All-plastic self-locking pump
11383257 ยท 2022-07-12
Assignee
Inventors
- Peihui LIANG (ZHONGSHAN, CN)
- Maoyong ZHU (ZHONGSHAN, CN)
- Yonglei ZHANG (ZHONGSHAN, CN)
- Jinkao Liang (Zhongshan, CN)
Cpc classification
B05B11/1023
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1077
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1047
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An all-plastic self-locking pump includes a pump body extending into a bottle, provided with a pump chamber and connected with a bottle locking cover, a suction assembly is arranged in the pump chamber, a check valve is arranged at a lower end of the pump chamber. A button is connected to an upper end of the suction assembly, a self-locking cover is arranged on the pump chamber, a plastic annular part is arranged in the pump chamber above the check valve, and an opening is formed in a side face of the plastic annular part. A locking mechanism is arranged between the button and the self-locking cover, and after the button is rotated to an unlocking position from a locking position, the button can be pressed to enable liquid in the bottle to be sprayed out of an outlet of the button.
Claims
1. An all-plastic self-locking pump, comprising: a pump body extending into a bottle, wherein, the pump body is provided with a pump chamber and connected with a bottle locking cover capable of fixing the pump body on the bottle, a suction assembly capable of moving up and down in the pump chamber to upwardly pump out a liquid in the bottle is arranged in the pump chamber, and a check valve only allowing the liquid in the bottle to be upwardly discharged when the suction assembly moves is arranged at a lower end of the pump chamber; a button capable of driving the suction assembly to operate is connected to an upper end of the suction assembly, a self-locking cover capable of preventing the suction assembly from separating from the pump chamber is arranged on the pump chamber, a plastic annular part capable of resetting the suction assembly after the suction assembly is pressed down is arranged in the pump chamber and located above the check valve, and an opening is formed in a side face of the plastic annular part; and positions where the button stays comprise a locking position and an unlocking position, a locking mechanism capable of preventing the button from moving downwardly when the button stays in the locking position is arranged between the button and the self-locking cover, and after the button is rotated to the unlocking position from the locking position, the button is capable of being pressed to enable the liquid in the bottle to be sprayed out of an outlet of the button, and wherein the suction assembly comprises a pump rod capable of penetrating through the self-locking cover and having a suction channel, the pump rod is provided with a liquid inlet communicating the suction channel with the pump chamber, a piston capable of sliding relative to the pump rod and sealing the liquid inlet is sleeved outside the pump rod, and a conical cap capable of extending into the plastic annular part is connected to a lower end of the pump rod.
2. The all-plastic self-locking pump according to claim 1, wherein the locking mechanism comprises a positioning rib arranged on the button, the self-locking cover is provided with a platform capable of abutting against the positioning rib to prevent the button from moving downwardly, and an accommodating groove capable of accommodating the positioning rib when the button is rotated to the unlocking position.
3. The all-plastic self-locking pump according to claim 1, wherein an upper limit rib is arranged on the pump rod at an outer wall above the liquid inlet, a lower limit convex ring is on the pump rod at the outer wall below the liquid inlet, and the piston is located between the upper limit rib and the lower limit convex ring.
4. The all-plastic self-locking pump according to claim 1, wherein the lower end of the pump chamber is conical, and the check valve is a pump bead arranged at the lower end of the pump chamber.
5. The all-plastic self-locking pump according to claim 1, wherein a limit part capable of preventing the check valve from falling out and limiting the conical cap from moving down is arranged in the pump chamber and located above the check valve.
6. The all-plastic self-locking pump according to claim 1, wherein a liquid guide pipe is arranged on the pump body and located below the check valve.
7. The all-plastic self-locking pump according to claim 1, wherein the plastic annular part is an elastic plastic annular part.
8. An all-plastic self-locking pump, comprising: a pump body extending into a bottle, wherein, the pump body is provided with a pump chamber and connected with a bottle locking cover capable of fixing the pump body on the bottle, a suction assembly capable of moving up and down in the pump chamber to upwardly pump out a liquid in the bottle is arranged in the pump chamber, and a check valve only allowing the liquid in the bottle to be upwardly discharged when the suction assembly moves is arranged at a lower end of the pump chamber; a button capable of driving the suction assembly to operate is connected to an upper end of the suction assembly, a self-locking cover capable of preventing the suction assembly from separating from the pump chamber is arranged on the pump chamber, a plastic annular part capable of resetting the suction assembly after the suction assembly is pressed down is arranged in the pump chamber and located above the check valve, and an opening is formed in a side face of the plastic annular part; and positions where the button stays comprise a locking position and an unlocking position, a locking mechanism capable of preventing the button from moving downwardly when the button stays in the locking position is arranged between the button and the self-locking cover, and after the button is rotated to the unlocking position from the locking position, the button is capable of being pressed to enable the liquid in the bottle to be sprayed out of an outlet of the button, and wherein the locking mechanism comprises a positioning rib arranged on the button, the self-locking cover is provided with a platform capable of abutting against the positioning rib to prevent the button from moving downwardly, and an accommodating groove capable of accommodating the positioning rib when the button is rotated to the unlocking position.
9. The all-plastic self-locking pump according to claim 8, wherein the lower end of the pump chamber is conical, and the check valve is a pump bead arranged at the lower end of the pump chamber.
10. The all-plastic self-locking pump according to claim 8, wherein a liquid guide pipe is arranged on the pump body and located below the check valve.
11. The all-plastic self-locking pump according to claim 8, wherein the plastic annular part is an elastic plastic annular part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The specific embodiments of the present disclosure are further described hereinafter with reference to the accompanying drawings, wherein,
(2)
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(8) The specific embodiments of the present disclosure are described in detail hereinafter with reference to
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(17) When in use, the button is rotated first to the unlocking position. Meanwhile, when the button is pressed down for the first time, the suction assembly moves downwardly along with the button. The piston presses gas in the pump chamber into the suction channel from the liquid inlet and discharges the gas, and at the moment, the pump chamber is in a negative pressure state. After releasing of a hand, the suction assembly moves upwardly under an elastic force of the plastic annular part. Since a pressure in the pump chamber is less than that in the bottle, the check valve is open, and the emulsion in the bottle enters the pump chamber. When an air pressure in the pump chamber is equal to that in the bottle, the check valve is closed, and the button is pressed again, so that the piston moves downwardly to squeeze the pump chamber. At the moment, the emulsion enters the suction channel from the liquid inlet and then flows out from the button.
(18) The above embodiments are only the preferred solutions of the present disclosure, and the present disclosure may have other embodiments, such as reasonable combinations of the technical solutions recorded in several embodiments. Those skilled in the art may further make various equivalent modifications or substitutions without departing from the principle of the present disclosure, and these equivalent modifications or substitutions are all included in the scope defined by the claims of the present application.