Multi-waterway intelligent output water pump

文档序号:1212736 发布日期:2020-09-04 浏览:4次 中文

阅读说明:本技术 一种多水路智能输出水泵 (Multi-waterway intelligent output water pump ) 是由 汪长霞 于 2020-06-03 设计创作,主要内容包括:本发明公开一种多水路智能输出水泵,包括第一横板,所述第一横板的顶部固接有箱体,所述Y型管连通于箱体的顶部,所述Y型管的顶部左右两侧管道内壁均间隙配合有球阀,所述球阀的顶部与底部均过盈配合有密封圈,两个所述圆杆分别通过第一密封轴承与Y型管的顶部左右两侧管道内壁转动相连,两个所述圆杆的外侧均固接有转盘。该多水路智能输出水泵,使得Y型管可连接两个管道,提高水泵的输送效率,并可通过球阀,根据使用者的需求,进行单管道连接或双管道连接,使得通过第一弹簧和第二弹簧的弹性形变,可进行缓冲,避免存在水泵进行工作时,会产生震动,会带动连接管进行同步震动,可能会造成连接管与水泵连接产生松动。(The invention discloses a multi-waterway intelligent output water pump which comprises a first transverse plate, wherein a box body is fixedly connected to the top of the first transverse plate, a Y-shaped pipe is communicated with the top of the box body, ball valves are in clearance fit with the inner walls of pipelines on the left side and the right side of the top of the Y-shaped pipe, sealing rings are in interference fit with the top and the bottom of each ball valve, two round rods are respectively and rotatably connected with the inner walls of the pipelines on the left side and the right side of the top of the Y-shaped pipe through first sealing bearings, and rotary tables are fixedly connected to the outer sides of the two round rods. This many waterways intelligence output water pump for two pipelines are connected to Y type pipe, improve the conveying efficiency of water pump, and the accessible ball valve, according to user's demand, carry out single pipe connection or double-pipe connection, make elastic deformation through first spring and second spring, can cushion, avoid having the water pump to carry out the during operation, can produce vibrations, can drive the connecting pipe and shake in step, it is not hard up to probably cause the connecting pipe to be connected production with the water pump.)

1. The utility model provides a many waterways intelligence output water pump, includes first diaphragm (1), the top rigid coupling of first diaphragm (1) has box (2), the right side intercommunication of box (2) has inlet (3), its characterized in that: the top of the box body (2) is provided with a circulating mechanism (4);

the circulation mechanism (4) comprises a Y-shaped pipe (401), a ball valve (402), a sealing ring (403), a first sealing bearing (404), a round rod (405) and a rotary table (406);

y type pipe (401) communicate in the top of box (2), the equal clearance fit of the top left and right sides pipeline inner wall of Y type pipe (401) has ball valve (402), the top and the equal interference fit in bottom of ball valve (402) have sealing washer (403), sealing washer (403) cup joint in the inner wall of Y type pipe (401), two the equal rigid coupling in outside of ball valve (402) has round bar (405), two round bar (405) rotate with the top left and right sides pipeline inner wall of Y type pipe (401) through first sealed bearing (404) respectively and link to each other, two the equal rigid coupling in outside of round bar (405) has carousel (406).

2. The multi-waterway intelligent output water pump of claim 1, wherein: the outer wall of the rotary disc (406) is processed with grains.

3. The multi-waterway intelligent output water pump of claim 1, wherein: flanges are arranged on the top of the pipeline on the left side and the right side of the top of the Y-shaped pipe (401) and the right side of the liquid inlet (3).

4. The multi-waterway intelligent output water pump of claim 1, wherein: a discharge mechanism (5) is arranged on the left side of the top of the first transverse plate (1);

the discharge mechanism (5) comprises a motor (501), a second seal bearing (502) and a turbine wheel (503);

motor (501) rigid coupling is in the top left side of first diaphragm (1), the output shaft of motor (501) passes through second sealed bearing (502) and rotates with the left side of box (2) and links to each other, the inner wall clearance fit of whirlpool wheel (503) and box (2), the left side of whirlpool wheel (503) is in the same place with the output shaft rigid coupling of motor (501).

5. The multi-waterway intelligent output water pump of claim 1, wherein: a first buffer mechanism (6) is arranged at the bottom of the first transverse plate (1);

the first buffer mechanism (6) comprises a first rod body (601), a second rod body (602), a first spring (603) and a second transverse plate (604);

two first body of rod (601) rigid coupling respectively in the bottom left and right sides of first diaphragm (1), two the equal clearance fit of outer wall of the first body of rod (601) has the second body of rod (602), two the bottom rigid coupling of the second body of rod (602) has second diaphragm (604), the inner wall clearance fit of the second body of rod (602) has first spring (603), the top rigid coupling of first spring (603) is in the bottom of the first body of rod (601), the bottom rigid coupling of first spring (603) is in the same place in the inner wall bottom rigid coupling of the second body of rod (602).

6. The multi-waterway intelligent output water pump of claim 5, wherein: the two first rod bodies (601) are distributed in an axial symmetry mode relative to the first transverse plate (1).

7. The multi-waterway intelligent output water pump of claim 5, wherein: the inner sides of the two first rod bodies (601) are respectively provided with a second buffer mechanism (7);

the second buffer mechanism (7) comprises a third rod body (701), a connecting shaft (702), a sliding sleeve (703), a sliding rod (704) and a second spring (705);

two the third body of rod (701) rotates through the inboard of connecting axle (702) with two first bodies of rod (601) respectively and links to each other, two the bottom of the third body of rod (701) all rotates through connecting axle (702) and has linked to each other sliding sleeve (703), two the inner wall of sliding sleeve (703) slides and links to each other slide bar (704), slide bar (704) rigid coupling is in the inboard of second body of rod (602), the outer wall clearance fit of slide bar (704) has second spring (705), the left and right sides of second spring (705) rigid coupling respectively in the inboard of two sliding sleeves (703).

8. The multi-waterway intelligent output water pump of claim 7, wherein: the slide bar (704) is a square slide bar.

9. The use method of a water pump of a multi-waterway intelligent output water pump according to claims 1-8, wherein: the method specifically comprises the following steps:

s1, when using this multi-waterway intelligence output water pump, the user can be according to the user demand, can connect two pipelines to Y type pipe 401, or connect the single pipeline, and when connecting the single pipeline, the user can be with the pipeline of Y type pipe 401 of not connecting, through rotating carousel 406, when carousel 406 atress rotated, carousel 406 can drive round bar 405 and rotate.

S2, round bar 405 drive ball valve 402 block up the Y type pipe 401 that is not connected, and when needs used, the user can switch on external power supply with motor 501 for motor 501 drives turbine wheel 503 and rotates, and then pours the inside water of inlet 3 with being connected external drain pipe connection into Y type pipe 401' S inside, derives, when motor 501 drives turbine wheel 503 and carries water, can produce vibrations.

S3, when vibration is generated, the first rod 601 moves up and down on the inner wall of the second rod 602, and the first spring 603 deforms to absorb the vibration, and when the first rod 601 moves up and down on the inner wall of the second rod 602, the first rod 601 drives the sliding sleeve 703 to move in the opposite direction on the outer wall of the sliding rod 704 through the third rod 701, and further absorbs the vibration through the elastic deformation of the second spring 705.

Technical Field

The invention relates to the technical field of water pumps, in particular to a multi-waterway intelligent output water pump.

Background

The water pump is the machinery that carries liquid or make liquid pressure boost, it gives liquid with the mechanical energy of prime mover or other external energy transfer, make the liquid energy increase, mainly used carries liquid including water, oil, acid-base liquid, emulsion, suspoemulsion and liquid metal etc. although current water pump can realize the transport to water, but when having current water pump to carry out the multichannel transport, need communicate the three-way pipe, carry, waste time and energy, influence the work efficiency's of water transport problem, and there is the water pump to carry out the during operation, can produce vibrations, can drive the connecting pipe and carry out synchronous vibrations, can cause connecting pipe and water pump to be connected the problem that produces not hard up.

Disclosure of Invention

The invention aims to provide a multi-waterway intelligent output water pump, which solves the problems that the prior water pump needs to be communicated with a three-way pipe for conveying when being used for multi-pipeline conveying, the conveying is time-consuming and labor-consuming, and the working efficiency of water conveying is influenced.

In order to achieve the purpose, the invention provides the following technical scheme: a multi-waterway intelligent output water pump comprises a first transverse plate, wherein the top of the first transverse plate is fixedly connected with a box body, the right side of the box body is communicated with a liquid inlet, and the top of the box body is provided with a circulating mechanism;

the circulation mechanism comprises a Y-shaped pipe, a ball valve, a sealing ring, a first sealing bearing, a round rod and a turntable;

y type pipe communicates in the top of box, the equal clearance fit in the top left and right sides pipeline inner wall of Y type pipe has the ball valve, the top and the equal interference fit in bottom of ball valve have the sealing washer, the sealing washer cup joints in the inner wall of Y type pipe, two the equal rigid coupling in the outside of ball valve has the round bar, two the round bar rotates through first sealed bearing and the top left and right sides pipeline inner wall of Y type pipe respectively and links to each other, two the equal rigid coupling in the outside of round bar has the carousel.

Preferably, the outer wall of the rotary disc is processed with grains.

Preferably, flanges are arranged on the top of the pipeline on the left side and the right side of the liquid inlet on the left side and the right side of the top of the Y-shaped pipe.

Preferably, the left side of the top of the first transverse plate is provided with a discharge mechanism;

the discharge mechanism comprises a motor, a second seal bearing and a turbine wheel;

the motor rigid coupling is in the top left side of first diaphragm, the output shaft of motor rotates through the left side of second sealed bearing and box and links to each other, the inner wall clearance fit of whirlpool wheel and box, the left side of whirlpool wheel is in the same place with the output shaft rigid coupling of motor.

Preferably, a first buffer mechanism is arranged at the bottom of the first transverse plate;

the first buffer mechanism comprises a first rod body, a second rod body, a first spring and a second transverse plate;

two the first body of rod rigid coupling respectively in the bottom left and right sides of first diaphragm, two the equal clearance fit of outer wall of the first body of rod has the second body of rod, two the bottom rigid coupling of the second body of rod has the second diaphragm, the inner wall clearance fit of the second body of rod has first spring, the top rigid coupling of first spring in the bottom of the first body of rod, the bottom rigid coupling of first spring is in the same place in the inner wall bottom rigid coupling of the second body of rod.

Preferably, two first rods are distributed around the first transverse plate axis symmetrically.

Preferably, the inner sides of the two first rod bodies are provided with second buffer mechanisms;

the second buffer mechanism comprises a third rod body, a connecting shaft, a sliding sleeve, a sliding rod and a second spring;

two the third body of rod rotates the inboard of linking to each other through the connecting axle with two first bodies of rod respectively, two the bottom of the third body of rod all rotates through the connecting axle and has linked to each other the sliding sleeve, two the inner wall of sliding sleeve slides and has linked to each other there is the slide bar, the slide bar rigid coupling is in the inboard of the second body of rod, the outer wall clearance fit of slide bar has the second spring, the left and right sides of second spring rigid coupling respectively in the inboard of two sliding sleeves.

Preferably, the slide bar is a square slide bar.

A use method of a water pump specifically comprises the following steps:

s1, when using this many waterways intelligence output water pump, the user can be according to the user demand, can be to two pipelines of Y type union coupling, or connect the single pipeline, and when connecting the single pipeline, the user can be with the pipeline of the Y type pipe of not connecting, through rotating the carousel, when the carousel atress rotated, the carousel can drive the round bar and rotate.

S2, the round bar drives the ball valve to block the unconnected Y-shaped pipe, when the ball valve needs to be used, a user can switch on the motor to be connected with an external power supply, so that the motor drives the turbine wheel to rotate, water in the liquid inlet connected with an external water drainage pipe is poured into the inside of the Y-shaped pipe to be guided out, and when the motor drives the turbine wheel to convey the water, the vibration can be generated.

S3, when producing vibrations, the first body of rod carries out elevating movement at the inner wall of the second body of rod to elastic deformation through first spring carries out the shock attenuation, and when the first body of rod carried out elevating movement at the inner wall of the second body of rod, the first body of rod drove the sliding sleeve through the third body of rod and carries out the motion in opposite directions at the outer wall of slide bar, and then through the elastic deformation of second spring, carries out further shock attenuation.

Compared with the prior art, the invention has the beneficial effects that:

the invention has scientific and reasonable structure and safe and convenient use.

This many waterways intelligence output water pump through the cooperation between Y type pipe, ball valve, sealing washer, first sealed bearing, round bar and the carousel for two pipelines are connected to Y type pipe, improve the conveying efficiency of water pump, and accessible ball valve carries out single pipe connection or double-pipe connection according to user's demand.

This many waterways intelligence output water pump through the cooperation between first spring, second spring, sliding sleeve, slide bar, connecting axle and the first body of rod for elastic deformation through first spring and second spring can cushion, avoids having the water pump to carry out the during operation, can produce vibrations, can drive the connecting pipe and shake in step, may cause the connecting pipe to be connected with the water pump and produce not hard up.

This many waterways intelligence output water pump, when connecting the single pipeline, the user can be with the pipeline of the Y type pipe of not connecting, through rotating the carousel, when the carousel atress rotates, the carousel can drive the round bar and rotate, the round bar drives the ball valve and blocks up the Y type pipe of not connecting, when needing to use, the user can put through external power supply with the motor, make the motor drive impeller and rotate, and then will pour into the inside of Y type pipe with the inside water of the inlet of being connected external drain pipe connection, derive, realize deriving.

This many waterways intelligence output water pump, when the motor drives the turbine leaf and carries water, can produce vibrations, when producing vibrations, the first body of rod carries out elevating movement at the inner wall of the second body of rod to elastic deformation through first spring carries out the shock attenuation, realizes the shock attenuation.

This many waterways intelligence output water pump, when carrying out elevating movement at the inner wall of the second body of rod through the first body of rod, the first body of rod drives the sliding sleeve through the third body of rod and carries out the motion in opposite directions at the outer wall of slide bar, and then through the elastic deformation of second spring, carries out further shock attenuation, realizes the shock attenuation.

Drawings

FIG. 1 is a schematic diagram of the connection relationship of the present invention;

FIG. 2 is a schematic structural view of the box, the Y-tube and the ball valve in FIG. 1;

FIG. 3 is a schematic structural view of the ball valve, the round bar and the turntable of FIG. 1;

FIG. 4 is a schematic view of the first rod, the second rod and the third rod of FIG. 1;

FIG. 5 is a schematic structural view of the first cross plate, the first rod, and the second rod of FIG. 1;

fig. 6 is a schematic structural view of the third rod, the sliding rod and the second spring in fig. 1.

In the figure: 1. the device comprises a first transverse plate, a second transverse plate, a box body, a third transverse plate, a liquid inlet, a third transverse plate, a liquid circulating mechanism, a third transverse plate, a fourth transverse plate, a fifth transverse plate, a sixth transverse plate, a fifth transverse plate.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Referring to fig. 1-6, the present invention provides a technical solution:

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