CN120222707B - A three-phase asynchronous motor with rapid cooling function - Google Patents

A three-phase asynchronous motor with rapid cooling function

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Publication number
CN120222707B
CN120222707B CN202510367037.6A CN202510367037A CN120222707B CN 120222707 B CN120222707 B CN 120222707B CN 202510367037 A CN202510367037 A CN 202510367037A CN 120222707 B CN120222707 B CN 120222707B
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CN
China
Prior art keywords
face
phase asynchronous
asynchronous motor
rod
fixedly connected
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Application number
CN202510367037.6A
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Chinese (zh)
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CN120222707A (en
Inventor
王志刚
李嘉豪
刘德康
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Peng Lin
Original Assignee
Shenzhen Jufeng Precision Machinery Co ltd
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Priority to CN202510367037.6A priority Critical patent/CN120222707B/en
Publication of CN120222707A publication Critical patent/CN120222707A/en
Application granted granted Critical
Publication of CN120222707B publication Critical patent/CN120222707B/en
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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K9/00Arrangements for cooling or ventilating
    • H02K9/02Arrangements for cooling or ventilating by ambient air flowing through the machine
    • H02K9/04Arrangements for cooling or ventilating by ambient air flowing through the machine having means for generating a flow of cooling medium
    • H02K9/06Arrangements for cooling or ventilating by ambient air flowing through the machine having means for generating a flow of cooling medium with fans or impellers driven by the machine shaft
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K17/00Asynchronous induction motors; Asynchronous induction generators
    • H02K17/02Asynchronous induction motors
    • H02K17/12Asynchronous induction motors for multi-phase current
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K5/00Casings; Enclosures; Supports
    • H02K5/04Casings or enclosures characterised by the shape, form or construction thereof
    • H02K5/20Casings or enclosures characterised by the shape, form or construction thereof with channels or ducts for flow of cooling medium
    • H02K5/207Casings or enclosures characterised by the shape, form or construction thereof with channels or ducts for flow of cooling medium with openings in the casing specially adapted for ambient air
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K9/00Arrangements for cooling or ventilating
    • H02K9/22Arrangements for cooling or ventilating by solid heat conducting material embedded in, or arranged in contact with, the stator or rotor, e.g. heat bridges

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Motor Or Generator Cooling System (AREA)

Abstract

The invention relates to the technical field of three-phase asynchronous motors, and discloses a three-phase asynchronous motor with a rapid cooling function, which comprises a three-phase asynchronous motor body, a base positioned below the three-phase asynchronous motor body, a protective frame fixedly connected to the top surface of the base, wherein the three-phase asynchronous motor body is positioned in the protective frame, a through groove is formed in the right side surface of the protective frame in a penetrating way, the right end surface of an output rod of the three-phase asynchronous motor body extends to the right side of the protective frame in a penetrating way through the right side surface and the inner wall of the through groove of the protective frame, and a cooling assembly is arranged in the protective frame. Through cooling module, utilize three-phase asynchronous motor body during operation to drive the blade and rotate to increase the air flow rate in the protection frame, and then play the cooling effect to the three-phase asynchronous motor body in the protection frame, utilize the ventilation pipe to carry the cooling tank with the heat in the protection frame simultaneously.

Description

Three-phase asynchronous motor with rapid cooling function
Technical Field
The invention relates to the technical field of three-phase asynchronous motors, in particular to a three-phase asynchronous motor with a rapid cooling function.
Background
Three-phase asynchronous motor ‌ is an induction motor which is powered by simultaneously switching in 380V three-phase alternating current (120 degrees out of phase). The rotor and the stator rotate in the same direction and at different speeds, and the slip exists, so that the motor is called a three-phase asynchronous motor. The three-phase asynchronous motor mainly comprises a stator and a rotor. The stator is a stationary part and mainly comprises a stator core and a stator winding, and the rotor is a rotating part and comprises a rotating shaft, a rotor core, a rotor bracket, a rotor winding and the like. In addition, the motor also comprises a machine base, an end cover, a bearing, a fan and other parts.
According to the three-phase asynchronous motor with the rapid cooling function, which is disclosed by Chinese patent publication No. CN216530969U, the motor comprises a hood, a bracket and a junction box, one end of the hood is provided with a net cover through bolts, the inner side of the net cover is welded with an air deflector, the inner side of the hood is provided with a stator, the inner side of the stator is provided with a rotor, one end of the rotor is provided with a main shaft, the other end of the rotor is provided with a rotating shaft, the outer sides of the main shaft and the rotating shaft are respectively sleeved with a bearing, and the outer sides of the bearings are sleeved with a clamping cover.
When the motor works, the device effectively ventilates the inner side and the outer side of the stator, so that heat generated by coils in the stator can be quickly dissipated outwards, but the conventional device also has the following problems that a large amount of heat energy is generated when the traditional three-phase asynchronous motor operates at high load, and when the temperature around the three-phase asynchronous motor is higher, the efficient heat dissipation of the three-phase asynchronous motor is inconvenient, and the line burning of the three-phase asynchronous motor and the damage and rejection of the three-phase asynchronous motor are easy to cause. Therefore, a three-phase asynchronous motor having a rapid cooling function is proposed.
Disclosure of Invention
The invention aims to provide a three-phase asynchronous motor with a rapid cooling function so as to solve the problems in the background art.
In order to achieve the aim, the invention provides the technical scheme that the three-phase asynchronous motor with the rapid cooling function comprises a three-phase asynchronous motor body;
the base is positioned below the three-phase asynchronous motor body, and the inner wall of the three-phase asynchronous motor body is in threaded connection with the inner wall of the base through bolts;
the three-phase asynchronous motor body is positioned in the protective frame, the right side surface of the protective frame is penetrated and provided with a through groove, the right end surface of an output rod of the three-phase asynchronous motor body penetrates the right side surface of the interior of the protective frame and the inner wall of the through groove and extends to the right side of the protective frame, and a cooling assembly is arranged in the protective frame;
And a mixing assembly is arranged above the protective frame.
Preferably, the cooling module is including being located the inside pivot and the blade of guard frame, pivot surface and three-phase asynchronous motor body output pole surface all fixed cover are equipped with the belt pulley, two belt pulley surface transmission is connected, pivot right-hand member face passes through the bearing frame and is connected with the inside right flank rotation of guard frame, pivot left end face and blade right flank fixed connection, the vent has been seted up in guard frame right flank link up, the blade left side is provided with the ventilation pipe, guard frame top surface fixedly connected with cooling box, ventilation pipe upside right-hand member face is fixed to run through guard frame inside top surface and cooling box left surface and extend to the cooling box inside, the cooling box openly articulates there is the chamber door, the cooling box top is provided with the interpolation pipe, it runs through cooling box top surface to extend to the cooling box inside to add the pipe right side to add pipe right side fixedly, the inside right flank of cooling box is run through to the outlet duct right side fixedly.
Preferably, the mixing assembly comprises a rotating motor above the protection frame, a worm and a support plate, the left side surface of the rotating motor and the left side surface of the support plate are fixedly connected with the right side surface of the cooling box, the front end surface of the output rod of the rotating motor is fixedly connected with the rear end surface of the worm, the front end surface of the worm penetrates through the rear side surface of the support plate and extends to the front side of the support plate, a first rotating rod and a second rotating rod are arranged below the worm, the surface of the worm is rotationally connected with the inner wall of the support plate through a bearing seat, the first rotating rod and the second rotating rod are symmetrically arranged, worm wheels are fixedly sleeved on the surface of the first rotating rod and the surface of the second rotating rod, the left end surface of the first rotating rod and the left end surface of the second rotating rod are meshed with the side surface of the worm, the left end surface of the first rotating rod and the left end surface of the second rotating rod penetrate through the right side surface of the cooling box and extend to the inside the cooling box, the first rotating rod surface and the second rotating rod are rotationally connected with the inner wall of the cooling box through a bearing seat respectively, and the second stirring rod is fixedly connected with the surface of the first stirring rod.
Preferably, the inner wall of the ventilation opening is fixedly connected with a filter screen plate, the left end face of the air outlet pipe is fixedly connected with a filter screen, the filter screen plate is used for blocking dust and impurities from entering the protection frame, and solid matters generated in the cooling box on the surface of the filter screen enter the air outlet pipe.
Preferably, the ventilation pipe is arranged as a C-shaped pipe, and the right end face of the lower side of the ventilation pipe is fixedly connected with a wind collecting cover which is convenient for heat in the protection frame to enter the ventilation pipe.
Preferably, the ventilation pipe right side is provided with first ball, equal fixedly connected with connecting plate in front of the first ball, the connecting plate left side is provided with first slide bar, first slide bar right-hand member face slides and runs through connecting plate left surface and extend to the connecting plate right side, terminal surface is controlled with cooling box inside left and right sides fixed connection respectively about the first slide bar, first slide bar fixed surface cover is equipped with first spring, terminal surface is controlled with connecting plate right side and cooling box inside right side fixed connection respectively about the first spring, first ball right side fixedly connected with push rod, push rod right side face slides and runs through adding pipe left surface and extend to adding pipe inside, first slide bar improves the stability that the connecting plate removed.
Preferably, the inside side fixedly connected with baffle of interpolation pipe, the through-hole has been seted up in the baffle top surface link up, the baffle top is provided with dog, second ball and second slide bar, dog bottom surface and baffle top surface sliding connection, the dog is located the through-hole top, dog top surface and second ball bottom surface fixed connection, the second ball is located the push rod right side, utilizes the push rod to remove and can promote the second ball.
Preferably, the right side surface of the second ball is fixedly connected with the left end surface of the second slide rod, the right end surface of the second slide rod penetrates through the right side surface inside the adding pipe in a sliding mode to extend to the right side of the adding pipe, a second spring is fixedly sleeved on the surface of the second slide rod, the left end surface and the right end surface of the second spring are fixedly connected with the right side surface of the second ball and the right side surface inside the adding pipe respectively, and the second spring and the second slide rod are convenient for the second ball to recover to the initial position, so that the through hole is blocked.
Preferably, the left side face of the stop block is fixedly connected with a positioning rod, the left end face of the positioning rod is in contact with the left side face inside the adding pipe, and the positioning rod is convenient for the stop block to be located right above the through hole.
Preferably, the first stirring rod and the second stirring rod are both positioned inside the cooling tank, the first stirring rod and the second stirring rod are arranged in a left-right staggered mode, and the first stirring rod and the second stirring rod which are arranged in a staggered mode are convenient to mix ammonium chloride powder and barium hydroxide octahydrate powder in the cooling tank, so that gas cooling in the cooling tank is increased.
Compared with the prior art, the invention has the beneficial effects that:
1. According to the three-phase asynchronous motor with the rapid cooling function, through the cooling component, the blades are driven to rotate when the three-phase asynchronous motor body works, so that the air flow speed in the protective frame is increased, the three-phase asynchronous motor body in the protective frame is further cooled, meanwhile, the ventilation pipe is used for conveying heat in the protective frame to the cooling box, the temperature of the surrounding environment of the three-phase asynchronous motor body is further reduced, and the three-phase asynchronous motor body is indirectly cooled;
2. According to the three-phase asynchronous motor with the rapid cooling function, the first ball is blown through the ventilation pipe, so that the push rod pushes the second ball to move, the stop block is moved away from the through hole, barium hydroxide octahydrate powder in the addition pipe conveniently falls into the cooling box, the heat absorption time of the reaction is improved, and the cooling effect on gas entering the cooling box is further improved;
3. According to the three-phase asynchronous motor with the rapid cooling function, when the gas entering the cooling box is weakened, the second ball moves leftwards conveniently through the second sliding rod, the second spring and the stop lever, so that the barium hydroxide octahydrate powder in the adding pipe is reduced to enter the cooling box, and the waste of the barium hydroxide octahydrate powder raw material is avoided;
4. This three-phase asynchronous motor with quick cooling function utilizes first dwang and second dwang to drive first puddler, second puddler through mixing assembly and rotates, is convenient for mix ammonium chloride powder and octahydrate barium hydroxide powder in the cooling tank to increase the cooling efficiency to the cooling tank in.
Drawings
FIG. 1 is a front cross-sectional perspective view of the invention;
FIG. 2 is a front perspective view of the whole invention;
FIG. 3 is a front perspective view of an inventive blade;
FIG. 4 is a front perspective view of the first slide bar of the present invention;
FIG. 5 shows a push rod of the present invention a side cutaway perspective view;
FIG. 6 is a perspective view of a second rotary lever of the present invention in a side elevational view in section;
FIG. 7 is an enlarged perspective view of the area A of FIG. 4 of the invention;
fig. 8 is an enlarged perspective view of the invention at the area B in fig. 1.
In the figure, a three-phase asynchronous motor body 1, a base 2, a protective frame 3, a cooling component 40, a rotating shaft 401, a belt pulley 402, a blade 403, a cooling box 404, a ventilation pipe 405, a filter screen 407 of a wind collecting cover 406, a first ball 408, a connecting plate 409, a first sliding rod 4010, a first spring 4011, a push rod 4012, an additive pipe 4013, a second ball 4014, a stop 4015, a stop rod 4016, a partition 4017, a second sliding rod 4018, a second spring 4019, an air outlet pipe 4020, a filter screen 4021, a box door 4022, a cover plate 4023, a mixing component 41, a rotating motor 411, a worm 412, a support plate 413, a first rotating rod 414, a second rotating rod 415, a worm wheel 416, a first stirring rod 417 and a second stirring rod 418.
Detailed Description
The following description of the technical solutions in the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments, based on the embodiments of the invention, which would be apparent to one of ordinary skill in the art without making any inventive effort are intended to be within the scope of the invention.
Referring to fig. 1-8, the invention provides a technical scheme that a three-phase asynchronous motor with a rapid cooling function comprises a three-phase asynchronous motor body 1;
The base 2 is positioned below the three-phase asynchronous motor body 1, and the inner wall of the three-phase asynchronous motor body 1 is in threaded connection with the inner wall of the base 2 through bolts;
The three-phase asynchronous motor body 1 is positioned in the protective frame 3, a through groove is formed in the right side face of the protective frame 3 in a penetrating manner, the right end face of an output rod of the three-phase asynchronous motor body 1 penetrates through the right side face of the inner side of the protective frame 3 and the inner wall of the through groove to extend to the right side of the protective frame 3, and a cooling assembly 40 is arranged in the protective frame 3;
above the protective frame 3 is arranged a mixing assembly 41.
The cooling module 40 is including being located the inside pivot 401 and blade 403 of protection frame 3, pivot 401 surface and three-phase asynchronous motor body 1 output pole surface all fixed cover are equipped with belt pulley 402, two belt pulley 402 surface transmission are connected, pivot 401 right-hand member face passes through the bearing frame and is connected with the inside right flank of protection frame 3 rotates, pivot 401 left end face and blade 403 right flank fixed connection, the vent has been seted up in the link up of protection frame 3 right flank, the left side of blade 403 is provided with ventilation pipe 405, protection frame 3 top surface fixedly connected with cooling box 404, ventilation pipe 405 upside right-hand member face is fixed to run through protection frame 3 inside top surface and cooling box 404 left surface and extends to cooling box 404 inside, cooling box 404 openly articulates there is chamber door 4022, cooling box 404 top is provided with interpolation pipe 4013, interpolation pipe 4013 bottom surface is fixed to run through cooling box 404 inside, interpolation pipe 4013 top surface articulates there is apron 4023, interpolation pipe 4013 right side is provided with outlet duct 4020, the inside right flank of cooling box 404 is run through the vent, through cooling module 40, utilize three-phase asynchronous motor body 1 during operation to drive blade 403, thereby increase the speed in the cooling box 3 to the asynchronous motor body, and then the cooling effect in the three-phase asynchronous motor body 1 is cooled down, and the three-phase asynchronous motor body temperature is cooled down, and then the three-phase asynchronous motor body 1 is cooled down, and the temperature is cooled down to the cooling box 1, and the effect in the cooling box 1 is cooled down.
The inner wall of the ventilation opening is fixedly connected with a filter screen plate 407, and the left end face of the air outlet pipe 4020 is fixedly connected with a filter screen 4021.
The ventilation pipe 405 is arranged as a C-shaped pipe, and the right end face of the lower side of the ventilation pipe 405 is fixedly connected with a wind collecting cover 406.
The right side of ventilation pipe 405 is provided with first ball 408, all fixedly connected with connecting plate 409 in the front and back face of first ball 408, connecting plate 409 left side is provided with first slide bar 4010, first slide bar 4010 right-hand member face slides and runs through connecting plate 409 left surface and extend to the connecting plate 409 right side, first slide bar 4010 left and right end face respectively with cooling box 404 inside left and right sides fixed connection, first slide bar 4010 fixed surface cover is equipped with first spring 4011, first spring 4011 left and right sides face respectively with connecting plate 409 right flank and cooling box 404 inside right side fixed connection, first ball 408 right side fixedly connected with push rod 4012, push rod 4012 right-hand member face slides and runs through adding pipe 4013 left surface and extend to adding inside pipe 4013, blow first ball 408 through ventilation pipe 405 for push rod 4012 promotes the second ball 4014 and removes, and then dog 4015 removes from the through-hole, the octa barium hydroxide powder in the adding pipe 4013 of being convenient for falls into cooling box 404, realize improving the heat absorption time of reaction, further improve the cooling effect to the gas that gets into in cooling box 404.
The inside side fixedly connected with baffle 4017 of interpolation pipe 4013, the through-hole has been seted up to baffle 4017 top surface link up, and baffle 4017 top is provided with dog 4015, second ball 4014 and second slide bar 4018, dog 4015 bottom surface and baffle 4017 top surface sliding connection, and dog 4015 is located the through-hole top, dog 4015 top surface and second ball 4014 bottom surface fixed connection, and second ball 4014 is located the push rod 4012 right side.
The right side surface of the second round ball 4014 is fixedly connected with the left end surface of the second slide rod 4018, the right end surface of the second slide rod 4018 penetrates through the right side surface inside the adding pipe 4013 in a sliding mode and extends to the right side of the adding pipe 4013, a second spring 4019 is fixedly sleeved on the surface of the second slide rod 4018, the left end surface and the right end surface of the second spring 4019 are fixedly connected with the right side surface of the second round ball 4014 and the right side surface inside the adding pipe 4013 respectively, and when gas entering the cooling box 404 weakens, the second round ball 4014 moves leftwards conveniently through the second slide rod 4018, the second spring 4019 and the stop rod 4016, so that the barium hydroxide octahydrate powder in the adding pipe 4013 is reduced and enters the cooling box 404, and waste of the barium hydroxide octahydrate powder raw material is avoided.
The left side face of the stop block 4015 is fixedly connected with a positioning rod 4016, and the left end face of the positioning rod 4016 is in contact with the left side face inside the adding pipe 4013.
Embodiment two: on the basis of the first embodiment, a preferred embodiment of the three-phase asynchronous motor with a rapid cooling function provided by the invention is shown in fig. 1,2 and 4-6: the mixing component 41 comprises a rotating motor 411, a worm 412 and a supporting plate 413 which are arranged above a protective frame 3, the left side surface of the rotating motor 411 and the left side surface of the supporting plate 413 are fixedly connected with the right side surface of the cooling box 404, the front end surface of an output rod of the rotating motor 411 is fixedly connected with the rear end surface of the worm 412, the front end surface of the worm 412 penetrates through the rear side surface of the supporting plate 413 to extend to the front side of the supporting plate 413, a first rotating rod 414 and a second rotating rod 415 are arranged below the worm 412, the surface of the worm 412 is rotationally connected with the inner wall of the supporting plate 413 through a bearing seat, the first rotating rod 414 and the second rotating rod 415 are symmetrically arranged, worm wheels 416 are fixedly sleeved on the surfaces of the first rotating rod 414 and the second rotating rod 415, the surface of the worm 412 is meshed with the side surface of the worm wheels 416, the left end face of the first rotating rod 414 and the left end face of the second rotating rod 415 extend to the inside of the cooling box 404 through the right side face of the cooling box 404, the surface of the first rotating rod 414 and the surface of the second rotating rod 415 are respectively and rotatably connected with the inner wall of the cooling box 404 through bearing seats, the surface of the first rotating rod 414 is fixedly connected with a second stirring rod 418, the surface of the second rotating rod 415 is fixedly connected with a first stirring rod 417, the first stirring rod 417 and the second stirring rod 418 are driven to rotate by the first rotating rod 414 and the second rotating rod 415 through the mixing component 41, the ammonium chloride powder and the barium hydroxide octahydrate powder in the cooling box 404 are conveniently mixed, the cooling efficiency in the cooling box 404 is increased, the right end face of the air outlet pipe 4020 is connected with a purifying component (not shown in the drawing), avoiding the pollution of the gas generated by the reaction to the environment.
The first stirring rod 417 and the second stirring rod 418 are both positioned inside the cooling tank 404, and the first stirring rod 417 and the second stirring rod 418 are arranged in a left-right staggered manner.
When the three-phase asynchronous motor body 1 works, the output rod of the three-phase asynchronous motor body 1 drives the connected belt pulley 402 to rotate, the rotating shaft 401 is driven by a belt to rotate, the rotating shaft 401 drives the blades 403 to rotate, the air flowing speed in the protective frame 3 is increased, and the three-phase asynchronous motor body 1 in the protective frame 3 is cooled;
Adding barium hydroxide octahydrate powder into an adding pipe 4013, then placing ammonium chloride powder into a cooling box 404, enabling heat in a protective frame 3 to enter a ventilation pipe 405 through a wind collecting cover 406, enabling the ventilation pipe 405 to transmit the heat into the cooling box 404, enabling the ventilation pipe 405 to blow a first ball 408 to move, enabling the first ball 408 to drive a connecting plate 409 to move on a first sliding rod 4010 and press a first spring 4011, enabling the first ball 408 to drive a push rod 4012 to move leftwards, enabling the push rod 4012 to push a second ball 4014 to move rightwards, enabling the second ball 4014 to push a second sliding rod 4018 to move, enabling a stop block 4015 to move rightwards, enabling barium hydroxide octahydrate powder in the adding pipe 4013 to enter the cooling box 404 through a through hole, enabling the barium hydroxide octahydrate powder to react with ammonium chloride powder in the cooling box 404 in a contact mode, reducing the temperature in the cooling box 404, reducing stability of the heat entering the cooling box 404, and further reducing the temperature of the surrounding environment of a three-phase asynchronous motor body 1;
The rotating motor 411 is started, the output rod of the rotating motor 411 drives the connected worm 412 to rotate, so that the worm 412 drives the worm wheel 416 to rotate, the first rotating rod 414 and the second rotating rod 415 rotate and drive the first stirring rod 417 and the second stirring rod 418 to rotate, and the first stirring rod 417 and the second stirring rod 418 stir and mix the barium hydroxide octahydrate powder and the ammonium chloride powder in the cooling box 404, so that the reaction speed of the barium hydroxide octahydrate powder and the ammonium chloride powder is accelerated, and the cooling efficiency is improved.
Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. A three-phase asynchronous motor with a rapid cooling function comprises a three-phase asynchronous motor body (1);
the base (2) is positioned below the three-phase asynchronous motor body (1), and the inner wall of the three-phase asynchronous motor body (1) is in threaded connection with the inner wall of the base (2) through bolts;
The three-phase asynchronous motor comprises a base (2) and a protective frame (3) fixedly connected to the top surface of the base (2), wherein the three-phase asynchronous motor body (1) is positioned in the protective frame (3), a through groove is formed in the right side surface of the protective frame (3) in a penetrating manner, and the right end surface of an output rod of the three-phase asynchronous motor body (1) penetrates through the right side surface of the interior of the protective frame (3) and the inner wall of the through groove to extend to the right side of the protective frame (3), and the three-phase asynchronous motor is characterized in that a cooling assembly (40) is arranged in the interior of the protective frame (3);
A mixing component (41) is arranged above the protective frame (3);
The cooling component (40) comprises a rotating shaft (401) and blades (403) which are positioned inside a protective frame (3), belt pulleys (402) are fixedly sleeved on the surface of the rotating shaft (401) and the surface of an output rod of the three-phase asynchronous motor body (1), two belt pulleys (402) are in surface transmission connection, the right end face of the rotating shaft (401) is rotationally connected with the right side face inside the protective frame (3) through a bearing seat, the left end face of the rotating shaft (401) is fixedly connected with the right side face of the blades (403), ventilation openings are formed in the right side face of the protective frame (3) in a penetrating mode, ventilation pipes (405) are arranged on the left side of the blades (403), the top face of the protective frame (3) is fixedly connected with a cooling box (404), the right end face on the upper side of the ventilation pipes (405) fixedly penetrates through the inner top face of the protective frame (3) and the left side face of the cooling box (404) to the inside the cooling box (404), a box door (2) is hinged to the front face of the cooling box (404), an adding pipe (4013) is arranged above the cooling box (404), the bottom end face of the adding pipe (4013) is fixedly connected with the top face of the cooling box (403) and extends to the inside the cooling box (404), the right end face of the air outlet pipe (4020) fixedly penetrates through the right side face inside the cooling box (404) and extends to the right side of the cooling box (404);
The utility model discloses a cooling box, including ventilation pipe (405), connecting plate (409) are provided with first slide bar (4010) in the front and back face all fixedly connected with, connecting plate (409) left side, first slide bar (4010) right-hand member face slides and runs through connecting plate (409) left surface and extend to connecting plate (409) right side, terminal surface is fixed connection about first slide bar (4010) and cooling box (404) inside respectively, first slide bar (4010) fixed surface cover is equipped with first spring (4011), terminal surface is fixed connection about first spring (4011) with connecting plate (409) right flank and cooling box (404) inside right flank respectively, first ball (408) right flank fixedly connected with push rod (4012), push rod (4012) right-hand member face slides and runs through adding pipe (4013) left surface and extends to adding pipe (4013) inside.
2. The three-phase asynchronous motor with rapid cooling function according to claim 1, wherein the mixing assembly (41) comprises a rotating motor (411), a worm (412) and a supporting plate (413) above a protective frame (3), the left side surface of the rotating motor (411) and the left side surface of the supporting plate (413) are fixedly connected with the right side surface of a cooling box (404), the front end surface of an output rod of the rotating motor (411) is fixedly connected with the rear end surface of the worm (412), the front end surface of the worm (412) extends to the front side of the supporting plate (413) through the rear side surface of the supporting plate (413), a first rotating rod (414) and a second rotating rod (415) are arranged below the worm (412), the surfaces of the worm (412) are rotationally connected with the inner wall of the supporting plate (413) through bearing blocks, the first rotating rod (414) and the second rotating rod (415) are symmetrically arranged, the surfaces of the first rotating rod (414) and the second rotating rod (415) are fixedly sleeved with a worm wheel (416), the surfaces of the worm wheel (412) are meshed with the rear end surface of the worm wheel (416), the first rotating rod (414) and the second rotating rod (415) are rotationally meshed with the left end surface of the worm (415) and the left end surface of the cooling box (404), the surface of the first rotating rod (414) and the surface of the second rotating rod (415) are respectively connected with the inner wall of the cooling box (404) in a rotating way through bearing seats, the surface of the first rotating rod (414) is fixedly connected with a second stirring rod (418), and the surface of the second rotating rod (415) is fixedly connected with a first stirring rod (417).
3. The three-phase asynchronous motor with the rapid cooling function according to claim 1, wherein a filter screen plate (407) is fixedly connected to the inner wall of the ventilation opening, and a filter screen (4021) is fixedly connected to the left end face of the air outlet pipe (4020).
4. The three-phase asynchronous motor with the rapid cooling function according to claim 1, wherein the ventilation pipe (405) is a C-shaped pipe, and a wind collecting cover (406) is fixedly connected to the right end face of the lower side of the ventilation pipe (405).
5. The three-phase asynchronous motor with rapid cooling function according to claim 1, wherein a partition plate (4017) is fixedly connected to the inner side surface of the adding pipe (4013), a through hole is formed in the top surface of the partition plate (4017), a stop block (4015), a second ball (4014) and a second sliding rod (4018) are arranged above the partition plate (4017), the bottom surface of the stop block (4015) is slidably connected with the top surface of the partition plate (4017), the stop block (4015) is located above the through hole, the top surface of the stop block (4015) is fixedly connected with the bottom surface of the second ball (4014), and the second ball (4014) is located on the right side of the push rod (4012).
6. The three-phase asynchronous motor with rapid cooling function according to claim 5, wherein the right side face of the second ball (4014) is fixedly connected with the left end face of the second sliding rod (4018), the right end face of the second sliding rod (4018) penetrates through the right side face inside the adding pipe (4013) in a sliding mode and extends to the right side of the adding pipe (4013), a second spring (4019) is fixedly sleeved on the surface of the second sliding rod (4018), and the left end face and the right end face of the second spring (4019) are fixedly connected with the right side face of the second ball (4014) and the right side face inside the adding pipe (4013) respectively.
7. The three-phase asynchronous motor with the rapid cooling function according to claim 6, wherein a locating rod (4016) is fixedly connected to the left side face of the stop block (4015), and the left end face of the locating rod (4016) is in contact with the left side face inside the adding pipe (4013).
8. The three-phase asynchronous motor with a rapid cooling function according to claim 2, wherein the first stirring rod (417) and the second stirring rod (418) are both positioned inside the cooling tank (404), and the first stirring rod (417) and the second stirring rod (418) are arranged in a staggered manner.
CN202510367037.6A 2025-03-26 2025-03-26 A three-phase asynchronous motor with rapid cooling function Active CN120222707B (en)

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