CN220791427U - Integrated high-pressure high-flow integrated inflator pump - Google Patents

Integrated high-pressure high-flow integrated inflator pump Download PDF

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Publication number
CN220791427U
CN220791427U CN202322432326.9U CN202322432326U CN220791427U CN 220791427 U CN220791427 U CN 220791427U CN 202322432326 U CN202322432326 U CN 202322432326U CN 220791427 U CN220791427 U CN 220791427U
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China
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flow
air
pressure
pump
channel
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刘力丹
钱晟旻
李辉
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Shanghai Qiwai Culture Technology Co ltd
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Shanghai Qiwai Culture Technology Co ltd
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Abstract

The utility model discloses an integrated high-pressure high-flow inflator pump, which comprises an inflator pump housing, an air outlet, an air inlet, a high-flow pump, a motor, a high-flow air duct, a gear set, a high-pressure pump, a one-way valve and a two-in-one air duct, wherein the high-flow pump and the high-flow air duct are connected through screws or buckles; the motor is transversely arranged below the inner part of the air charging pump shell, is arranged in the high-flow air duct and is communicated with the air inlet; the first output shaft of the motor is connected with the high-flow pump, and the second output shaft is connected with the high-pressure pump through a gear set; the high-pressure pump is vertically arranged below the inner part of the air charging pump shell and is communicated with the two-in-one air flow channel; the high-flow air channel is communicated with the two-in-one air flow channel through a one-way valve; when the high-flow pump and the high-pressure pump work simultaneously, the motor is started, the air is sucked into the air inlet, the air flow provides high-flow inflation for the object to be inflated through the high-flow pump, the high-flow air duct, the one-way valve, the two-in-one air flow channel and the air outlet, and meanwhile, the motor drives the gear set to reduce speed, and provides high-pressure inflation for the object to be inflated through the high-pressure pump, the two-in-one air flow channel and the air outlet.

Description

Integrated high-pressure high-flow integrated inflator pump
Technical Field
The utility model relates to the field of air pumps, in particular to an integrated high-pressure high-flow air pump.
Background
In the prior art, two motors are respectively used for driving the high-flow pump and the high-pressure pump and are connected together through a structure, so that the cost is high, the inflation efficiency is low, only one of the two motors works, and the utilization rate is low.
The high-pressure high-flow inflating machine core adopts a double-air-inlet communicating vessel to be communicated with a fan air supply device and a piston air supply device, wherein the fan air supply device is used for outputting high-flow air to the double-air-inlet communicating vessel, the piston air supply device is used for outputting high-pressure air to the double-air-inlet communicating vessel, and the air is prevented from flowing through under the action of a first one-way valve and a second one-way valve; if the air pressure value of the inflatable product is lower, the fan air supply device is started to output high-flow air to the double-air-inlet communicating vessel so as to fill a large amount of air, the air filling efficiency is improved, when the air pressure value of the inflatable product is higher and the air filling amount of the fan air supply device is greatly reduced, the fan air supply device is closed, and the piston air supply device is started to output high-pressure air to the double-air-inlet communicating vessel until the expected high-pressure value is reached. In the above, it can be seen that both the fan air supply device and the piston air supply device can only work alternatively, and only one of the corresponding two motors can be in operation, so that the inflation efficiency is low and the utilization rate is not high.
The scheme of the utility model is an improvement of the existing inflator pump aiming at the problems.
Disclosure of Invention
In order to overcome the defects in the prior art, the utility model provides an integrated high-pressure high-flow inflator pump, which solves the problems that the inflator pump in the prior art is low in inflation efficiency, only one of two motors works, and the utilization rate is low.
In order to achieve the above object, the technical scheme adopted for solving the technical problems is as follows:
the utility model provides an integrative pump of integrated high pressure high flow, includes pump casing, gas outlet, air inlet, high flow pump, motor, high flow wind channel, gear train, high pressure pump, check valve and two unification air current passageway, wherein:
the high-flow pump is connected with the high-flow air duct through screws or buckles;
the motor is transversely arranged below the inside of the inflating pump shell, is arranged in the high-flow air duct and is communicated with the air inlet;
a first output shaft of the motor is connected with the high-flow pump, and a second output shaft of the motor is connected with the high-pressure pump through the gear set;
the high-pressure pump is vertically arranged below the inside of the inflator pump shell and is communicated with the two-in-one airflow channel;
the high-flow air duct is communicated with the two-in-one air flow channel through the one-way valve;
when the high-flow pump and the high-pressure pump work simultaneously, the motor is started, the air inlet sucks air, the air flow sequentially passes through the high-flow pump, the high-flow air duct, the one-way valve, the two-in-one air flow channel and the air outlet and then provides high-flow inflation for the inflatable object, and meanwhile, the motor drives the gear set to reduce speed and sequentially passes through the high-pressure pump, the two-in-one air flow channel and the air outlet and then provides high-pressure inflation for the inflatable object.
Further, the air pump further comprises a pressure relief valve, wherein the pressure relief valve is arranged at the lower part of the high-flow pump and used for closing the one-way valve when the internal pressure of the inflated object reaches a certain value, so that compressed air generated by the high-flow pump is discharged into the air pump through the pressure relief valve to dissipate heat of the air pump.
Further, the high-pressure pump comprises a cylinder, a piston and a connecting rod, wherein the piston and the connecting rod are arranged in the cylinder, one end of the connecting rod is connected with the gear set, the other end of the connecting rod is connected with the piston, and the connecting rod is driven to reciprocate in the cylinder through rotation of the gear set.
Further, the two-in-one air flow channel comprises a high flow channel and a high pressure channel, the high flow channel is sleeved on the periphery of the high pressure channel, the high flow channel is in one-way conduction with the Gao Liu air channel through the one-way valve, and the high pressure channel is in conduction with the high pressure pump through the air cylinder;
when the high-flow pump and the high-pressure pump work simultaneously, the motor is started, the air inlet sucks air, the air flow sequentially passes through the high-flow pump, the high-flow air duct, the one-way valve, the high-flow channel and the air outlet to provide high-flow inflation for the inflated object, and meanwhile, the motor drives the gear set to reduce speed, and sequentially passes through the high-pressure pump, the high-pressure channel and the air outlet to provide high-pressure inflation for the inflated object.
Preferably, the high-flow channel and the high-pressure channel have the same circle center and are arranged in concentric circles.
Further, still include high-flow pump connecting piece, high-flow air duct first connecting piece and first sealing washer, high-flow pump connecting piece and high-flow air duct first connecting piece pass through screw or buckle and connect, first sealing washer airtight connection in between high-flow pump connecting piece and the high-flow air duct first connecting piece.
Further, the novel high-flow air duct fan comprises a high-flow air duct second connecting piece, a two-in-one air duct first connecting piece and a second sealing ring, wherein the Gao Liu air duct second connecting piece is connected with the two-in-one air duct first connecting piece through a screw or a buckle, and the second sealing ring is hermetically connected between the Gao Liu air duct second connecting piece and the two-in-one air duct first connecting piece.
Further, the air outlet connecting piece, the two-in-one air flow channel second connecting piece and the third sealing ring are further included, the air outlet connecting piece is connected with the two-in-one air flow channel second connecting piece through a screw or a buckle, and the third sealing ring is connected between the air outlet connecting piece and the two-in-one air flow channel second connecting piece in a sealing mode.
Further, the novel air cylinder comprises an air cylinder connecting piece, a second-in-one air flow channel third connecting piece and a fourth sealing ring, wherein the air cylinder connecting piece is connected with the second-in-one air flow channel third connecting piece through a screw or a buckle, and the fourth sealing ring is connected between the air cylinder connecting piece and the second-in-one air flow channel third connecting piece in a sealing mode.
Preferably, the air inlet and the air outlet are positioned on the same side of the inflator pump and are arranged up and down.
Compared with the prior art, the utility model has the following advantages and positive effects due to the adoption of the technical scheme:
1. the high-pressure high-flow integrated inflator pump provided by the utility model has the advantages that the high-pressure high-flow integrated inflator pump is in the same channel, the high-pressure high-flow integrated inflator pump is driven by the same motor and can be rapidly switched, one motor is dual-purpose, the universal inflation effect of a product is realized, the cost and the space are saved, the inflation efficiency is greatly improved, the slurry plate, the tires, the tent and the like can be rapidly inflated, and meanwhile, the problems of long inflation time and inconvenience in operation of a user in the traditional inflation type are solved.
2. The high-pressure high-flow integrated inflator pump provided by the utility model has the advantages that only one motor is used, so that the inflator pump is more compact in internal structure, more reasonable in design, lower in cost and smaller in overall size.
Drawings
In order to more clearly illustrate the technical solution of the embodiments of the present utility model, the drawings that are required to be used in the description of the embodiments will be briefly described below. It is evident that the drawings in the following description are only some embodiments of the utility model and that other drawings may be obtained from these drawings by those skilled in the art without inventive effort. In the accompanying drawings:
FIG. 1 is a schematic diagram of the overall structure of an integrated high pressure, high flow inflator of the present utility model;
FIG. 2 is a cross-sectional view of the overall structure of an integrated high pressure, high flow inflator of the present utility model;
FIG. 3 is an exploded schematic view of the overall structure of an integrated high pressure, high flow inflator of the present utility model.
[ Main symbol description ]
1-an air outlet;
2-air inlet;
3-high flow pump;
4-an electric motor;
5-high flow air duct;
6-gear set;
7-a high pressure pump;
8-a one-way valve;
9-two-in-one airflow channel;
10-a pressure release valve;
11-high flow channels;
12-high pressure channel;
13-high flow pump connection;
14-a high flow duct first connector;
15-a high-flow air duct second connector;
a first connection for a 16-two-in-one airflow channel;
17-an air outlet connection;
an 18-two-in-one airflow channel second connector;
19-cylinder connection;
and a third connecting piece of the 20-two-in-one airflow channel.
Detailed Description
The following description of the embodiments of the present utility model will be made apparent and fully in view of the accompanying drawings, in which some, but not all embodiments of the utility model are shown. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
In the description of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present utility model, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
As shown in fig. 1-3, this embodiment discloses an integrated high-pressure high-flow inflator pump, which comprises an inflator pump housing (not shown), an air outlet 1, an air inlet 2, a high-flow pump 3, a motor 4, a high-flow air duct 5, a gear set 6, a high-pressure pump 7, a one-way valve 8 and a two-in-one airflow channel 9, wherein:
the high-flow pump 3 and the high-flow air duct 5 are connected through screws or buckles;
the motor 4 is transversely arranged below the inside of the air charging pump shell, is arranged in the high-flow air duct 5 and is communicated with the air inlet 2;
a first output shaft of the motor 4 is connected with the high-flow pump 3, and a second output shaft is connected with the high-pressure pump 7 through the gear set 6;
the high-pressure pump 7 is vertically arranged below the inside of the inflator pump shell and is communicated with the two-in-one airflow channel 9;
the high-flow air duct 5 is communicated with the two-in-one air flow channel 9 through the one-way valve 8;
when the high-flow pump 3 and the high-pressure pump 7 work simultaneously, the motor 4 is started, the air inlet 2 sucks air, the air flow sequentially passes through the high-flow pump 3, the high-flow air duct 5, the one-way valve 8, the two-in-one air flow channel 9 and the air outlet 1 to supply high-flow air inflation to the inflatable object, and meanwhile, the motor 4 drives the gear set 6 to reduce speed and sequentially passes through the high-pressure pump 7, the two-in-one air flow channel 9 and the air outlet 1 to supply high-pressure air inflation to the inflatable object.
Further, the inflator pump further comprises a pressure release valve 10, the pressure release valve 10 is disposed at the lower portion of the high-flow pump 3, and is used for closing the one-way valve 8 when the internal pressure of the inflated object reaches a certain value, so that compressed air generated by the high-flow pump 3 is discharged into the inflator pump through the pressure release valve 10 to dissipate heat of the inflator pump.
In this embodiment, the high-pressure pump 7 includes a cylinder (not shown), a piston (not shown) disposed inside the cylinder, and a connecting rod (not shown), wherein one end of the connecting rod is connected to the gear set 6, and the other end of the connecting rod is connected to the piston, so as to drive the connecting rod to reciprocate in the cylinder through rotation of the gear set 6.
Further, the two-in-one airflow channel 9 includes a high-pressure channel 11 and a high-pressure channel 12, the high-pressure channel 11 is sleeved on the periphery of the high-pressure channel 12, the high-pressure channel 11 is in unidirectional conduction with the high-pressure channel 5 through the one-way valve 8, and the high-pressure channel 12 is in conduction with the high-pressure pump 7 through the cylinder. Preferably, the high-flow channel 11 and the high-pressure channel 12 have the same center, and are arranged in concentric circles, so that the space is greatly reduced, and the structure is more compact. In actual operation, the high-pressure channel 12 is only required to be sleeved on the periphery of the high-pressure channel 11.
In a preferred embodiment, the inflator further includes a high-flow pump connecting piece 13, a high-flow air duct first connecting piece 14 and a first sealing ring (not shown), the high-flow pump connecting piece 13 and the high-flow air duct first connecting piece 14 are connected by screws or buckles, and the first sealing ring is hermetically connected between the high-flow pump connecting piece 13 and the high-flow air duct first connecting piece 14, so that the air tightness between the high-flow pump 3 and the high-flow air duct 5 can be well ensured.
Secondly, the inflator pump further comprises a high-flow air duct second connecting piece 15, a two-in-one air flow channel first connecting piece 16 and a second sealing ring (not shown), the Gao Liu air duct second connecting piece 15 and the two-in-one air flow channel first connecting piece 16 are connected through screws or buckles, the second sealing ring is connected between the Gao Liu air duct second connecting piece 15 and the two-in-one air flow channel first connecting piece 16 in a sealing mode, and air tightness between the high-flow air duct 5 and the two-in-one air flow channel 9 can be well guaranteed.
Furthermore, the inflator pump further comprises an air outlet connecting piece 17, a two-in-one air flow channel second connecting piece 18 and a third sealing ring (not shown), the air outlet connecting piece 17 and the two-in-one air flow channel second connecting piece 18 are connected through screws or buckles, and the third sealing ring is connected between the air outlet connecting piece 17 and the two-in-one air flow channel second connecting piece 18 in a sealing manner, so that the air tightness between the air outlet 1 and the two-in-one air flow channel 9 can be well ensured.
Further, the inflator pump further comprises a cylinder connecting piece 19, a second-in-one air flow channel third connecting piece 20 and a fourth sealing ring (not shown), the cylinder connecting piece 19 and the second-in-one air flow channel third connecting piece 20 are connected through screws or buckles, and the fourth sealing ring is connected between the cylinder connecting piece 19 and the second-in-one air flow channel third connecting piece 20 in a sealing manner, so that the air tightness between the cylinder and the second-in-one air flow channel 9 can be well ensured.
Preferably, the air inlet 2 and the air outlet 1 are positioned on the same side of the inflator pump, so that the operation of a user is more convenient, and the air inlet 2 and the air outlet 1 are arranged up and down or left and right. In this embodiment, since the inflator housing has a vertical structure, the air inlet 2 and the air outlet 1 are disposed vertically, and the product structure is more compact and slim.
The specific working principle is as follows:
when the high-flow pump 3 and the high-pressure pump 7 work simultaneously, the motor 4 is started, the air inlet 2 sucks air, the air flow sequentially passes through the high-flow air channel 5, the one-way valve 8, the high-flow air channel 11 and the air outlet 1 in the high-flow pump 3 and the two-in-one air flow channel 9 to supply high-flow air to the inflated object, and meanwhile, the motor 4 drives the gear set 6 to reduce speed and sequentially passes through the high-pressure pump 7, the high-pressure channel 12 in the two-in-one air flow channel 9 and the air outlet 1 to supply high-pressure air to the inflated object.
When the internal pressure of the inflated object reaches a certain value, the one-way valve 8 is closed, so that the compressed air generated by the high-flow pump 3 is discharged into the inflator through the pressure relief valve 10, and then the inflator dissipates heat.
When the single high-pressure mode is used for inflating, the motor 4 is started, the air inlet 2 is used for sucking air, the air flow sequentially passes through the one-way valve 8, the high-pressure channel 11 and the air outlet 1, the port of the high-pressure channel 11 is closed, the air flow reversely dissipates heat for the high-pressure channel 12, meanwhile, the motor 4 drives the gear set 6 to decelerate and sequentially passes through the high-pressure pump 7, the high-pressure channel 12 and the air outlet 1, and finally enters an object to be inflated, and high pressure is provided.
The present utility model is not limited to the above-mentioned embodiments, and any changes or substitutions that can be easily understood by those skilled in the art within the technical scope of the present utility model are intended to be included in the scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the protection scope of the claims.

Claims (10)

1. The utility model provides an integrative pump of integrated high pressure high flow, its characterized in that includes pump housing, gas outlet, air inlet, high flow pump, motor, high flow wind channel, gear train, high pressure pump, check valve and two unification air current passageway, wherein:
the high-flow pump is connected with the high-flow air duct through screws or buckles;
the motor is transversely arranged below the inside of the inflating pump shell, is arranged in the high-flow air duct and is communicated with the air inlet;
a first output shaft of the motor is connected with the high-flow pump, and a second output shaft of the motor is connected with the high-pressure pump through the gear set;
the high-pressure pump is vertically arranged below the inside of the inflator pump shell and is communicated with the two-in-one airflow channel;
the high-flow air duct is communicated with the two-in-one air flow channel through the one-way valve;
when the high-flow pump and the high-pressure pump work simultaneously, the motor is started, the air inlet sucks air, the air flow sequentially passes through the high-flow pump, the high-flow air duct, the one-way valve, the two-in-one air flow channel and the air outlet and then provides high-flow inflation for the inflatable object, and meanwhile, the motor drives the gear set to reduce speed and sequentially passes through the high-pressure pump, the two-in-one air flow channel and the air outlet and then provides high-pressure inflation for the inflatable object.
2. The integrated high-pressure high-flow inflator according to claim 1, further comprising a pressure release valve, wherein the pressure release valve is arranged at the lower part of the high-flow inflator, and is used for closing the one-way valve when the internal pressure of an inflated object reaches a certain value, so that compressed air generated by the high-flow inflator is discharged into the inflator through the pressure release valve to dissipate heat of the inflator.
3. The integrated high-pressure high-flow inflator according to claim 1, wherein the high-pressure pump comprises a cylinder, a piston and a connecting rod, wherein the piston and the connecting rod are arranged in the cylinder, one end of the connecting rod is connected with the gear set, and the other end of the connecting rod is connected with the piston and is used for driving the connecting rod to reciprocate in the cylinder through rotation of the gear set.
4. The integrated high-pressure high-flow inflator according to claim 3, wherein the two-in-one air flow channel comprises a high-flow channel and a high-pressure channel, the high-flow channel is sleeved on the periphery of the high-pressure channel, the high-flow channel is in one-way conduction with the Gao Liu air channel through the one-way valve, and the high-pressure channel is in conduction with the high-pressure pump through the air cylinder;
when the high-flow pump and the high-pressure pump work simultaneously, the motor is started, the air inlet sucks air, the air flow sequentially passes through the high-flow pump, the high-flow air duct, the one-way valve, the high-flow channel and the air outlet to provide high-flow inflation for the inflated object, and meanwhile, the motor drives the gear set to reduce speed, and sequentially passes through the high-pressure pump, the high-pressure channel and the air outlet to provide high-pressure inflation for the inflated object.
5. The integrated high pressure and high flow inflator of claim 4, wherein the high flow channel and the high pressure channel have the same center, and are arranged in concentric circles.
6. The integrated high-pressure high-flow inflator of claim 1, further comprising a high-flow pump connector, a high-flow air duct first connector and a first sealing ring, wherein the high-flow pump connector and the high-flow air duct first connector are connected through screws or buckles, and the first sealing ring is connected between the high-flow pump connector and the high-flow air duct first connector in a sealing manner.
7. The integrated high-pressure high-flow inflator pump of claim 1, further comprising a high-flow air duct second connecting piece, a two-in-one air flow channel first connecting piece and a second sealing ring, wherein the Gao Liu air duct second connecting piece is connected with the two-in-one air flow channel first connecting piece through screws or buckles, and the second sealing ring is hermetically connected between the Gao Liu air duct second connecting piece and the two-in-one air flow channel first connecting piece.
8. The integrated high-pressure high-flow inflator of claim 1, further comprising an air outlet connector, a two-in-one air flow channel second connector and a third sealing ring, wherein the air outlet connector and the two-in-one air flow channel second connector are connected through screws or buckles, and the third sealing ring is hermetically connected between the air outlet connector and the two-in-one air flow channel second connector.
9. The integrated high-pressure high-flow inflator of claim 1, further comprising a cylinder connector, a two-in-one air flow channel third connector and a fourth sealing ring, wherein the cylinder connector and the two-in-one air flow channel third connector are connected through screws or buckles, and the fourth sealing ring is hermetically connected between the cylinder connector and the two-in-one air flow channel third connector.
10. The integrated high pressure high flow inflator of claim 1, wherein the air inlet and the air outlet are located on the same side of the inflator and are disposed above and below.
CN202322432326.9U 2023-09-07 2023-09-07 Integrated high-pressure high-flow integrated inflator pump Active CN220791427U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322432326.9U CN220791427U (en) 2023-09-07 2023-09-07 Integrated high-pressure high-flow integrated inflator pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322432326.9U CN220791427U (en) 2023-09-07 2023-09-07 Integrated high-pressure high-flow integrated inflator pump

Publications (1)

Publication Number Publication Date
CN220791427U true CN220791427U (en) 2024-04-16

Family

ID=90635321

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322432326.9U Active CN220791427U (en) 2023-09-07 2023-09-07 Integrated high-pressure high-flow integrated inflator pump

Country Status (1)

Country Link
CN (1) CN220791427U (en)

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