CN218235384U - Vacuum pump capable of self-water circulation and rapid heat dissipation - Google Patents

Vacuum pump capable of self-water circulation and rapid heat dissipation Download PDF

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Publication number
CN218235384U
CN218235384U CN202222620131.2U CN202222620131U CN218235384U CN 218235384 U CN218235384 U CN 218235384U CN 202222620131 U CN202222620131 U CN 202222620131U CN 218235384 U CN218235384 U CN 218235384U
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pipe
driving motor
transmission
vacuum pump
heat dissipation
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CN202222620131.2U
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陶莲峰
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Yancheng Jinyang Water Supply Equipment Co ltd
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Yancheng Jinyang Water Supply Equipment Co ltd
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Abstract

The utility model discloses a can self hydrologic cycle quick radiating vacuum pump, including driving motor, the pump body and even axle, the pump body is installed to driving motor's one end, the one end of the pump body is rotated and is installed even axle, the one end of even axle is connected with drive assembly, driving motor's outside fixed mounting has the mount, the one end fixed mounting of mount has the transmission storehouse, the one end in transmission storehouse is rotated and is installed the dwang, belongs to vacuum pump technical field. The utility model has the advantages of being scientific and reasonable in structure, through the hydrologic cycle heat dissipation mechanism that sets up, the moisture circulation of being convenient for flows and cools down to driving motor, has reduced the moisture consumption when this vacuum pump uses, has also guaranteed the effect of the heat dissipation cooling when this vacuum pump uses, and through the adjustment installation mechanism who sets up, the position of the installation sideboard of being convenient for adjustment is installed this vacuum pump, has increased the installation adjustability when this vacuum pump uses.

Description

Vacuum pump capable of self-water circulation quick heat radiation
Technical Field
The utility model relates to a vacuum pump technical field specifically is can self hydrologic cycle quick radiating vacuum pump.
Background
The vacuum pump has extensive application in trades such as electric power, oil, medicine, food and environmental protection, the vacuum pump divide into mechanical vacuum pump, jet vacuum pump and absorption vacuum pump according to its different roughly of structure, wherein mechanical vacuum pump is more common, it has simple structure, use and maintenance cost advantage such as lower, all be applicable in most fields, in the chinese patent of patent No. 201921974299.5, specifically mention a vacuum pump system, through set up the noise reduction that noise reduction structure made the outlet duct department produced in outlet duct department at the outlet duct department, make the vacuum pump during operation more quiet, it is less to the environmental impact. In addition, through set up the check valve on the connecting pipe that admits air, can reduce the gas leakage on the connecting line to make the vacuum hold time longer, reduce the operating time and the number of times of opening and shutting down of vacuum pump, reduce the energy consumption and reduce the vacuum pump wearing and tearing increase of service life.
However, when the vacuum pump system is used, the vacuum pump system cannot be well cooled, and an external water source is required to be connected for water-cooling heat exchange when the vacuum pump system is cooled, so that the vacuum heat dissipation efficiency and the heat dissipation effect are easily influenced, and the existing use requirements are difficult to meet.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a can self hydrologic cycle quick radiating vacuum pump to can't carry out fine heat dissipation cooling to the vacuum pump that proposes in solving above-mentioned background art, and need connect outside water source and carry out the water-cooling heat transfer when cooling down dispels the heat to the vacuum, consequently influence vacuum radiating efficiency and radiating effect easily, be difficult to satisfy current user demand's problem.
In order to solve the technical problem, the utility model provides a following technical scheme: the vacuum pump capable of realizing self water circulation quick heat dissipation comprises a driving motor, a pump body and a connecting shaft, wherein the pump body is installed at one end of the driving motor, the connecting shaft is installed at one end of the pump body in a rotating mode, and a water circulation heat dissipation mechanism is installed on the outer sides of the driving motor and the pump body and at least comprises a transmission bin, a rotating rod, a spiral blade, a water storage bin, a condensation pipe and a clip-shaped heat exchange pipe;
a transmission bin is arranged below the driving motor, a rotating rod is arranged at one end of the transmission bin, a spiral blade is arranged at one end of the rotating rod, a water storage bin is arranged below the driving motor, condensing tubes are uniformly arranged on the inner wall of the water storage bin, and a zigzag heat exchange tube is arranged inside the driving motor;
an adjusting and mounting mechanism is mounted on the outer side of the driving motor and at least comprises a supporting frame, a fixing plate, a sliding rod and a mounting side plate;
the supporting frames are symmetrically arranged on the outer side of the driving motor, the fixing plates are arranged on the inner sides of the supporting frames, sliding rods are evenly arranged at two ends of each fixing plate, and an installation side plate is arranged at one end of each sliding rod.
Preferably, the water circulation heat dissipation mechanism comprises a transmission assembly, a fixing frame, a transmission bin, a rotating rod, a spiral blade, a water feeding pipe, a return pipe, a water storage bin, a condensation pipe, a transmission pipe and a square heat exchange pipe;
even the one end of axle is connected with drive assembly, driving motor's outside fixed mounting has the mount, the one end fixed mounting of mount has the transmission storehouse, the one end in transmission storehouse is rotated and is installed the dwang, the one end of dwang is located transmission storehouse internal position department fixedly connected with spiral leaf, the one end fixedly connected with flow pipe in transmission storehouse, the outside fixedly connected with back flow in transmission storehouse, driving motor's bottom fixed mounting has the water storage storehouse, the even fixed mounting in inner wall in water storage storehouse has the condenser pipe, the top fixedly connected with transmission pipe in water storage storehouse, the shape heat exchange tube has been seted up back to driving motor's inside.
Preferably, the other end of the rotating rod is connected with the transmission assembly, and the other end of the water delivery pipe is fixedly connected with one end of the water storage bin.
Preferably, the other end of the return pipe and the other end of the transmission pipe are fixedly connected with the square-shaped heat exchange pipe, and the transmission bin, the water feeding pipe, the return pipe, the water storage bin, the transmission pipe and the square-shaped heat exchange pipe are communicated with each other.
Preferably, the adjusting and mounting mechanism comprises a support frame, a reinforcing frame, a fixing plate, a sliding chute, a sliding rod, a fixing hole, a fixing rod and a mounting side plate;
the utility model discloses a fixing device for fixing a vehicle, including driving motor, fixedly connected with support frame, two fixedly connected with anchor strut between the support frame, the bottom fixedly connected with fixed plate of anchor strut, the spout has evenly been seted up to the one end of fixed plate, the inside slidable mounting of spout has the slide bar, the fixed orifices has evenly been seted up to the one end of slide bar, the one end of support frame corresponds the embedding of fixed orifices position department and installs the dead lever, one side the one end fixed connection of the other end of slide bar through installing the sideboard.
Preferably, the bottom end faces of the fixed plate and the supporting frame are located on the same horizontal plane, and mounting holes are symmetrically formed in the top end of the mounting side plate.
Compared with the prior art, the utility model discloses the beneficial effect who reaches is:
1. through the hydrologic cycle heat dissipation mechanism that sets up, can cool down in transmitting the moisture transmission in the transfer tube to the water storage storehouse, moisture after the cooling then can transmit and carry out the heat transfer with driving motor in the heat transfer pipe of returning the shape, the moisture circulation of being convenient for flows and cools down driving motor, need not input external moisture again, has reduced the moisture consumption when this vacuum pump uses, has also guaranteed the effect of the heat dissipation cooling when this vacuum pump uses.
2. Through the adjustment installation mechanism who sets up, can remove the slide bar along the spout, adjust the position of installation sideboard, fix the relative position of slide bar and support frame again, the position of the installation sideboard of being convenient for adjust is installed this vacuum pump, has increased the installation adjustability when this vacuum pump uses.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention. In the drawings:
fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a schematic structural view of the water circulation heat dissipation mechanism of the present invention;
FIG. 3 is a schematic structural diagram of the adjusting and mounting mechanism of the present invention;
in the figure: 1. a drive motor; 2. a pump body; 3. a connecting shaft;
4. a water circulation heat dissipation mechanism; 401. a transmission assembly; 402. a fixed mount; 403. a transport bin; 404. rotating the rod; 405. helical leaves; 406. a water supply pipe; 407. a return pipe; 408. a water storage bin; 409. a condenser tube; 410. a conveying pipe; 411. a heat exchange pipe in a shape of a Chinese character 'hui';
5. adjusting the installation mechanism; 501. a support frame; 502. a reinforcing frame; 503. a fixing plate; 504. a chute; 505. a slide bar; 506. a fixing hole; 507. fixing the rod; 508. and (5) installing the side plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: a vacuum pump capable of realizing self water circulation quick heat dissipation comprises a driving motor 1, a pump body 2 and a connecting shaft 3, wherein the pump body 2 is installed at one end of the driving motor 1, the connecting shaft 3 is installed at one end of the pump body 2 in a rotating mode, a water circulation heat dissipation mechanism 4 is installed on the outer sides of the driving motor 1 and the pump body 2, and the water circulation heat dissipation mechanism 4 comprises a transmission assembly 401, a fixing frame 402, a transmission bin 403, a rotating rod 404, a spiral blade 405, a water feeding pipe 406, a return pipe 407, a water storage bin 408, a condensation pipe 409, a transmission pipe 410 and a clip-shaped heat exchange pipe 411;
one end of the connecting shaft 3 is connected with a transmission assembly 401, a fixed mount 402 is fixedly installed on the outer side of the driving motor 1, a transmission bin 403 is fixedly installed on one end of the fixed mount 402, a rotating rod 404 is rotatably installed on one end of the transmission bin 403, a spiral blade 405 is fixedly connected to one end of the rotating rod 404, a water supply pipe 406 is fixedly connected to one end of the transmission bin 403, a return pipe 407 is fixedly connected to the outer side of the transmission bin 403, a water storage bin 408 is fixedly installed at the bottom end of the driving motor 1, a condensing pipe 409 is uniformly and fixedly installed on the inner wall of the water storage bin 408, a transmission pipe 410 is fixedly connected to the top end of the water storage bin 408, a square-shaped heat exchange pipe 411 is formed inside the driving motor 1, the other end of the rotating rod 404 is connected with the transmission assembly 401, the other end of the water supply pipe 406 is fixedly connected with one end of the water storage bin 408, the transmission assembly 401 is convenient for driving the rotating rod 404 to rotate when the connecting shaft 3 rotates, the other end of the return pipe 407 and the other end of the transmission pipe 410 are fixedly connected with the square-shaped heat exchange pipe 411, the transmission bin 403, the water supply pipe 406, the return pipe 407, the return pipe 406, the return pipe 408 is convenient for water storage bin, the internal of the internal circulation heat exchange pipe 408 and the heat exchange pipe 408.
An adjusting and installing mechanism 5 is installed on the outer side of the driving motor 1, and the adjusting and installing mechanism 5 comprises a supporting frame 501, a reinforcing frame 502, a fixing plate 503, a sliding groove 504, a sliding rod 505, a fixing hole 506, a fixing rod 507 and an installing side plate 508;
driving motor 1's outside symmetry fixedly connected with support frame 501, fixedly connected with adds stationary barrier 502 between two support frames 501, the bottom fixedly connected with fixed plate 503 that adds stationary barrier 502, spout 504 has evenly been seted up to the one end of fixed plate 503, the inside slidable mounting of spout 504 has slide bar 505, fixed orifices 506 has evenly been seted up to the one end of slide bar 505, the one end of support frame 501 corresponds the embedding of fixed orifices 506 position department and installs dead lever 507, the other end of one side slide bar 505 is through the one end fixed connection of installation sideboard 508, the bottom face of fixed plate 503 and support frame 501 is located same horizontal plane, the mounting hole has been seted up to the top symmetry of installation sideboard 508, be convenient for use bolt and mounting hole to install installation sideboard 508 fixedly.
The utility model discloses a theory of operation: when the vacuum pump capable of rapidly dissipating heat through self water circulation is used, the connecting shaft 3 rotates to drive the rotating rod 404 and the spiral blade 405 to rotate through the transmission assembly 401, when the spiral blade 405 rotates, moisture in the transmission bin 403 can be transmitted into the water storage bin 408 through the water delivery pipe 406, the moisture in the water storage bin 408 can be cooled by combining the operation of the condensation pipe 409, the cooled moisture can be transmitted into the square heat exchange pipe 411 through the transmission pipe 410 to exchange heat with the driving motor 1, and the moisture in the square heat exchange pipe 411 can flow back into the transmission bin 403 through the return pipe 407, so that the driving motor 1 can be cooled through the circulating flow of the moisture, external moisture does not need to be input, the moisture consumption when the vacuum pump is used is reduced, and the heat dissipation and cooling effects when the vacuum pump is used are also ensured;
when the vacuum pump capable of realizing self water circulation and rapid heat dissipation is used, the support frame 501 and the fixing plate 503 can be placed on the ground, then the sliding rod 505 is moved along the sliding groove 504, so that the position of the installation side plate 508 is adjusted, the fixing rod 507 is placed in the fixing hole 506, the relative position of the sliding rod 505 and the support frame 501 is fixed, the position of the installation side plate 508 is adjusted, the vacuum pump is installed, and the installation adjustability of the vacuum pump during use is improved.
It should be noted that, in this document, relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. But quick radiating vacuum pump of self hydrologic cycle, including driving motor (1), the pump body (2) and even axle (3), the pump body (2) are installed to the one end of driving motor (1), the one end of the pump body (2) is rotated and is installed even axle (3), its characterized in that: the water circulation heat dissipation device is characterized in that a water circulation heat dissipation mechanism (4) is installed on the outer sides of the driving motor (1) and the pump body (2), and the water circulation heat dissipation mechanism (4) at least comprises a transmission bin (403), a rotating rod (404), a spiral blade (405), a water storage bin (408), a condensation pipe (409) and a clip-shaped heat exchange pipe (411);
a transmission bin (403) is arranged below the driving motor (1), a rotating rod (404) is arranged at one end of the transmission bin (403), a spiral blade (405) is arranged at one end of the rotating rod (404), a water storage bin (408) is arranged below the driving motor (1), condensation pipes (409) are uniformly arranged on the inner wall of the water storage bin (408), and a square-shaped heat exchange pipe (411) is arranged inside the driving motor (1);
an adjusting and installing mechanism (5) is installed on the outer side of the driving motor (1), and the adjusting and installing mechanism (5) at least comprises a supporting frame (501), a fixing plate (503), a sliding rod (505) and an installing side plate (508);
the outer side of the driving motor (1) is symmetrically provided with a support frame (501), the inner side of the support frame (501) is provided with a fixing plate (503), two ends of the fixing plate (503) are uniformly provided with sliding rods (505), and one end of each sliding rod (505) is provided with an installation side plate (508).
2. The vacuum pump capable of fast heat dissipation by self water circulation as claimed in claim 1, wherein: the water circulation heat dissipation mechanism (4) comprises a transmission assembly (401), a fixed frame (402), a transmission bin (403), a rotating rod (404), a spiral blade (405), a water feeding pipe (406), a return pipe (407), a water storage bin (408), a condensation pipe (409), a transmission pipe (410) and a clip-shaped heat exchange pipe (411);
the one end of even axle (3) is connected with drive assembly (401), the outside fixed mounting of driving motor (1) has mount (402), the one end fixed mounting of mount (402) has transmission storehouse (403), the one end of transmission storehouse (403) is rotated and is installed dwang (404), the one end of dwang (404) is located transmission storehouse (403) internal position department fixedly connected with spiral leaf (405), the one end fixedly connected with delivery pipe (406) of transmission storehouse (403), the outside fixedly connected with back flow (407) of transmission storehouse (403), the bottom fixed mounting of driving motor (1) has water storage storehouse (408), the even fixed mounting of inner wall of water storage storehouse (408) has condenser pipe (409), the top fixedly connected with transmission pipe (410) of water storage storehouse (408), shape heat exchange tube (411) has been seted up back to the inside of driving motor (1).
3. The vacuum pump capable of fast heat dissipation by self water circulation as claimed in claim 2, wherein: the other end of the rotating rod (404) is connected with the transmission component (401), and the other end of the water delivery pipe (406) is fixedly connected with one end of the water storage bin (408).
4. The vacuum pump capable of dissipating heat rapidly by self water circulation as claimed in claim 2, wherein: the other end of the return pipe (407) and the other end of the transmission pipe (410) are fixedly connected with the square-shaped heat exchange pipe (411), and the transmission bin (403), the water feeding pipe (406), the return pipe (407), the water storage bin (408), the transmission pipe (410) and the square-shaped heat exchange pipe (411) are communicated with each other.
5. The vacuum pump capable of dissipating heat rapidly by self water circulation as claimed in claim 1, wherein: the adjusting and mounting mechanism (5) comprises a support frame (501), a reinforcing frame (502), a fixing plate (503), a sliding groove (504), a sliding rod (505), a fixing hole (506), a fixing rod (507) and a mounting side plate (508);
the utility model discloses a fixed link (507) is installed in the embedding of the one end of support frame (501) corresponding fixed orifices (506) position department, one side the other end of slide bar (505) passes through the one end fixed connection of installation sideboard (508) fixed connection support frame (501), two fixedly connected with adds stationary barrier (502) between support frame (501), the bottom fixedly connected with fixed plate (503) of adding stationary barrier (502), spout (504) have evenly been seted up to the one end of fixed plate (503), the inside slidable mounting of spout (504) has slide bar (505), fixed orifices (506) have evenly been seted up to the one end of slide bar (505), the one end of support frame (501) corresponds fixed orifices (506) position department, and one side the other end of slide bar (505) passes through the one end fixed connection of installation sideboard (508).
6. The vacuum pump capable of fast heat dissipation by self water circulation as claimed in claim 5, wherein: the bottom end faces of the fixed plate (503) and the supporting frame (501) are located on the same horizontal plane, and mounting holes are symmetrically formed in the top end of the mounting side plate (508).
CN202222620131.2U 2022-10-08 2022-10-08 Vacuum pump capable of self-water circulation and rapid heat dissipation Active CN218235384U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222620131.2U CN218235384U (en) 2022-10-08 2022-10-08 Vacuum pump capable of self-water circulation and rapid heat dissipation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222620131.2U CN218235384U (en) 2022-10-08 2022-10-08 Vacuum pump capable of self-water circulation and rapid heat dissipation

Publications (1)

Publication Number Publication Date
CN218235384U true CN218235384U (en) 2023-01-06

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ID=84667880

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222620131.2U Active CN218235384U (en) 2022-10-08 2022-10-08 Vacuum pump capable of self-water circulation and rapid heat dissipation

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CN (1) CN218235384U (en)

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