Pumping device for a fluid container
09951759 ยท 2018-04-24
Assignee
Inventors
Cpc classification
F04B23/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B05B11/1033
PERFORMING OPERATIONS; TRANSPORTING
B05B11/028
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1097
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A novel pumping device (1) with an actuator (4) and a head part (5) for dispensing a fluid from a container (2) is described. The actuator (4) comprises an outlet conduit (37) and a first cylindrical member (18) and the head part (5) comprises a second cylindrical member (20) which is arranged coaxially to the first cylindrical member. A folded membrane member (22) with an inlet valve (24) and an outlet valve (25) is provided between the first (18) and second (20) cylindrical members, such that the first (18) and second (20) cylindrical members and the folded membrane member (22) provide a variable pump chamber (27). The outlet valve (25) is arranged relative to the actuator (4) in such a manner that a suck-back chamber (38) with a variable volume is provided between the outlet valve (25) and the outlet conduit (37), which is simultaneously reduced as the pumping chamber (27) is reduced.
Claims
1. A pumping device for dispensing a fluid, comprising: a container; a fluid chamber; an actuator and a head part which is connected onto the container, the actuator being movable in a down stroke pumping movement towards the container and in an upstroke movement away from the container, wherein the actuator comprises an outlet conduit and a first cylindrical member, and wherein the head part comprises a second cylindrical member which is arranged coaxially to the first cylindrical member; a piston in the container for reducing the volume of the fluid chamber, wherein the fluid chamber is formed between the piston and the head part; and a folded membrane member provided between the first and second cylindrical members, wherein the folded membrane member has an inlet valve and an outlet valve, such that the first and second cylindrical members and the folded membrane member provide a variable pumping chamber, wherein the inlet valve is sealing on a central upwardly protrusion of the head part and the outlet valve is sealing and slideably arranged relative to the actuator or sealing and slideably arranged relative to the head part during the pumping movement, such that the outlet valve and a contact location of the outlet valve with the actuator is moved along the actuator synchronously with the pumping movement of the actuator back and forth towards and away from the head part or the outlet valve and a contact location of the outlet valve with the head part is moved along the head part synchronously with the pumping movement of the actuator back and forth towards and away from the head part, whereas the outlet valve is closed and in sliding contact with the actuator throughout an upstroke of the pumping movement or the outlet valve is closed and in sliding contact with the head part throughout the upstroke of the pumping movement, and in such a manner that a suck-back chamber with a variable volume is provided between the outlet valve and the outlet conduit and remains open to an exterior of the pumping device throughout the pumping movement, which variable volume is synchronously reduced and increased as the volume of the pumping chamber is reduced and increased by said pumping movement, and wherein the folded membrane member comprises a resilient part which is provided between the actuator and the head part and which urges the actuator in a rest position relative to the head part.
2. The pumping device according to claim 1, wherein the inlet valve and the outlet valve are arranged at a predetermined invariable distance to another relative to the folded membrane.
3. The pumping device according to claim 2, wherein the resilient part is connected between the actuator and the head part.
4. The pumping device according to claim 1 wherein the inlet valve and the outlet valve are formed as tapered lips.
5. The pumping device according to claim 1 wherein the actuator comprises a third cylindrical member which coaxially circumvents the second cylindrical member of the head part to form the suck-back chamber between the outlet valve and the outlet conduit.
6. The pumping device according to claim 5, wherein the folded membrane member has at its open end a lock seam which grips the open end of the third cylindrical member.
7. The pumping device according to claim 1, wherein the folded membrane member forms the pump chamber and the outlet valve of the folded membrane member is fixedly mounted to the first cylindrical member of the actuator.
8. The pumping device according to claim 7, wherein the folded membrane member has a conical lower part towards the inlet valve and a closed upper part towards the outlet valve, wherein the closed upper part comprises said resilient part for urging the actuator into the rest position.
9. The pumping device according to claim 8, wherein the resilient part has a corrugated shape.
10. The pumping device according to claim 1, wherein the actuator and the head part are made from a hard plastic material.
11. The pumping device according to claim 1, wherein the folded membrane member is made from an elastomeric plastic material.
12. The pumping device according to claim 11, wherein the material is a thermoplastic elastomer.
13. A pumping device for dispensing a fluid, comprising: a container having a fluid chamber; an actuator coupled to the container and including an outlet conduit and a first cylindrical member, the actuator being movable in a down stroke pumping movement towards the container and in an upstroke movement away from the container; a head part which is connected onto the container, the head part including a second cylindrical member which is arranged coaxially to the first cylindrical member of the actuator; a piston in the container for reducing a volume of the fluid chamber during operation, wherein the fluid chamber is formed between the piston and the head part; and a membrane member provided between the first cylindrical member of the actuator and the second cylindrical member of the head part, the membrane member providing an inlet valve and an outlet valve, wherein the first cylindrical member of the actuator, the second cylindrical member of the head part and the membrane member define a variable pumping chamber, wherein the inlet valve is sealing on a central upwardly protrusion of the head part and the outlet valve is sealing and slideably arranged relative to the actuator or sealing and slideably arranged relative to the head part during the pumping movement, such that the outlet valve and a contact location of the outlet valve with the actuator is moved along the actuator synchronously with the pumping movement of the actuator back and forth towards and away from the head part or the outlet valve and a contact location of the outlet valve with the head part is moved along the head part synchronously with the pumping movement of the actuator back and forth towards and away from the head part, whereas the outlet valve is closed and in sliding contact with the actuator throughout an upstroke of the pumping movement or the outlet valve is closed and in sliding contact with the head part throughout the upstroke of the pumping movement, and in such a manner that a suck-back chamber with a variable volume is provided between the outlet valve and the outlet conduit and remains open to an exterior of the pumping device throughout the pumping movement, which variable volume is synchronously reduced and increased as the volume of the pumping chamber is reduced and increased by said pumping movement, and wherein the membrane member comprises a resilient part which is provided between the actuator and the head part and which urges the actuator in a rest position relative to the head part.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The invention will now be described in greater detail, by way of example, with reference to the accompanying drawings, in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) In
(7) The actuator 4 has further a third cylindrical member 31 with a lower ring-shaped open end 32 which has a slightly larger diameter than the second cylindrical member 20 and thus providing a clearance 33 between the cylindrical members 20 and 31. The membrane member 22 is folded at the upper edge 34 and has a resilient part 35 which is sealing the clearance 33 and is ending in a lock seam 36, which is gripping the open end 32. The resilient part 35 of the membrane member 22 is formed by a reduced thickness so that the membrane member 22 can be stretched as the actuator 4 is pushed down. Further the third cylindrical member 31 is ending at the upper side of the actuator 4 into a spout or outlet conduit 37.
(8) As can be seen in
(9) The first and third cylindrical members 18 and 31 and the outlet conduit 37 are integrally formed with the actuator 4. Also the outer ring cylinder 8, the second cylindrical member 20 and the closed tube 30 are integrally formed with the head part 5. The membrane member 22 with the inlet valve 24, the outlet valve 25, the resilient part 35 and the lock seam 36 are made in one piece made of a suitable soft plastic material like a thermoplastic elastomer as polyethylene (PE).
(10) The pumping device 1 and the container 2 are manufactured from a suitable hard plastic material like polypropylene (PP) or polycarbonate (PC).
(11) The pumping device 1 with the membrane member 22 can be advantageously manufactured by a two-component blow molding process so that the different parts are readily assembled and no further assembling steps are needed.
(12) The function of the pumping device 1 is depicted in
(13)
(14) In
(15) The membrane member 61 has further a resilient part 68 which is provided by corrugations so that the actuator 53 is urged in the upper position in which the actuator 53 and the head part 51 are restricted by the bulges 70 and 71 as in the first embodiment. The membrane member 61 has a ring-shaped lock seam 72 surrounding the outlet valve 63 which is gripping the open end of the first cylindrical member 55.
(16) In this second embodiment 50 the membrane member 61 as such forms a pump chamber 74 which can be reduced by pushing the actuator 53 by which action the first cylindrical member 55 is pushed against the lock seam 72 and pushes down the outlet valve 63 over the pin 66. The chamber 75 within the first cylindrical member 55 above the outlet valve 63 is here also a suck-back chamber which is reduced simultaneously with pump chamber 74 by the pushing action of the actuator 53. The container 52 forms a fluid chamber 76 which is arranged above ahere not shownpiston as in the first embodiment of
(17) In
(18) The function of the second embodiment of the pumping device 50 is similar as described with respect to