en) * | 1987-08-20 | 1992-01-02 | Deutsche Tecalemit GmbH | Dispersing apparatus for mineral oil products |
| GB2318838B (en) * | 1993-12-10 | 1998-07-15 | White Consolidated Ind Inc | Viscous material dispenser and method for dispensing |
| FI108472B (en) | 1999-07-29 | 2002-01-31 | Bent Johan Larsen | Oil transfer pump |
| CN103291576B (en) * | 2013-05-13 | 2016-04-13 | 嘉善海力达工具有限公司 | Telescopic cylindrical type high-low pressure plunger pump |
| CN104895756B (en) * | 2015-05-29 | 2017-03-15 | 四川泛水基电液机械有限责任公司 | A kind of novel ultrahigh pressure fluid pump |
Family Cites Families (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR451277A (en) * | 1912-08-21 | 1913-04-15 | William Mortimer Melmore | Improvements in air or gas compressors |
| DE575142C (en) * | 1926-07-30 | 1933-04-24 | George Dean | Piston fluid metering pump |
| US2365234A (en) * | 1940-09-17 | 1944-12-19 | Sullivan Machinery Co | Pump mechanism |
| GB651482A (en) * | 1945-07-11 | 1951-04-04 | Humphrey S Railways Inc | Improvements in or relating to reciprocating pumps |
| US2497300A (en) * | 1947-01-29 | 1950-02-14 | Du Pont | Floating piston pump |
| DE1173805B (en) * | 1959-10-02 | 1964-07-09 | Bran & Luebbe | Plunger metering pump for pumping and mixing two liquids |
| DE1786127A1 (en) * | 1968-08-21 | 1971-11-25 | Benz & Hilgers Gmbh | Dosing device |
| US3894405A (en) * | 1973-11-07 | 1975-07-15 | Gustav B Mielitz | Refrigeration unit |
| US4093108A (en) * | 1974-07-11 | 1978-06-06 | Carl Schleicher & Schull | Syringe adapted to overcome a pressure resistance |
-
1979
- 1979-11-14 DK DK481979A patent/DK147605C/en not_active IP Right Cessation
- 1979-12-03 EP EP19790200708 patent/EP0012467B1/en not_active Expired
- 1979-12-03 DE DE7979200708T patent/DE2962850D1/en not_active Expired
- 1979-12-13 ES ES486844A patent/ES486844A1/en not_active Expired
- 1979-12-13 CA CA000341856A patent/CA1160101A/en not_active Expired
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| RU2553849C1 (en) * | 2014-02-10 | 2015-06-20 | Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Вологодская государственная молочнохозяйственная академия имени Н.В. Верещагина" | Piston-type dosing pump |
Also Published As
| Publication number | Publication date |
|---|---|
| EP0012467A1 (en) | 1980-06-25 |
| DK147605C (en) | 1985-04-22 |
| DE2962850D1 (en) | 1982-07-01 |
| DK147605B (en) | 1984-10-15 |
| DK481979A (en) | 1980-06-15 |
| CA1160101A (en) | 1984-01-10 |
| ES486844A1 (en) | 1980-05-16 |
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| Date | Code | Title | Description |
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