LIQUID PUMP CAPABLE OF ACHIEVING PRESSURE EQUILIBRIUM
20200332657 ยท 2020-10-22
Inventors
Cpc classification
F04B7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B05B11/0062
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1069
PERFORMING OPERATIONS; TRANSPORTING
B05B11/00442
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1074
PERFORMING OPERATIONS; TRANSPORTING
B05B11/105
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1015
PERFORMING OPERATIONS; TRANSPORTING
F04C2/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B05B11/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
F01C20/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C14/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A liquid pump capable of achieving pressure equilibrium includes a body, piston member, unidirectional input valve, unidirectional output valve, input inner-pipe, unidirectional gas-feeding hermetic-seal valve and input outer-pipe. The body has an input opening, output opening and piston opening. The piston member has a piston space communicating with the piston opening. The unidirectional input valve includes an input plug and input resilient element. The input plug abuts against the input opening. The unidirectional output valve includes an output plug and output resilient element. The output plug abuts against the output opening from outside. An input channel of the input inner-pipe communicates with the input opening. Direction of gas-flow between the unidirectional gas-feeding hermetic-seal valve and the input inner-pipe is opposite input direction of the input channel. The input outer-pipe has an input portion communicating with the input channel. A gas-feeding-channel is defined between a gas-feeding-portion and the input inner-pipe.
Claims
1. A liquid pump capable of achieving pressure equilibrium, comprising: a body having therein a main space, the main space having an input opening, an output opening and a piston opening; a piston member comprising a piston cylinder and a piston push rod, the piston cylinder having a piston space in communication with the main space through the piston opening, and the piston push rod being disposed in the piston space and sliding in an extension direction of the piston cylinder; a unidirectional input valve comprising an input plug and an input resilient element connected to the input plug, the input plug abutting against the input opening, and the input resilient element abutting against the body; a unidirectional output valve comprising an output plug and an output resilient element connected to the output plug, the output plug abutting against the output opening, and the output resilient element abutting against the body; an input inner pipe having an input channel with an end in communication with the input opening; a unidirectional gas-feeding hermetic seal valve fitting around the input inner pipe, wherein direction of gas flow between the unidirectional gas-feeding hermetic seal valve and the input inner pipe is opposite input direction of the input channel; and an input outer pipe containing the input inner pipe and the unidirectional gas-feeding hermetic seal valve and having an input portion and a gas-feeding portion surrounding the input portion, the input portion being in communication with another end of the input channel of the input inner pipe, wherein a gas-feeding channel is defined by and between the gas-feeding portion and the input inner pipe, the gas-feeding portion having a gas-feeding opening in communication with the gas-feeding channel and a gas-discharging opening, wherein the unidirectional gas-feeding hermetic seal valve is disposed between the gas-feeding opening and the gas-discharging opening.
2. The liquid pump of claim 1, wherein the piston member further comprises a retract spring disposed between the piston cylinder and the piston push rod.
3. The liquid pump of claim 1, wherein the piston push rod has at least one engaging arm, and the piston cylinder has at least one engaging slot, with the engaging arm slidingly engaged with the engaging slot.
4. The liquid pump of claim 1, wherein the input resilient element of the unidirectional input valve is configured in such a manner that compression direction is equivalent to an input direction of the input channel.
5. The liquid pump of claim 1, wherein the body extends from the output opening to form an output tube, and the unidirectional output valve is disposed at an end of the output tube.
6. The liquid pump of claim 5, wherein the output resilient element of the unidirectional output valve is configured in such a manner that compression direction is equivalent to an output direction of the output tube.
7. The liquid pump of claim 1, wherein the body further comprises a fitting upper cover and a fitting lower cover, with the main space defined by and between the fitting upper cover and the fitting lower cover, the input opening being disposed at the fitting upper cover, and the output opening being disposed at the fitting lower cover.
8. The liquid pump of claim 7, wherein the unidirectional input valve further comprises a support element disposed between the fitting upper cover and the fitting lower cover, and the input resilient element of the unidirectional input valve is disposed in the support element.
9. The liquid pump of claim 1, further comprising a container mouth hermetic seal plug fitting around the input portion of the input outer pipe, and the gas-discharging opening is communicatively disposed between the container mouth hermetic seal plug and the input portion.
10. The liquid pump of claim 1, wherein the body further comprises at least one pump proper fastener disposed on a side of the body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE INVENTION
[0026] Objectives, features, and advantages of the present disclosure are hereunder illustrated with specific embodiments, depicted with drawings, and described below.
[0027] Referring to
[0028] The body 1 has therein a main space 11. The main space 11 has an input opening 12, an output opening 13 and a piston opening 14.
[0029] The piston member 2 comprises a piston cylinder 21 and a piston push rod 22. The piston cylinder 21 has a piston space 211 in communication with the main space 11 through the piston opening 14. The piston push rod 22 is disposed in the piston space 211 and slides along the extension direction of the piston cylinder 21.
[0030] The unidirectional input valve 3 is disposed in the main space 11. The unidirectional input valve 3 comprises an input plug 31 and an input resilient element 32 with one end connected to the input plug 31. The input plug 31 abuts against the input opening 12 from inside the main space 11. The input resilient element 32 is abuttingly disposed inside the body 1. In this embodiment, the input plug 31 is spherical, and the input resilient element 32 is a spring, but the present disclosure is not limited thereto.
[0031] The unidirectional output valve 4 is disposed outside the main space 11. The unidirectional output valve 4 comprises an output plug 41 and an output resilient element 42 with one end connected to the output plug 41. The output plug 41 abuts against the output opening 13 from outside the main space 11. The output resilient element 42 is abuttingly disposed inside the body 1. In this embodiment, the output plug 41 is spherical, and the output resilient element 42 is a spring, but the present disclosure is not limited thereto.
[0032] The input inner pipe 5 has an input channel 51. One end of the input channel 51 is in communication with the input opening 12.
[0033] The unidirectional gas-feeding hermetic seal valve 6 fits around the input inner pipe 5. Referring to
[0034] The input inner pipe 5 and the unidirectional gas-feeding hermetic seal valve 6 are disposed in the input outer pipe 7. The input outer pipe 7 has an input portion 71 and a gas-feeding portion 72 surrounding the input portion 71. The input portion 71 has therein a channel in communication with the other end of the input channel 51 of the input inner pipe 5. a gas-feeding channel 722 is defined by and between the gas-feeding portion 72 and the input inner pipe 5. The gas-feeding portion 72 has a gas-feeding opening 721 and a gas-discharging opening 723 in communication with the gas-feeding channel 722. The unidirectional gas-feeding hermetic seal valve 6 is disposed between the gas-feeding opening 721 and the gas-discharging opening 723.
[0035]
[0036] Referring to
[0037] Referring to
[0038] Since the liquid of the container C flows into the main space 11 through the input channel 51, external air enters the input outer pipe 7 through the gas-feeding opening 721 disposed on the gas-feeding portion 72 of the input outer pipe 7, and then the external air enters the container C through the unidirectional gas-feeding hermetic seal valve 6, the gas-feeding channel 722 defined by and between the gas-feeding portion 72 and the input inner pipe 5, and the gas-discharging opening 723 sequentially such that the internal pressure and external pressure of the container C are stable continuously. In this embodiment, the gas-discharging opening 723 is disposed between the input portion 71 and the gas-feeding portion 72 such that gas enters the container C after passing through the gas-discharging opening 723 and then flowing along a channel between the outer wall of the input portion 71 and the mouth of the container C.
[0039] Referring to
[0040] When the liquid pressure inside the main space 11 can no longer overcome the resilient restoring force of the output resilient element 42, the output plug 41 abuts against the output opening 13. At this point in time, the piston push rod 22 is pulled in the opposite direction, thereby supplying the liquid to the main space 11 and the piston space 211.
[0041] By pushing and pulling the piston push rod 22 repeatedly under an external force, the liquid of the container C can be continuously output through the body 1. In the course of outputting the liquid, not only do the internal pressure and external pressure of the container C remain stable to thereby preclude leakage of the liquid, but the amount of the liquid output in each instance is also stable and fixed.
[0042] Referring to
[0043] Referring to
[0044] Referring to
[0045] Referring to
[0046] Referring to
[0047] Referring to
[0048] Referring to
[0049] Referring to
[0050] Referring to
[0051] Referring to
[0052] Referring to
[0053] Referring to
[0054] Referring to
[0055] While the present disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the present disclosure set forth in the claims.