PUMP DEVICE FOR A FLUID CONTAINER
20190217322 · 2019-07-18
Assignee
Inventors
Cpc classification
B05B11/1023
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1028
PERFORMING OPERATIONS; TRANSPORTING
B05B11/0072
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1094
PERFORMING OPERATIONS; TRANSPORTING
B05B11/028
PERFORMING OPERATIONS; TRANSPORTING
B05B15/50
PERFORMING OPERATIONS; TRANSPORTING
B05B11/007
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B15/50
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a novel pump device for a fluid container for dispensing a fluid, which device has an operating element and a head part, wherein a piston-cylinder unit forming a pump chamber is provided between the operating element and the head part. An inlet valve is provided at the inlet of the pump chamber, and an outlet valve is provided at the outlet of the pump chamber, wherein the operating element has an outflow with an outflow opening. The outlet valve is also provided at the outflow, and the outflow opening forms a valve seat in such a way that the outlet valve closes the outlet opening from outside.
Claims
1. A pump device for a fluid container for dispensing a fluid, which device has an operating element and a head part, wherein a piston-cylinder unit forming a pump chamber is provided between the operating element and the head part, and an inlet valve is provided at the inlet of the pump chamber, and an outlet valve is provided at the outlet of the pump chamber, wherein the operating element has an outflow with an outflow opening, wherein the outlet valve is provided at the outflow, and the outflow opening forms a valve seat in such a way that the outlet valve doses the outlet opening from outside.
2. The pump device according to claim 1, wherein the outlet valve is formed by a resilient second spring element acting as a tension spring and having a sealing stopper, wherein the sealing stopper closes the outflow opening from outside, and the inner end of the second spring element is fastened to the inner wall of the outflow.
3. The pump device according to claim 2, wherein an inwardly projecting protrusion is provided on the inner wall, with the inner end region of the second spring element being fastened to said protrusion.
4. The pump device according to claim 2, wherein a sealing sleeve is arranged in the outflow, flush with the outlet opening, with the second spring element being fastened to said sleeve.
5. The pump device according to claim 4, wherein the sealing sleeve and the second spring element are connected to one another in one piece.
6. The pump device according to claim 2, wherein the sealing stopper has a mushroom-shaped head with a conical closure part, and the valve seat is conical, accordingly.
7. The pump device according to claim 6, wherein the sealing stopper is formed as a hard plastic part and the sealing sleeve and/or the second spring element are/is formed from a soft plastic.
8. The pump device according to claim 7, wherein the sealing stopper has an inner part made of hard plastic and a coating made of soft plastic.
9. The pump device according to claim 8, wherein the sealing stopper is provided with a protuberance, which is received in a blind bore-like recess in the second spring element.
10. The pump device according to claim 1, wherein the head part is suitable for fastening to the fluid container, and a resilient diaphragm forms a first spring element between the operating element and the head part in order to press the operating element away from the head part.
11. The pump device according to claim 10, wherein the piston-cylinder unit is formed by a first cylinder, which is fastened to the operating element from therebeneath, and by a second cylinder, which is fastened to the head part from thereabove, coaxially with the first cylinder.
12. The pump device according to claim 11, wherein the first cylinder comprises the second cylinder with a cylindrical gap, and the first cylinder is provided with an inwardly projecting closed cylinder part which is surrounded by the second cylinder with a cylindrical gap.
13. The pump device according to claim 10, wherein the resilient diaphragm is formed cylindrically with a beveled lower end and a hook-shaped upper end, wherein the diaphragm is arranged between the first and second cylinder in such a way that the beveled lower end grasps around the second cylinder and the hook-shaped upper end is supported at the free end of the first cylinder.
Description
BRIEF DESCRIPTION OF THE INVENTION
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DETAILED DESCRIPTION OF THE INVENTION
[0029] In the figures, the same reference signs are used for the same elements, unless stated otherwise.
[0030]
[0031] The operating element 3 is formed as a cylindrical cap and has, laterally, an outflow 27 with an outflow opening 28. An annular sleeve 31 is mounted on the roof 32 of the operating element 2 centrally to the axis of symmetry 30 and is used to fasten a second cylinder 33 to the operating element 2 by means of a clamping connection 34. The second cylinder 33 has a greater diameter than the first cylinder 15, such that a ring-cylindrical gap 35 exists between said cylinders. The second cylinder 33 is also closed at the top by a base 36, on which there is provided an inwardly projecting, closed cylinder part 37, The cylinder part 37 used as a piston and the second cylinder 33 thus form a piston-cylinder unit 40.
[0032] A resilient diaphragm 42 is provided as first spring element between the first cylinder 15 and the second cylinder 33 and is provided with a beveled lower end 43 and a hook-shaped upper end 44. The beveled lower end 43 is formed by a plastic ring, whereas the resilient diaphragm 42 is formed from an elastomer. The upper hook-shaped end 44 is formed by a folded plastic ring.
[0033] An outlet valve 45 is mounted at the outflow opening 28 and covers the outflow opening 28 flushly in the closed state. The outlet valve 45 is formed by a resilient, second spring element 46 acting as a tension spring and having a sealing stopper 47. The second cylinder 33 also has, in the region of the outflow 27, a cylindrical connection piece 48 with an intermediate wall or protrusion 49 projecting upwardly centrally, which protrusion is used to fasten the free end region 50 of the second spring element 46, such that this is clamped between the sealing stopper 47 and the end 50, and the outlet valve 45 closes the outflow opening in an air-tight and liquid-tight manner.
[0034] Instead of a diaphragm as spring element, a conventional compression spring can also be provided between the operating element 3 and the head part 2. The piston-cylinder unit can also be formed in the manner known per se.
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[0036] As the pressure on the fluid to be dispensed is increased, this being brought about by the pump movement of the pump device 1, the second spring element 46 expands and the outlet valve 45 is opened (see
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[0043] While the present disclosure has been illustrated and described with respect to a particular embodiment thereof, it should be appreciated by those of ordinary skill in the art that various modifications to this disclosure may be made without departing from the spirit and scope of the present disclosure.