Pumping Device for Sucking or Draining Fluid
20170097018 ยท 2017-04-06
Inventors
Cpc classification
Y10T137/85978
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
F04B33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/0221
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F5/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F5/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B05B7/2424
PERFORMING OPERATIONS; TRANSPORTING
International classification
F04F5/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F5/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B05B7/24
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A pumping device includes a seal cap unit including a cap, an air relief member connected with the cap, and a regulating member connected with the air relief member. The cap has an air inlet hole and an air outlet hole. The air outlet hole has a through hole. The air relief member is mounted on the air outlet hole and has a guide hole and a plurality of apertures. The regulating member has an air relief hole and a plurality of draining holes. Thus, the air relief hole of the regulating member and the pressure relief member provide a double pressure relief function to release the excessive air pressure in the barrel.
Claims
1. A pumping device, comprising: a seal cap unit including: a cap; an air relief member connected with the cap; and a regulating member connected with the air relief member; wherein: the cap of the seal cap unit has a first end provided with an air inlet hole and a second end provided with an air outlet hole; the air outlet hole of the cap has a periphery provided with a through hole; the through hole of the cap is extended through a bottom of the cap; the air relief member has a first end mounted in the air outlet hole of the cap and a second end protruding outward from the air outlet hole of the cap; the air relief member has an interior provided with a guide hole; the guide hole of the air relief member has a periphery provided with a plurality of apertures; the apertures of the air relief member are arranged in a radiating manner; the regulating member of the seal cap unit is screwed onto the second end of the air relief member; the regulating member of the seal cap unit has a central position provided with an air relief hole connected to the guide hole of the air relief member; the regulating member of the seal cap unit has a periphery provided with a plurality of draining holes to introduce and drain air in the regulating member; each of draining holes has a diameter greater than that of the air relief hole; the guide hole of the air relief member has a front end provided with a tapered groove; the regulating member has an inner side provided with a tapered projection located between the air relief hole and the draining holes; when the regulating member is combined with the second end of the air relief member, the air relief hole is aligned with and connected to the guide hole of the air relief member; and when the regulating member is locked onto the second end of the air relief member, the tapered projection of the regulating member closely presses the tapered groove of the air relief member.
2. The pumping device of claim 1, wherein the air inlet hole of the cap is connected to the air outlet hole of the cap.
3. The pumping device of claim 1, wherein the through hole of the cap is connected to the apertures of the air relief member.
4. The pumping device of claim 1, wherein the seal cap unit further includes a check valve mounted in the through hole of the cap and located between the through hole of the cap and the pressure barrel unit.
5. The pumping device of claim 1, wherein: the seal cap unit further includes an air collection tube mounted in the air outlet hole of the cap and connected between the air inlet hole of the cap and the guide hole of the air relief member; and the air collection tube is located between the air relief member and the cap.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING(S)
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
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[0025]
DETAILED DESCRIPTION OF THE INVENTION
[0026] Referring to the drawings and initially to
[0027] The seal cap unit 1 includes a cap 11, an air relief member 12 connected with the cap 11, and a regulating member 14 connected with the air relief member 12.
[0028] The cap 11 of the seal cap unit 1 has a first end provided with an air inlet hole 111 and a second end provided with an air outlet hole 112. The air inlet hole 111 of the cap 11 is connected to the air outlet hole 112 of the cap 11. The air outlet hole 112 of the cap 11 has a periphery provided with a through hole 13. The through hole 13 of the cap 11 is extended through a bottom of the cap 11. The seal cap unit 1 further includes a check valve 131 mounted in the through hole 13 of the cap 11 and located between the through hole 13 of the cap 11 and the pressure barrel unit 2 to prevent air in the pressure barrel unit 2 from being largely returned to the through hole 13 of the cap 11.
[0029] The pumping device further comprises an air inlet switch 3 mounted on the cap 11 of the seal cap unit 1 and connected to the air inlet hole 111 of the cap 11 to control the air intake flow of the air inlet hole 111 of the cap 11.
[0030] The air relief member 12 has a first end mounted in the air outlet hole 112 of the cap 11 and a second end protruding outward from the air outlet hole 112 of the cap 11. The air relief member 12 has an interior provided with a guide hole 121. The guide hole 121 of the air relief member 12 has a periphery provided with a plurality of apertures 122. The apertures 122 of the air relief member 12 are arranged in a radiating manner and are connected to the guide hole 121. The through hole 13 of the cap 11 is connected to the apertures 122 of the air relief member 12.
[0031] The seal cap unit 1 further includes an air collection tube 123 mounted in the air outlet hole 112 of the cap 11 and connected between the air inlet hole 111 of the cap 11 and the guide hole 121 of the air relief member 12 to introduce air from the air inlet hole 111 of the cap 11 into the guide hole 121 of the air relief member 12. The air collection tube 123 is located between the air relief member 12 and the cap 11.
[0032] The regulating member 14 of the seal cap unit 1 is screwed onto the second end of the air relief member 12. The regulating member 14 of the seal cap unit 1 has a central position provided with an air relief hole 141 connected to and in line with the guide hole 121 of the air relief member 12. The regulating member 14 of the seal cap unit 1 has a periphery provided with a plurality of draining holes 142 to introduce and drain air in the regulating member 14. Each of draining holes 142 has a diameter greater than that of the air relief hole 141.
[0033] The pressure barrel unit 2 includes a barrel 21, a delivery pipe 221 mounted in the barrel 21, and a quick connector 22 mounted on the barrel 21 and connected to the delivery pipe 221. The barrel 21 of the pressure barrel unit 2 has a threaded open top screwed into a threaded lower portion of the cap 11. The barrel 21 of the pressure barrel unit 2 is connected to the through hole 13 of the cap 11 through the check valve 131. The delivery pipe 221 of the pressure barrel unit 2 is extended downward to the bottom of the barrel 21.
[0034] The pumping device further comprises a pressure gauge 4 mounted on the cap 11 of the seal cap unit 1 and connected to the barrel 21 of the pressure barrel unit 2 to detect and measure the air pressure in the barrel 21 of the pressure barrel unit 2, and a pressure relief member 5 mounted on the cap 11 of the seal cap unit 1 and connected to the barrel 21 of the pressure barrel unit 2 to release a portion of the air pressure in the barrel 21 of the pressure barrel unit 2 when the air pressure in the barrel 21 of the pressure barrel unit 2 exceeds a preset value.
[0035] In the preferred embodiment of the present invention, the guide hole 121 of the air relief member 12 has a front end provided with a tapered groove 124. The regulating member 14 has an inner side provided with a tapered projection 143 located between the air relief hole 141 and the draining holes 142. When the regulating member 14 is combined with the second end of the air relief member 12, the air relief hole 141 is aligned with and connected to the guide hole 121 of the air relief member 12. When the regulating member 14 is locked onto the second end of the air relief member 12, the tapered projection 143 of the regulating member 14 closely presses the tapered groove 124 of the air relief member 12.
[0036] In operation, referring to
[0037] When a user wishes to suck the fluid from the container into the barrel 21 of the pressure barrel unit 2 as shown in
[0038] Therefore, the air in the barrel 21 is drawn through the through hole 13 of the cap 11 and the apertures 122 of the air relief member 12 into the guide hole 121 of the air relief member 12 by the pressure differential between the guide hole 121 of the air relief member 12 and the barrel 21, and is then drained outward to the ambient environment from the air relief hole 141 and the draining holes 142 of the regulating member 14. Thus, the air is drained outward from the barrel 21 successively so that the barrel 21 is evacuated to produce a vacuum suction force. In such a manner, the fluid in the container is drawn by the vacuum suction force from the barrel 21, and is delivered through the connecting pipe 6, the quick connector 22 and the delivery pipe 221 into the barrel 21 successively.
[0039] On the contrary, when the user wishes to drain the fluid from the barrel 21 into the container as shown in
[0040] Accordingly, the air relief hole 141 of the regulating member 14 and the pressure relief member 5 provide a double pressure relief function to release the excessive air pressure in the barrel 21 so as to assure a safe operation of the pumping device. In addition, the air in the barrel 21 is drained outward from the air relief hole 141 of the regulating member 14 when the air pressure in the barrel 21 is increased to exceed a preset value, so that the air relief hole 141 of the regulating member 14 provides a further pressure relief function to release the air pressure in the barrel 21 when the pressure relief member 5 fails or malfunctions so as to prevent the barrel 21 from being deformed or broken due to an excessive air pressure in the barrel 21. Further, the regulating member 14 regulates the air flow of the air relief member 12 to change and regulate the air pressure in the barrel 21 so that fluid in an external container can be drawn into the barrel 21, and the fluid in the barrel 21 can be compressed into the external container.
[0041] Although the invention has been explained in relation to its preferred embodiment(s) as mentioned above, it is to be understood that many other possible modifications and variations can be made without departing from the scope of the present invention. It is, therefore, contemplated that the appended claim or claims will cover such modifications and variations that fall within the true scope of the invention.