CN114278555A - Pressure-boosting energy-saving water pump - Google Patents

Pressure-boosting energy-saving water pump Download PDF

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Publication number
CN114278555A
CN114278555A CN202111611331.5A CN202111611331A CN114278555A CN 114278555 A CN114278555 A CN 114278555A CN 202111611331 A CN202111611331 A CN 202111611331A CN 114278555 A CN114278555 A CN 114278555A
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pump body
soft rubber
water
water inlet
water outlet
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CN202111611331.5A
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CN114278555B (en
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郑慧
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Dongguan Shengzai Electronic Technology Co ltd
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Dongguan Shengzai Electronic Technology Co ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P20/00Technologies relating to chemical industry
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Abstract

The invention discloses a pressurized energy-saving water pump which comprises a shell, a soft rubber pump body and a push-pull device, wherein the soft rubber pump body and the push-pull device are fixed inside the shell, the push-pull device is arranged below the soft rubber pump body and drives the soft rubber pump body to pull downwards, a water inlet and a water outlet are formed in the surface of the soft rubber pump body, the water inlet and the water outlet are communicated with the inside of the soft rubber pump body, the water inlet and the water outlet are respectively provided with a switch valve, the switch valve comprises two flaps which are oppositely arranged, one sides of the flaps far away from each other are fixedly connected with the soft rubber pump body, the flaps close to one sides of the flaps and are contacted and closed, a sealed cavity is formed inside the soft rubber pump body through the two switch valves, the switch valve of the water inlet is sunken towards the inside of the soft rubber pump body, and the switch valve of the water outlet is protruded towards the outer side of the soft rubber pump body. The invention provides a supercharging energy-saving water pump, which reduces the reject ratio during assembly and avoids the situations of water leakage, water failure or small injection force.

Description

Pressure-boosting energy-saving water pump
Technical Field
The invention relates to the technical field of water pumps, in particular to a supercharging energy-saving water pump.
Background
Water pumps are machines that deliver or pressurize a liquid. It transfers the mechanical energy of prime mover or other external energy to liquid to increase the energy of liquid, and is mainly used to transfer liquid including water, oil, acid-base liquid, emulsion, suspoemulsion and liquid metal. Along with the improvement of the living standard of human beings in recent years, people pay more attention to oral hygiene and health, and a product with high-pressure water flow, namely a tooth washing device, is produced, and mainly uses the strong jet force of the water flow to wash food residues in gaps between teeth. However, the conventional water pump cannot perform pressurization treatment, and the spraying effect can be achieved only by performing pressurization treatment with an external spray head or other high-pressure treatment.
Therefore, the structure design of the pump body of the existing tooth washing device is complex, the assembly is complex, and the reject ratio is always high. At present, two types of pump bodies are mainstream in the market, one type adopts an in-mold injection molding steel cylinder and a connecting rod piston to pressurize, and the other type adopts a pure diaphragm to bond a connecting rod to pressurize; however, the water inlet valve, the water outlet valve and various waterproof sealing ring components are required to form a finished product, the size is slightly deviated, and poor assembly can be caused by slight carelessness, so that the situations of water leakage, incapability of water feeding or small injection force occur.
Disclosure of Invention
The invention aims to provide a supercharging energy-saving water pump, which reduces the reject ratio during assembly and avoids the situations of water leakage, water failure or small injection force.
The invention discloses a supercharging energy-saving water pump, which adopts the technical scheme that:
the utility model provides a pressure boost energy-saving water pump, includes casing, the flexible glue pump body and push-and-pull device, inside flexible glue pump body and push-and-pull device all were fixed in the casing, push-and-pull device set up in flexible glue pump body below, and drive the flexible glue pump body and drag downwards, flexible glue pump body surface is equipped with water inlet and delivery port, water inlet and delivery port all communicate with flexible glue pump body is inside, just water inlet and delivery port all are equipped with switch valve, switch valve includes two petals, two the petal sets up relatively, just one side and flexible glue pump body fixed connection are kept away from each other to the petal, the petal is close to one side contact each other and is closed, the flexible glue pump body is inside forms sealed cavity through two switch valves, just the switch valve of water inlet is sunken towards flexible glue pump body inside, the switch valve of delivery port is salient towards flexible glue pump body outside.
According to the preferable scheme, one side of the shell is provided with a water inlet connecting seat, one end of the water inlet connecting seat is fixed inside the shell, the water inlet connecting seat is communicated with the water inlet, and the other end of the water inlet connecting seat extends out of the shell.
According to a preferable scheme, the soft rubber pump body comprises an upper pump body and a lower pump body, the upper pump body is connected with the lower pump body in a sealing mode, the upper pump body extends out of the shell, the water outlet is located above the upper pump body, and the water inlet is located on the side face of the lower pump body.
As the preferred scheme, be equipped with the connection piece between the upper pump body and the lower pump body, the connection piece is located upper pump body and lower pump body one side.
As preferred scheme, go up the pump body and be equipped with hard glue internal stay spare down between the pump body, hard glue internal stay spare includes baffle and sleeve pipe, the sleeve pipe sets up in the baffle below, just the sleeve pipe is laminated mutually with lower pump body inner wall, the sleeve pipe surface corresponds the water inlet and has seted up first through-hole, the baffle corresponds the delivery port and has seted up the second through-hole, hard glue external stay spare is located to last pump body surface cover, hard glue external stay spare, go up the pump body, hard glue internal stay spare and the pump body passes through the screw can be dismantled with the casing and be connected down.
Preferably, the upper pump body and the lower pump body are provided with lip edges at the sides close to each other, and the lip edges are arranged at the sides of the water outlets and the water inlets of the upper pump body and the lower pump body.
Preferably, the inner wall of the water outlet is provided with a convex ring, and the convex ring is positioned above the switch valve.
Preferably, the push-pull device comprises a rotating motor, an eccentric gear and a connecting rod, the eccentric gear is rotatably connected with the shell through a gear shaft, one end of the connecting rod is rotatably connected with the center of the eccentric gear, the other end of the connecting rod is fixedly connected with the lower portion of the flexible glue pump body through a pin, the rotating motor is arranged below the eccentric gear, a motor tooth is arranged on an output shaft of the rotating motor, the motor tooth is meshed with the eccentric gear, and the motor is in transmission connection with the eccentric gear through the motor tooth.
As the preferred scheme, motor groove, gear groove and pump body groove have been seted up to casing inside, the rotation motor sets up in the motor groove, eccentric gear sets up in the gear groove, the flexible glue pump body sets up in the pump body groove.
Preferably, the housing comprises an upper housing and a lower housing, and the upper housing and the lower housing are fixedly connected through screws.
The invention discloses a supercharging energy-saving water pump, which has the beneficial effects that: when the flexible glue pump is used, the water inlet of the flexible glue pump body is communicated with an external water inlet pipeline, the water outlet of the flexible glue pump body is communicated with an external water outlet pipeline, and under normal conditions, the switch valves of the water inlet and the water outlet are both in a closed state, and the interior of the flexible glue pump body is in a sealed state; when the flexible glue pump needs to be used, the push-pull device positioned below the flexible glue pump body drives the flexible glue pump body to pull downwards, and the switch valve of the water inlet is sunken towards the inside of the flexible glue pump body, so that the volume inside the flexible glue pump body is increased in the pull-down deformation process of the flexible glue pump body, the flexible glue pump body forms negative pressure, two flaps at the water inlet are inwards deformed, the switch valve of the water outlet is protruded towards the outer side of the flexible glue pump body, the two flaps at the water outlet are continuously kept in contact with each other to avoid the situation that water is sucked into the flexible glue pump body through the water inlet, and the push-pull device drives the flexible glue pump body to recover so that the water is reserved in the cavity; and then the lower part of the soft rubber pump body is jacked upwards by the push-pull device, the volume of the soft rubber pump body is compressed, the two petals at the water outlet are outwards expanded, and the two petals at the water inlet are inwards sunken, so that the contact and closing state is continuously kept, and water in the soft rubber pump body is sprayed out from the water outlet. Through above-mentioned structure, only need directly carry out fixed connection with the flexible glue pump body with push-and-pull device can, need not reduce the defective rate during the assembly with the help of auxiliary seal device such as other sealing washers, avoid appearing leaking, unable water feeding or the little condition of penetrating power appears.
Drawings
Fig. 1 is a schematic structural diagram of a booster energy-saving water pump.
Fig. 2 is a schematic diagram of the internal structure of a supercharging energy-saving water pump.
Fig. 3 is an exploded view of a booster energy-saving water pump according to the present invention.
Fig. 4 is a schematic structural diagram of a soft rubber pump body of the supercharging energy-saving water pump.
Fig. 5 is a side view of a booster energy-saving water pump according to the present invention.
Fig. 6 is a sectional view taken along line a-a in fig. 5.
Fig. 7 is a sectional view taken along line B-B in fig. 5.
Fig. 8 is a schematic structural view of another embodiment of the soft rubber pump body of the pressurized energy-saving water pump of the invention.
Detailed Description
The invention will be further elucidated and described with reference to the embodiments and drawings of the specification:
referring to fig. 1, 2 and 3, a pressurized energy-saving water pump includes a housing 10, a soft rubber pump body 20 and a push-pull device 30, wherein the soft rubber pump body 20 and the push-pull device 30 are both fixed inside the housing 10, and the push-pull device 30 is disposed below the soft rubber pump body 20 and drives the soft rubber pump body 20 to be pulled downward.
Referring to fig. 4, 5, 6 and 7, the surface of the soft rubber pump body 20 is provided with a water inlet 21 and a water outlet 22, the water inlet 21 and the water outlet 22 are both communicated with the inside of the soft rubber pump body 20, and the water inlet 21 and the water outlet 22 are both provided with a switch valve 23.
Switch valve 23 includes two flaps, and two flaps set up relatively, and the flap keeps away from one side each other and soft glue pump body 20 fixed connection, and the flap is close to one side contact closure each other, and the soft glue pump body 20 is inside to form sealed cavity through two switch valve 23, and the switch valve 23 of water inlet 21 is sunken towards the inside of soft glue pump body 20, and the switch valve 23 of delivery port 22 is salient towards the outside of the soft glue pump body 20.
When the soft rubber pump body 20 is used, the water inlet 21 of the soft rubber pump body 20 is communicated with an external water inlet pipeline, the water outlet 22 is communicated with an external water outlet pipeline, the switch valves 23 of the water inlet 21 and the water outlet 22 are both in a closed state under normal conditions, and the interior of the soft rubber pump body 20 is in a sealed state.
When needs carry out the use, be located the push-and-pull device 30 of flexible glue pump body 20 below, drive the flexible glue pump body 20 earlier and pull downwards, because the switch valve 23 of water inlet 21 is sunken towards flexible glue pump body 20 inside, thereby the flexible glue pump body 20 is at the pull-down deformation in-process, the inside increase of volume of flexible glue pump body 20, flexible glue pump body 20 forms the negative pressure, two petals that make water inlet 21 department are inwards out of shape, and the switch valve 23 of delivery port 22 is salient towards flexible glue pump body 20 outside, thereby flexible glue pump body 20 is pulling down the in-process, two petals of delivery port 22 last keep in contact and avoid, make water inhale in the flexible glue pump body 20 in passing through water inlet 21, push-and-pull device 30 drives the flexible glue pump body 20 and recovers, make water remain in the cavity.
And then the lower part of the soft rubber pump body 20 is jacked upwards by the push-pull device 30, the volume of the soft rubber pump body 20 is compressed, two petals out of the water outlet 22 are outwards expanded, and two petals of the water inlet 21 are inwards sunken, so that the contact and closing state is continuously kept, and water in the soft rubber pump body 20 is extruded and sprayed out from the water outlet 22.
And after water is extruded and sprayed from the water outlet 22, in the process of resetting the push-pull device 30, the switch valve 23 of the water outlet 22 is in a closed state, so that a vacuum state is formed inside the soft rubber pump body 20, negative pressure is generated, the switch valve 23 of the water inlet 21 is reopened, and water is sucked into the soft rubber pump body 20.
Through above-mentioned structure, only need directly carry out fixed connection with the flexible glue pump body 20 with push-and-pull device 30 can, need not reduce the defective rate when assembling with the help of auxiliary seal device such as other sealing washers, avoid appearing leaking, unable water feeding or the little condition of jet force appears.
In the above scheme, casing 10 one side is equipped with into water connecting seat 11, and 11 one ends of connecting seat of intaking are fixed in inside the casing 10, and the connecting seat of intaking 11 and water inlet 21 intercommunication, and the connecting seat of intaking 11 other ends extends casing 10, makes the water inlet 21 of the soft glue pump body 20 can communicate with the inlet channel of outside better to can improve the leakproofness of being connected between water inlet 21 and the inlet channel through the connecting seat of intaking 11.
Referring to fig. 2 and fig. 3 again, in this embodiment, the soft rubber pump body 20 includes an upper pump body 201 and a lower pump body 202, the upper pump body 201 is hermetically connected with the lower pump body 202, the upper pump body 201 extends out of the interior of the housing 10, the water outlet 22 is located above the upper pump body 201, and the water inlet 21 is located on the side surface of the lower pump body 202. Adopt split type structure to set up the flexible glue pump body 20, reduced push-and-pull device 30 and pulled pump body 202 under driving, when making the switch valve 23 of water inlet 21 open the suction water, to the influence of delivery port 22 in the last pump body 201 to ensure that hydroenergy can be inhaled the flexible glue pump body 20 smoothly, avoid appearing in the in-process of absorbing water, from the condition of delivery port 22 department leakage, also further ensured the impact force when the extrusion flexible glue pump body 20 makes water blowout.
Referring to fig. 8, the flexible glue pump 20 may be used in an integral structure without distinguishing the upper pump 201 from the lower pump 202, so that the internal airtightness is more effective, and the flexible glue pump 20 in which the upper pump 201 and the lower pump 202 are separated is mainly used to facilitate the production and processing of the injection molding.
The connecting piece 203 is arranged between the upper pump body 201 and the lower pump body 202, the connecting piece 203 is positioned on one side of the upper pump body 201 and one side of the lower pump body 202, the upper pump body 201 and the lower pump body 202 are combined and matched through the connecting piece 203, the installation difficulty is reduced, the upper pump body 201, the lower pump body 202, the connecting piece 203 and the switch valve 23 are all integrally formed, the processing procedures are reduced, and the sealing performance between the switch valve 23 and the soft rubber pump body 20 is also improved.
Go up and be equipped with ebonite interior support piece 24 between the pump body 201 and the lower pump body 202, ebonite interior support piece 24 includes baffle 241 and sleeve pipe 242, sleeve pipe 242 sets up in baffle 241 below, and sleeve pipe 242 laminates mutually with the inner wall of the pump body 202 down, first through-hole 243 has been seted up to the corresponding water inlet 21 in sleeve pipe 242 surface, second through-hole 244 has been seted up to the corresponding delivery port 22 of baffle 241, ebonite exterior support piece 25 is located to last pump body 201 surface cover, ebonite exterior support piece 25, go up the pump body 201, ebonite interior support piece 24 and the lower pump body 202 passes through the screw and can dismantle with casing 10 and be connected.
Go up the pump body 201 and all be equipped with lip limit 26 with lower pump body 202 one side that is close to each other, and go up the pump body 201 and all be equipped with lip limit 26 with water inlet 21 one side with the delivery port 22 of lower pump body 202, when the piece 25 cover of ebonite outsourcing was established on last pump body 201 surface, the accessible goes up the lip limit 26 of pump body 201 both sides and carries out spacing fixed to ebonite outsourcing piece 25, and lower pump body 202 also can cooperate fixedly through lip limit 26 and ebonite interior baffle of strutting piece 24, thereby avoid ebonite interior strutting piece 24 to take place the condition of shifting.
The inner wall of the water outlet 22 is provided with a convex ring 27, the convex ring 27 is positioned above the switch valve 23, when the water outlet 22 is connected with an external nozzle, the convex ring 27 plays a role of a sealing ring, the connection sealing property between the water outlet 22 and the nozzle is improved, and the condition of air leakage or water leakage is avoided.
When the push-pull device 30 drives the soft rubber pump body 20 to push up and pull down, in order to prevent the failure of water inlet and outlet caused by the pulling of the whole soft rubber pump body 20, therefore, a hard rubber inner support member 24 is added inside the lower pump body 202, a hard outer support member 25 is sleeved on the surface of the upper pump body 201, the hard inner support member 24 is used for supporting the whole inner wall of the lower pump body 202, and the hard outer support member 25 is used for supporting the outer wall of the upper pump body 201, so that when the push-pull device 30 drives the lower pump body 202 to push up and pull down, the inner walls of the lower pump body 202 and the upper pump body 201 are not pulled and deformed due to the hard rubber inner support member 24 and the hard outer support member 25, and the water inlet 21 and the water outlet 22 are kept in a stable state; when the upper pump body 201 and the lower pump body 202 are packaged, the upper pump body 201 and the lower pump body 202 are respectively connected in a sealing manner through the partition plate 241, so that the air tightness between the upper pump body 201 and the lower pump body 202 is improved, and the water inlet 21 and the water outlet 22 are ensured to be communicated with the inside of the soft rubber pump body 20 through the first through hole 243 and the second through hole 244.
Referring to fig. 2 and 3 again, the push-pull device 30 includes a rotating motor 31, an eccentric gear 32 and a connecting rod 33, the eccentric gear 32 is rotatably connected with the housing 10 through a gear shaft 34, one end of the connecting rod 33 is rotatably connected with the center of the eccentric gear 32, the other end of the connecting rod 33 is fixedly connected with the lower part of the soft rubber pump body 20 through a pin 36, the rotating motor 31 is disposed below the eccentric gear 32, an output shaft of the rotating motor 31 is provided with a motor tooth 35, the motor tooth 35 is engaged with the eccentric gear 32, and the motor is in transmission connection with the eccentric gear 32 through the motor tooth 35.
The rotation of the rotary motor 31 causes the motor teeth 35 to rotate together, the motor teeth 35 and the eccentric gear 32 mesh with each other to cause the eccentric gear 32 to rotate, and the link 33 is driven by the eccentric gear 32 to perform reciprocating motions of pushing up and pulling down.
The casing 10 is provided therein with a motor groove 12, a gear groove 13 and a pump body groove 14, the rotary motor 31 is disposed in the motor groove 12, the eccentric gear 32 is disposed in the gear groove 13, and the soft plastic pump body 20 is disposed in the pump body groove 14. The motor groove 12, the gear groove 13 and the pump body groove 14 are used for limiting and fixing parts in the shell 10 respectively, so that the situation of displacement is avoided, and the difficulty requirement in assembly is reduced.
And casing 10 includes epitheca 101 and inferior valve 102, and epitheca 101 passes through screw fixed connection with inferior valve 102 to people can dismantle casing 10, make things convenient for people to assemble more, also make things convenient for people to maintain the change to the spare part in the casing 10.
The invention provides a pressurizing energy-saving water pump, when in use, a water inlet of a soft rubber pump body is communicated with an external water inlet pipeline, a water outlet of the soft rubber pump body is communicated with an external water outlet pipeline, and under normal conditions, switch valves of the water inlet and the water outlet are both in a closed state, and the interior of the soft rubber pump body is in a sealed state; when the flexible glue pump needs to be used, the push-pull device positioned below the flexible glue pump body drives the flexible glue pump body to pull downwards, and the switch valve of the water inlet is sunken towards the inside of the flexible glue pump body, so that the volume inside the flexible glue pump body is increased in the pull-down deformation process of the flexible glue pump body, the flexible glue pump body forms negative pressure, two flaps at the water inlet are inwards deformed, the switch valve of the water outlet is protruded towards the outer side of the flexible glue pump body, the two flaps at the water outlet are continuously kept in contact with each other to avoid the situation that water is sucked into the flexible glue pump body through the water inlet, and the push-pull device drives the flexible glue pump body to recover so that the water is reserved in the cavity; and then the lower part of the soft rubber pump body is jacked upwards by the push-pull device, the volume of the soft rubber pump body is compressed, the two petals at the water outlet are outwards expanded, and the two petals at the water inlet are inwards sunken, so that the contact and closing state is continuously kept, and water in the soft rubber pump body is sprayed out from the water outlet. Through above-mentioned structure, only need directly carry out fixed connection with the flexible glue pump body with push-and-pull device can, need not reduce the defective rate during the assembly with the help of auxiliary seal device such as other sealing washers, avoid appearing leaking, unable water feeding or the little condition of penetrating power appears.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention, and not for limiting the protection scope of the present invention, although the present invention is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.

Claims (10)

1. A pressure-increasing energy-saving water pump, which is characterized by comprising a shell, a soft rubber pump body and a push-pull device, the soft rubber pump body and the push-pull device are both fixed in the shell, the push-pull device is arranged below the soft rubber pump body, and drives the soft rubber pump body to pull downwards, the surface of the soft rubber pump body is provided with a water inlet and a water outlet which are both communicated with the interior of the soft rubber pump body, and the water inlet and the water outlet are both provided with a switch valve which comprises two flaps which are oppositely arranged, and one side of the valve sheet far away from each other is fixedly connected with the soft rubber pump body, one side of the valve sheet near to each other is contacted and closed, a sealed cavity is formed in the soft rubber pump body through two switch valves, and the switch valve of the water inlet is sunken towards the inside of the soft rubber pump body, and the switch valve of the water outlet is protruded towards the outer side of the soft rubber pump body.
2. A pressurized energy-saving water pump according to claim 1, wherein one side of the housing is provided with a water inlet connecting seat, one end of the water inlet connecting seat is fixed inside the housing, the water inlet connecting seat is communicated with the water inlet, and the other end of the water inlet connecting seat extends out of the housing.
3. The supercharging energy-saving water pump according to claim 1, wherein the soft rubber pump body comprises an upper pump body and a lower pump body, the upper pump body is hermetically connected with the lower pump body, the upper pump body extends out of the interior of the housing, the water outlet is positioned above the upper pump body, and the water inlet is positioned on the side face of the lower pump body.
4. A supercharging energy-saving water pump according to claim 3, wherein a connecting piece is provided between the upper pump body and the lower pump body, and the connecting piece is located on one side of the upper pump body and one side of the lower pump body.
5. The supercharging energy-saving water pump according to claim 4, wherein a ebonite inner support member is arranged between the upper pump body and the lower pump body, the ebonite inner support member comprises a partition plate and a sleeve, the sleeve is arranged below the partition plate, the sleeve is attached to the inner wall of the lower pump body, a first through hole is formed in the surface of the sleeve corresponding to the water inlet, a second through hole is formed in the partition plate corresponding to the water outlet, the ebonite outer support member is sleeved on the surface of the upper pump body, and the ebonite outer support member, the upper pump body, the ebonite inner support member and the lower pump body are detachably connected with the casing through screws.
6. A supercharging energy-saving water pump according to claim 5, wherein the sides of the upper and lower pump bodies adjacent to each other are provided with lips, and the sides of the water outlet and water inlet of the upper and lower pump bodies are provided with lips.
7. A supercharging energy-saving water pump according to claim 6, wherein the inner wall of the water outlet is provided with a convex ring, and the convex ring is positioned above the switch valve.
8. A pressurized energy-saving water pump according to claim 1, wherein the push-pull device comprises a rotary motor, an eccentric gear and a connecting rod, the eccentric gear is rotatably connected with the housing through a gear shaft, one end of the connecting rod is rotatably connected with the center of the eccentric gear, the other end of the connecting rod is fixedly connected with the lower part of the flexible rubber pump body through a pin, the rotary motor is arranged below the eccentric gear, an output shaft of the rotary motor is provided with motor teeth, the motor teeth are meshed with the eccentric gear, and the motor is in transmission connection with the eccentric gear through the motor teeth.
9. The booster energy-saving water pump as claimed in claim 8, wherein the housing has a motor slot, a gear slot and a pump slot, the rotating motor is disposed in the motor slot, the eccentric gear is disposed in the gear slot, and the soft rubber pump is disposed in the pump slot.
10. A pressurized energy-saving water pump according to claim 9, wherein the housing comprises an upper shell and a lower shell, and the upper shell and the lower shell are fixedly connected through screws.
CN202111611331.5A 2021-12-27 2021-12-27 Pressure-boosting energy-saving water pump Active CN114278555B (en)

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CN114278555B CN114278555B (en) 2023-03-24

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US20040209222A1 (en) * 2002-12-31 2004-10-21 Snyder Clifford J. Hand held oral irrigator
JP2011111914A (en) * 2009-11-24 2011-06-09 Silver Kk Pump for supplying detergent
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CN211658399U (en) * 2019-12-30 2020-10-13 广州皓醒湾科技有限公司 Water pumping device of tooth flushing device
CN211648385U (en) * 2020-01-16 2020-10-09 广东蜗品科技有限公司 Water pump for tooth flushing device
CN112196759A (en) * 2020-04-15 2021-01-08 深圳市飞猫电器有限公司 Pulse water pump and tooth washing device
CN212928142U (en) * 2020-06-08 2021-04-09 宁波创为电子科技有限公司 Piston diaphragm pump
CN214145786U (en) * 2020-09-23 2021-09-07 广东荣华智慧科技有限公司 Elastic rubber sleeve type water pump
CN112096590A (en) * 2020-10-12 2020-12-18 郑自顯 Noise-reduction, leak-proof and durable pulse tooth flushing device pump body component
CN113446187A (en) * 2021-07-26 2021-09-28 倍加洁集团股份有限公司 Piston water pump for tooth flushing device

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