A multifunctional forming device for motor housing

The design of the multi-functional molding and processing device has solved the problem of cleaning burrs inside the motor housing, achieving efficient waste recycling and resource utilization, reducing production costs and air pollution.

CN117655845BActive Publication Date: 2026-03-27JIANGMEN JIANGSHENG ELECTRIC MASCH WORKS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-11
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Burrs inside the motor housing are difficult to clean, and the recycling rate of waste after cleaning is low, resulting in resource waste.

Method used

A multifunctional molding and processing device was designed, which includes a positioning mechanism, a suction mechanism, and a waste collection mechanism. The device uses a servo motor to drive the rotating drum to rotate, and combines centrifugal force with the grinding disc to clean burrs. The suction mechanism adsorbs irritating gases, and the waste collection mechanism compresses the debris into a whole for easy recycling.

Benefits of technology

It improves the processing efficiency of motor housings, reduces manual operation, reduces resource waste, lowers production costs, reduces air pollution, and improves waste recycling efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of motor shell processing, and provides a multifunctional forming and processing device for a motor shell, which comprises a workbench for supporting various mechanisms to process the motor shell; a servo motor is fixedly connected at the bottom of the middle part of the workbench, the output end of the servo motor penetrates through the workbench and is fixedly connected with a rotating drum, a spring No. 2 is fixedly connected to the inner bottom of the rotating drum, a sliding plate is fixedly connected to the top end of the spring No. 2, a T-shaped frame is fixedly connected to the top end of the sliding plate, a plurality of pull plates are rotationally connected to the inner top end of the T-shaped frame, a plurality of polishing pieces are rotationally connected to the bottom ends of the pull plates, and the polishing pieces penetrate through the rotating drum away from one side. The polishing pieces can be in contact with the motor shell by overcoming the obstruction of the spring No. 2 through centrifugal force, and can realize the purpose of cleaning the inner wall under the driving of the rotating drum. In addition, the waste chip collecting mechanism can compress the chippings into a whole, so as to facilitate transfer and reuse.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of motor shell processing, in particular to a multifunctional forming and processing device for motor shell. BACKGROUND

[0002] The motor is a driving source device based on the principle of electromagnetism, which converts electrical energy into mechanical energy through the rotor and magnetic field, and is also an important component indispensable in many industrial and household machines. Therefore, in order to avoid the influence of external factors on the related moving parts of the motor during work, the motor shell needs to be protected to prolong the service life of the motor and reduce the risk of damage.

[0003] Generally, the motor shell is made of metal or plastic. The metal motor shell has higher heat dissipation and safety, but it is relatively more troublesome to form and process. For example, burrs are inevitable during turning, drilling and cutting. Due to the material factor, the burrs of the metal shell are more sharp, which may scratch the workers during installation or scratch the wires and electronic components during use. Therefore, the shell needs to be carefully polished. For some burrs inside the shell, manual inspection and hand-held polishing equipment are usually required for polishing, which is more troublesome. In addition, the waste of the shell made of materials such as aluminum alloy still has recycling value, and the debris after manual polishing is often difficult to collect effectively, which causes a certain degree of resource waste. SUMMARY

[0004] In view of the deficiencies of the prior art, the present application provides a multifunctional forming and processing device for motor shell, which solves the problems of inconvenient cleaning of burrs inside the motor shell and low degree of waste recovery after cleaning, and resource waste.

[0005] To achieve the above purpose, the present application is realized by the following technical scheme: a multifunctional forming and processing device for motor shell, comprising:

[0006] A workbench is used to support various mechanisms for processing the motor shell.

[0007] A positioning mechanism is arranged at the front and rear of the top end of the workbench for fixed-point fixing of the motor shell.

[0008] An air suction mechanism is arranged at both sides of the top end of the workbench for absorbing irritating gas.

[0009] A waste collection mechanism is arranged at the bottom end of the workbench for collecting debris generated during processing.

[0010] A servo motor is fixedly connected to the middle of the bottom of the workbench, the output end of the servo motor penetrates the workbench and is fixedly connected with a rotating drum, the bottom of the rotating drum is fixedly connected with spring two, the top of spring two is fixedly connected with a sliding plate, the top of the sliding plate is fixedly connected with a T-shaped frame, a plurality of pull plates are rotatably connected to the top of the T-shaped frame, a plurality of polishing pieces are rotatably connected to the bottom of the pull plates, and the polishing pieces penetrate the rotating drum.

[0011] Preferably, the positioning mechanism comprises spring one, the bottom of spring one is fixedly connected to the top of the rotating drum, the top of spring one is fixedly connected with a connecting disc, a plurality of positioning plates are slidably connected to the bottom of the connecting disc, a plurality of rotating plates one are rotatably connected to the bottom of the positioning plates, the bottom of the rotating plates one are rotatably connected to the outside of the top of the rotating drum, the outside of the output end of the servo motor is fixedly connected with a disc, the top of the disc is rotatably connected with a connecting frame, the top of the connecting frame is fixedly connected to the top of the workbench, a plurality of push plates are slidably connected to the inside of the disc, the top of the connecting frame is slidably connected with arc-shaped movable plates on both sides, the top of the workbench is slidably connected with work-shaped blocks on both sides, the bottom of the work-shaped blocks is rotatably connected with rotating plates two on both sides, the rotating plates two are rotatably connected to the bottom of the arc-shaped movable plates on both sides, and the upper part of the work-shaped blocks is fixedly connected with arc-shaped clamping plates.

[0012] Preferably, the air suction mechanism comprises a gear ring, the top of the gear ring is fixedly connected to the bottom of the disc, both sides of the gear ring are engaged with driven wheels, the top of both sides of the driven wheels is fixedly connected with transmission rods, the top of both sides of the transmission rods penetrates the workbench and is fixedly connected with impellers, both sides of the impellers are rotatably connected with air inlet pipes, the bottom of both sides of the air inlet pipes is fixedly connected to the top of the workbench, the side away from the air inlet pipes is communicated with the processing barrels through connecting pipes, the bottom of both sides of the processing barrels is fixedly connected to the top of the workbench, both sides of the processing barrels are slidably connected with movable barrels, and both sides of the movable barrels are provided with activated carbon.

[0013] Preferably, the waste collection mechanism comprises a bevel gear one, the bottom of one side of the driven wheel is fixedly connected with the bevel gear one, the bottom of the bevel gear one is engaged with a bevel gear two, the rear end of the bevel gear two is fixedly connected with a rotating rod, the rear end of the rotating rod is fixedly connected with a rotating disc, the rear end of the rotating disc is fixedly connected with a convex rod, the outside of the convex rod is slidably connected with a groove plate, the side close to the servo motor of the groove plate is fixedly connected with an L-shaped plate, the inside of the side away from the groove plate of the L-shaped plate is slidably connected with a pressing plate, the top of the pressing plate is slidably connected with a guide plate, the top of the guide plate is fixedly connected to the inside of the bottom of the workbench, the bottom of the pressing plate is rotatably connected with a circular table, the rear part of the top of the workbench is provided with an inclined groove, the rear part of the inside of the bottom of the workbench is fixedly connected with a collection barrel, and the inside of the bottom of the collection barrel is slidably connected with a collection box.

[0014] Preferably, the sliding plate is slidably connected outside the rotating drum, the bottom end of the sliding plate is fixedly connected with a connecting rod, the lower part of the connecting rod is slidably connected inside the bottom of the rotating drum, the top end of the workbench is fixedly connected with a plurality of horizontal blocks, the plurality of horizontal blocks are located outside the rotating drum, the bottom end of the rotating drum is rotatably connected with a supporting table outside, and the bottom end of the supporting table is fixedly connected with the top end of the workbench.

[0015] Preferably, the plurality of positioning plates are rotatably connected with a plurality of balls away from one end of the connecting disc, the bottom ends of the front and rear arc-shaped clamping plates are slidably connected with the top end of the workbench, the bottom end of the connecting disc is fixedly connected with a sliding rod, the sliding rod is slidably connected with a sleeve outside, the bottom end of the sleeve is fixedly connected with the top end of the rotating drum, the spring is wound outside the sleeve, and the connecting frame is provided with a groove in the inside of each side, and the groove corresponds to the arc-shaped movable plate.

[0016] Preferably, the bottom ends of the two driving wheels are rotatably connected with supporting frames, the bottom ends of the two supporting frames are fixedly connected with the inside bottom end of the workbench, the upper parts of the two transmission rods are rotatably connected with limiting frames, and the limiting frames are fixedly connected with the inside of the two air inlet pipes respectively.

[0017] Preferably, the rotating drum is rotatably connected with a plurality of supporting plates one outside, the top ends of the plurality of supporting plates one are fixedly connected with the inside top end of the workbench, the front end of the rotating disc is rotatably connected with a supporting plate two outside, the top end of the supporting plate two is fixedly connected with the inside top end of the workbench, the L-shaped plate is slidably connected with a limiting block on the side close to the groove plate, the top end of the limiting block is fixedly connected with the inside top end of the workbench on the rear side, the top end of the circular table is fixedly connected with a fixed plate in the middle, the fixed plate is slidably connected with a limiting plate inside, and the top end of the limiting plate is fixedly connected with the inside top end of the workbench on the rear side.

[0018] Preferably, the inclined chute is located above the collecting cylinder, and the circular table faces the collecting cylinder.

[0019] Working principle: During use, the motor housing to be processed is placed on the outside of the rotating drum. At this time, the inner cavity of the motor housing can contact the connecting plate. Under the action of gravity, the connecting plate can overcome the elastic force of the first spring and move downward. However, since the length of the first rotating plate is fixed and neither the first rotating plate nor the positioning plate is locked, the first rotating plate can rotate to push the positioning plate away from the connecting plate. After the evenly distributed positioning plate moves, it can be pushed by the inside of the motor housing to a position coaxial with the connecting plate, thereby achieving the purpose of automatic centering and positioning of the motor housing. This prevents the motor housing from being misaligned during placement, which would lead to insecure fixing during subsequent clamping. In addition, the servo motor enables the disc to rotate. When the disc speed reaches... At a certain value, the evenly distributed push plates inside can move outward under centrifugal force, thereby pushing the arc-shaped movable plates away from each other along the connecting frame. At this time, the second rotating plate connected to the arc-shaped movable plate can rotate accordingly, further allowing the I-shaped blocks to move closer to each other under the pull of the second rotating plate, until the arc-shaped clamping plate connected to the I-shaped block can contact the motor housing from the front and rear sides simultaneously, achieving the purpose of facilitating the fixing of the motor housing. Then, with the cooperation of other equipment, the motor housing can be drilled, cut, and processed. When it is necessary to deburr the processed area, the servo motor speed is increased so that the centrifugal force can be used to make the grinding disc move downward through the rotation of the pull plate, driving the T-shaped frame and the sliding plate to overcome the elastic force of the second spring. When the T-shaped frame and the sliding plate move downward, the grinding disc can move downward through the rotation of the pull plate. After the plate moves down a certain distance, the grinding disc can contact the inner wall of the motor housing. Since the grinding disc rotates synchronously with the rotating drum, it can clean the burrs inside the motor housing, improving processing efficiency. Simultaneously, due to the slope of the worktable top, debris falling onto the worktable surface can slide into the collection cylinder through the inclined groove. Furthermore, the toothed ring allows the driven wheel to drive the impeller via the transmission rod, generating suction to draw in the irritating odors generated during subsequent spraying of the motor housing into the air intake pipe. The irritating gas can then continue into the processing cylinder along with the air through the connecting pipe. The activated carbon inside the movable cylinder adsorbs the irritating gas, reducing air pollution. Furthermore, as the driven wheel rotates, helical gear one can rotate accordingly, and then helical gear two meshing with it can drive the rotating rod to rotate the turntable. At this time, the convex rod located at the eccentric position of the turntable can drive the groove plate to make reciprocating linear motion under the restriction of the limiting block and the L-shaped plate. In conjunction with the guide plate, the fixing plate, and the limiting plate, the L-shaped plate cyclically applies up-and-down force to the pressure plate during the reciprocating linear motion with the groove plate. This allows the truncated cone located inside the collection cylinder to make reciprocating linear motion in the vertical direction, so as to continuously squeeze the debris collected inside the collection cylinder, making them interlock and form a whole, which is convenient for subsequent transfer and avoids the metal debris being in a separated state and increasing the workload of recollection after accidental spillage.

[0020] This invention provides a multifunctional forming and processing device for motor housings. It has the following beneficial effects:

[0021] 1. The servo motor drives the rotating drum to rotate, and then under the action of centrifugal force, the polishing piece can overcome the resistance of spring two and drive the T-shaped frame and pull plate down through the sliding plate to extend the length of the polishing piece, so that the polishing piece can contact the motor shell, and under the driving of the rotating drum, the inner wall of the motor shell is cleaned, the processing efficiency is improved, and the irritant gas is adsorbed for treatment when subsequent spraying to prevent the irritant gas from polluting the air, and in addition, the waste chip collecting mechanism is arranged to compress the collected debris into a whole for convenient transfer and reuse.

[0022] 2. The positioning mechanism is arranged to position the motor shell, prevent the motor shell from being placed with deviation to affect the fixing effect, and fully utilize the rotation of the servo motor to fix the motor shell, so as to avoid waste of resources caused by using too many driving sources.

[0023] 3. The cooperation of each mechanism improves the integrated processing effect, saves the transfer time of the motor shell between each processing equipment, reduces the floor area of each related equipment, and then achieves the effect of reducing production cost. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is a front side structure schematic view of the application;

[0025] Figure 2 It is a working table connecting structure sectional view schematic view of the application;

[0026] Figure 3 It is a connecting disc connecting structure sectional view schematic view of the application;

[0027] Figure 4 It is a working table connecting structure sectional view schematic view of the application; Figure 3

[0028] Figure 5 It is a disc connecting structure sectional view schematic view of the application;

[0029] Figure 6 It is a working table connecting structure sectional view schematic view of the application; Figure 3

[0030] Figure 7 It is a rotating drum connecting structure sectional view schematic view of the application;

[0031] Figure 8 It is a working table connecting structure sectional view schematic view of the application; Figure 7

[0032] Figure 9 It is a working table connecting structure sectional view schematic view of the application; Figure 2 It is a working table connecting structure sectional view schematic view of the application;​​​

[0033] Wherein, 1, workbench; 2, positioning mechanism; 201, spring one; 202, connecting disc; 203, positioning plate; 204, rotating plate one; 205, disc; 206, connecting frame; 207, push plate; 208, arc movable plate; 209, work-shaped block; 210, rotating plate two; 211, arc-shaped clamping plate; 212, slide rod; 213, sleeve; 3, air suction mechanism; 301, gear ring; 302, driven wheel; 303, transmission rod; 304, impeller; 305, air inlet pipe; 306, connecting pipe; 307, processing cylinder; 308, movable cylinder; 309, support frame; 310, limiting frame; 4, scrap collecting mechanism; 401, bevel gear one; 402, bevel gear two; 403, rotating rod; 404, rotating disc; 405, protruding rod; 406, slot plate; 407, L-shaped plate; 408, pressing plate; 409, guide plate; 410, circular table; 411, inclined chute; 412, collecting cylinder; 413, collecting box; 414, support plate one; 415, support plate two; 416, limiting block; 417, fixed plate; 418, limiting plate; 5, servo motor; 6, rotating drum; 7, spring two; 8, sliding plate; 9, T-shaped frame; 10, pull plate; 11, polishing piece; 12, horizontal block; 13, support table; 14, connecting rod. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the specification of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0035] Embodiment:

[0036] Please refer to the accompanying drawings Figure 1 , the accompanying drawings Figure 2 and the accompanying drawings Figure 4 , the embodiments of the present application provide a multifunctional forming and machining device for motor shell, comprising:

[0037] The workbench 1 is used to support each mechanism to machine the motor shell;

[0038] The servo motor 5 is fixedly connected at the bottom end of the workbench 1, the output end of the servo motor 5 penetrates the workbench 1 and is fixedly connected with the rotating drum 6, the inner bottom end of the rotating drum 6 is fixedly connected with the spring two 7, the top end of the spring two 7 is fixedly connected with the sliding plate 8, the top end of the sliding plate 8 is fixedly connected with the T-shaped frame 9, the inner top end of the T-shaped frame 9 is rotatably connected with a plurality of pull plates 10, the bottom end of each pull plate 10 is rotatably connected with a polishing piece 11, and the side away from the polishing piece 11 penetrates the rotating drum 6.

[0039] The rotating drum 6 can be rotated by the servo motor 5, and when the rotating drum 6 rotates at a high speed, the uniformly distributed polishing pieces 11 can move outward to the motor shell under the action of centrifugal force, at this time, the pull plate 10 connected with the polishing piece 11 can rotate to drive the T-shaped frame 9 and the sliding plate 8 to move downward, and then the spring two 7 is compressed under stress, when the polishing piece 11 rotates with the rotating drum 6 to clean the burrs in the motor shell, the servo motor 5 reduces the speed, at this time, the spring two 7 can overcome the pressure caused by the centrifugal force, so that the sliding plate 8, the T-shaped frame 9 and the polishing piece 11 are connected through the pull plate 10, and then the polishing piece 11 returns to the inside of the rotating drum 6, avoiding the polishing piece 11 hindering the taking of the motor shell, and the polishing piece 11 can also realize the effect of cleaning the burrs under the action of the rotating drum 6 and the servo motor 5, avoiding the need for manual polishing of the motor shell, improving the processing efficiency of the motor shell.

[0040] Please refer to the accompanying Figure 1 , the accompanying Figure 2 and the accompanying Figure 5 , the positioning mechanism 2 is arranged at the top front and rear of the workbench 1, and is used for fixing the motor shell at a fixed point.

[0041] The positioning mechanism 2 includes a spring one 201, the bottom end of the spring one 201 is fixedly connected to the top end of the rotating drum 6, the top end of the spring one 201 is fixedly connected with a connecting disc 202, the bottom end of the connecting disc 202 is slidably connected with a plurality of positioning plates 203, the bottom end of each of the plurality of positioning plates 203 is rotatably connected with a rotating plate one 204, the bottom end of each of the plurality of rotating plates one 204 is rotatably connected to the outside of the top end of the rotating drum 6, the outside of the output end of the servo motor 5 is fixedly connected with a disc 205, the top end of the disc 205 is rotatably connected with a connecting frame 206, the top end of the connecting frame 206 is fixedly connected to the inner top end of the workbench 1, the inside of the disc 205 is slidably connected with a plurality of push plates 207, the inner top end of the connecting frame 206 is slidably connected with an arc-shaped movable plate 208 on both sides, the top front and rear of the workbench 1 are slidably connected with a work-shaped block 209, the lower sides of the one end of the work-shaped block 209 close to each other are rotatably connected with a rotating plate two 210, the other ends of the rotating plate two 210 away from the work-shaped block 209 are rotatably connected to the bottom end of the arc-shaped movable plate 208 on both sides, and the upper side of the one side of the work-shaped block 209 close to each other is fixedly connected with an arc-shaped clamping plate 211.

[0042] The connecting plate 202 is moved upward by the spring 201, and the positioning plate 203 can be located at the bottom of the connecting plate 202 due to the length limitation of the rotating plate 204. When the connecting plate 202 is subjected to the gravity from the motor shell, it can move downward. At this time, the uniformly distributed rotating plate 204 can rotate to push the positioning plate 203 to spread outward, so as to push the motor shell from the inside to the coaxial position of the connecting plate 202 by the uniformly distributed positioning plate 203, thereby avoiding the case that the motor shell cannot be stably fixed due to the influence of the artificial placement position. In addition, the centrifugal force can make the uniformly distributed push plate 207 inside the disc 205 slide outward after the servo motor 5 is started. When the push plate 207 contacts the arc-shaped movable plate 208, the arc-shaped movable plate 208 can drive the I-shaped block 209 to approach each other through the rotating plate 210. At this time, the arc-shaped clamping plate 211 connected with the I-shaped block 209 can also approach the motor shell to be fixed from the front and rear sides at the same time, so as to achieve the purpose of fixing and polishing respectively by making full use of the different rotating speeds of the servo motor 5 under the action of the positioning mechanism 2, thereby avoiding the waste of resources caused by using multiple driving sources.

[0043] Please refer to the accompanying Figure 1 , the accompanying Figure 2 and the accompanying Figure 6 , the air suction mechanism 3 is arranged at the top of the workbench 1 on both sides, for absorbing stimulating gas;

[0044] The air suction mechanism 3 includes a gear ring 301, the top end of which is fixedly connected to the bottom end of the disc 205. The gear ring 301 is engaged with a driven wheel 302 on both sides. The top end of the driven wheel 302 on both sides is fixedly connected with a transmission rod 303. The top of the transmission rod 303 on both sides penetrates the workbench 1 and is fixedly connected with an impeller 304. The outer side of the impeller 304 on both sides is rotatably connected with an air inlet pipe 305. The bottom end of the air inlet pipe 305 on both sides is fixedly connected to the top end of the workbench 1. The air inlet pipe 305 on the side away from each other is communicated with a processing cylinder 307 through a connecting pipe 306. The bottom end of the processing cylinder 307 is fixedly connected to the top end of the workbench 1 on both sides. The inside of the processing cylinder 307 on both sides is slidably connected with a movable cylinder 308. The inside of the movable cylinder 308 on both sides is provided with activated carbon.

[0045] The tooth ring 301 can also obtain the rotation of the servo motor 5 output through the disc 205, and then the transmission rod 303 can drive the impeller 304 to rotate through the driven wheel 302 engaged with the tooth ring 301, so as to use the suction force generated by the rotation of the impeller 304 to suck the irritating odor generated during the spraying of the motor housing along the air inlet pipe 305, the connecting pipe 306 to the processing cylinder 307, and then through the activated carbon placed in the movable cylinder 308, the irritating odor in the air is adsorbed, the pollution of irritating odor to the surrounding air is reduced, the influence on the health of the nearby staff is avoided, and the activated carbon in the processing cylinder 307 can be replaced or regenerated.

[0046] Please refer to the accompanying Figure 2 , the accompanying Figure 7 and the accompanying Figure 8 , the scrap collecting mechanism 4 is arranged at the bottom end of the workbench 1, and is used for collecting the scraps generated during the machining;

[0047] The scrap collecting mechanism 4 includes a bevel gear one 401, the bottom end of one side of the driven wheel 302 is fixedly connected with the bevel gear one 401, the lower part of the bevel gear one 401 is engaged with a bevel gear two 402, the rear end of the bevel gear two 402 is fixedly connected with a rotating rod 403, the rear end of the rotating rod 403 is fixedly connected with a rotating disc 404, the rear end of the rotating disc 404 is fixedly connected with a convex rod 405, the outer side of the convex rod 405 is slidably connected with a groove plate 406, the side close to the servo motor 5 of the groove plate 406 is fixedly connected with an L-shaped plate 407, the inner side of the side away from the groove plate 406 of the L-shaped plate 407 is slidably connected with a pressing plate 408, the top end of the pressing plate 408 is slidably connected with a guide plate 409, the top end of the guide plate 409 is fixedly connected to the bottom end of the workbench 1 on one side of the rear part, the bottom end of the pressing plate 408 is rotatably connected with a circular table 410, the top end of the workbench 1 is provided with an inclined groove 411, the bottom end of the workbench 1 is fixedly connected with a collecting cylinder 412, and the bottom end of the collecting cylinder 412 is slidably connected with a collecting box 413.

[0048] The burrs or waste materials generated during the punching and cutting are cleaned by the polishing sheet 11 and can slide into the collecting cylinder 412 under the action of gravity through the chute 411, so as to recycle the waste materials in time and avoid waste. Meanwhile, the rotation of the driven wheel 302 can drive the bevel gear one 401 to rotate through the bevel gear two 402, the rotating rod 403 and the rotating disc 404, so as to drive the convex rod 405 to rotate through the slot plate 406 and exert a force on the L-shaped plate 407 to make the L-shaped plate 407 move. Since the L-shaped plate 407 is in contact with the pressing plate 408, one end of the pressing plate 408 is limited by the guide plate 409, and the other end is in contact with the circular truncated cone 410, when the L-shaped plate 407 exerts a force on the pressing plate 408, the pressing plate 408 can rotate along the L-shaped plate 407 to make the circular truncated cone 410 move up and down along the collecting cylinder 412, so as to exert a pressure on the debris in the collecting box 413 to make the debris embed each other. When the debris forms an integral whole under the force, the collecting box 413 is pulled out from the inside of the collecting cylinder 412, so that the metal debris can be conveniently sent to the recycling place, avoiding unnecessary loss caused by accidental spilling of the metal debris in the separated state during the transfer process, and also preventing the increase of the workload of the next collection.

[0049] Please refer to the accompanying drawings Figure 1 and the accompanying drawings Figure 4 The outer side of the sliding plate 8 is slidingly connected in the rotating drum 6, the bottom end of the sliding plate 8 is fixedly connected with the connecting rod 14, the lower part of the connecting rod 14 is slidingly connected in the bottom of the rotating drum 6, the top end of the workbench 1 is fixedly connected with a plurality of horizontal blocks 12, the plurality of horizontal blocks 12 are located outside the rotating drum 6, the bottom end of the rotating drum 6 is rotatably connected with the support table 13, and the bottom end of the support table 13 is fixedly connected to the top end of the workbench 1.

[0050] The rotating drum 6 can limit the sliding plate 8 to ensure that the sliding plate 8 only moves in the upward and downward directions, thereby preventing the spring 7 from being abnormally deformed due to the influence of the sliding plate 8. In addition, the connecting rod 14 can prevent the sliding plate 8 from overturning, and the uniformly distributed horizontal blocks 12 can ensure that the placed motor shell is still in a horizontal state when there is a slope on the top of the workbench 1. The support table 13 can support the rotating drum 6 to prevent the connection between the rotating drum 6 and the servo motor 5 from being damaged due to excessive force during rotation.

[0051] Please refer to the accompanying drawings Figure 1 , the accompanying drawings Figure 5 and the accompanying drawings Figure 7, a plurality of positioning plates 203 are rotatably connected with a plurality of balls away from one end of the connecting disc 202, the bottom ends of the front and rear arc-shaped clamping plates 211 are slidably connected to the top end of the workbench 1, the bottom end of the connecting disc 202 is fixedly connected with a sliding rod 212, the sliding rod 212 is slidably connected with a sleeve 213, the bottom end of the sleeve 213 is fixedly connected to the top end of the rotating drum 6, the spring 201 is wound outside the sleeve 213, and recesses are formed in the inner sides of the connecting frame 206, and the recesses correspond to the arc-shaped movable plates 208.

[0052] The balls can reduce the friction between the positioning plates 203 and the motor housing, thereby preventing the motor housing from rotating when the positioning plates 203 rotate with the rotating drum 6 through the rotating plate 204, the workbench 1 can limit the movement direction of the arc-shaped clamping plates 211 to prevent the arc-shaped clamping plates 211 from shaking during movement, the sliding rod 212 and the sleeve 213 can limit the position of the connecting disc 202 in the horizontal direction to prevent the connecting disc 202 from shaking in the horizontal direction when driven by the positioning plates 203 and the rotating plate 204, and the spring 201 wound outside the sleeve 213 can prevent the arc-shaped movable plates 208 from interfering with each other during movement, and the recesses allow the arc-shaped movable plates 208 to completely adhere to the connecting frame 206, thereby preventing the push plate 207 from colliding with the side edges of the arc-shaped movable plates 208 during high-speed rotation.

[0053] Please refer to the accompanying Figure 2 and the accompanying Figure 6 , the bottom ends of the two side driven wheels 302 are rotatably connected with support frames 309, the bottom ends of the two support frames 309 are fixedly connected to the inner bottom end of the workbench 1, and the upper portions of the two transmission rods 303 are rotatably connected with limiting frames 310, and the limiting frames 310 are fixedly connected to the inner sides of the two air inlet pipes 305.

[0054] The support frames 309 can support the driven wheels 302 to prevent the driven wheels 302 from deviating and failing to effectively contact the toothed ring 301 during rotation, and the limiting frames 310 can limit the transmission rods 303 to prevent the upper portions of the transmission rods 303 from shaking during high-speed rotation and affecting the use effect.

[0055] Please refer to the accompanying Figure 8 and the accompanying Figure 9The rotating rod 403 is externally rotatably connected with a plurality of support plates 414, the top ends of the plurality of support plates 414 are fixedly connected to the inner top end of the workbench 1, the front end of the rotating disc 404 is externally rotatably connected with a support plate 415, the top end of the support plate 415 is fixedly connected to the inner top end of the workbench 1, the L-shaped plate 407 is slidably connected with a limiting block 416 at the top thereof near one side of the groove plate 406, the top end of the limiting block 416 is fixedly connected to the inner top end of the workbench 1 at the rear side, the top end of the circular table 410 is fixedly connected with a fixed plate 417 at the middle portion thereof, the fixed plate 417 is slidably connected with a limiting plate 418 at the inner portion thereof, and the top end of the limiting plate 418 is fixedly connected to the inner top end of the workbench 1 at the rear side.

[0056] The rotating rod 403 can be limited by the uniformly distributed support plates 414 to prevent displacement of the rotating rod 403, thereby ensuring that the bevel gear 402 will not be separated from the bevel gear 401, and the rotating disc 404 can be limited by the support plate 415 to further improve the stability of the transmission members, the L-shaped plate 407 can be prevented from shaking when moving by the limiting block 416, thereby avoiding swinging of the groove plate 406 when being acted on by the convex rod 405, and the movement direction of the circular table 410 can be limited by the fixed plate 417 and the limiting plate 418, thereby cooperating with the pressing plate 408 to ensure that the circular table 410 will not collide with the collecting cylinder 412 when moving.

[0057] Please refer to the accompanying drawings Figure 7 and the accompanying drawings Figure 8 The chute 411 is located above the collecting cylinder 412, and the circular table 410 is opposite to the collecting cylinder 412.

[0058] Since the chute 411 is located directly above the collecting cylinder 412, the debris sliding into the collecting cylinder 412 along the chute 411 will not fall outside the collecting cylinder 412, and the alignment of the circular table 410 with the collecting cylinder 412 enables the circular table 410 to normally apply force to the debris inside the collecting cylinder 412.

[0059] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A multifunctional forming and processing device for motor housings, characterized in that, include: The workbench (1) is used to support the various mechanisms in processing the motor housing; The positioning mechanism (2) is set at the front and rear of the top of the workbench (1) and is used to fix the motor housing at a fixed point. The suction mechanism (3) is set on both sides of the top of the workbench (1) and is used to absorb irritating gases. Waste collection mechanism (4) is set at the rear bottom of the workbench (1) and is used to collect the waste generated during processing; A servo motor (5) is fixedly connected at the bottom of the workbench (1) at the middle of the bottom. The output end of the servo motor (5) passes through the workbench (1) and is fixedly connected to a rotating drum (6). A second spring (7) is fixedly connected at the bottom of the rotating drum (6). A slide plate (8) is fixedly connected at the top of the second spring (7). A T-shaped frame (9) is fixedly connected at the top of the slide plate (8). Multiple pull plates (10) are rotatably connected at the top of the T-shaped frame (9). A grinding disc (11) is rotatably connected at the bottom of each of the multiple pull plates (10). The grinding disc (11) passes through the rotating drum (6) on the side away from each other. The positioning mechanism (2) includes a spring (201), the bottom end of which is fixedly connected to the top of the rotating drum (6). A connecting plate (202) is fixedly connected to the top of the spring (201). Multiple positioning plates (203) are slidably connected to the bottom of the connecting plate (202). Rotating plates (204) are rotatably connected to the bottom of each of the multiple positioning plates (203). The bottom ends of the multiple rotating plates (204) are rotatably connected to the outside of the top of the rotating drum (6). A disc (205) is fixedly connected to the outside of the output end of the servo motor (5). A connecting frame (206) is rotatably connected to the top of the disc (205). 6) The top end is fixedly connected to the top end of the workbench (1). Multiple push plates (207) are slidably connected inside the disc (205). Arc-shaped movable plates (208) are slidably connected to both sides of the top end of the connecting frame (206). I-shaped blocks (209) are slidably connected to the front and rear sides of the top of the workbench (1). Rotating plates (210) are rotatably connected to the lower sides of the I-shaped blocks (209) on one side close to each other. The rotating plates (210) are rotatably connected to the front and rear sides of the bottom of the arc-shaped movable plates (208) on both sides on one side. Arc-shaped clamping plates (211) are fixedly connected to the upper part of the side close to each other of the I-shaped blocks (209). The suction mechanism (3) includes a gear ring (301), the top of which is fixedly connected to the bottom of the disc (205). Driven wheels (302) mesh on both sides of the gear ring (301), and transmission rods (303) are fixedly connected to the tops of the driven wheels (302) on both sides. The tops of the transmission rods (303) on both sides penetrate the worktable (1) and are fixedly connected to impellers (304). An inlet valve is rotatably connected to the outer side of each impeller (304). The bottom ends of the air inlet pipes (305) on both sides are fixedly connected to the top of the workbench (1). The side of the air inlet pipe (305) away from each other is connected to the processing cylinder (307) through the connecting pipe (306). The bottom ends of the processing cylinder (307) are fixedly connected to the top of the workbench (1) on both sides respectively. The processing cylinders (307) on both sides are slidably connected to the movable cylinder (308). The movable cylinders (308) on both sides are provided with activated carbon. The waste collection mechanism (4) includes a helical gear one (401), which is fixedly connected to the bottom end of the driven wheel (302) on one side. The helical gear one (401) is meshed with a helical gear two (402) at the lower part of the helical gear one (401). A rotating rod (403) is fixedly connected to the rear end of the helical gear two (402). A turntable (404) is fixedly connected to the rear end of the rotating rod (403). A protruding rod (405) is fixedly connected to the rear end of the turntable (404). A grooved plate (406) is slidably connected to the outer side of the protruding rod (405). The grooved plate (406) is fixedly connected to the side near the servo motor (5). There is an L-shaped plate (407), and a pressure plate (408) is slidably connected inside the side of the L-shaped plate (407) away from the groove plate (406). A guide plate (409) is slidably connected to the top of the pressure plate (408). The top of the guide plate (409) is fixedly connected to the rear part of the bottom side of the workbench (1). A frustum (410) is rotatably connected to the bottom of the pressure plate (408). An inclined groove (411) is opened at the rear of the top of the workbench (1). A collection cylinder (412) is fixedly connected to the rear of the bottom of the workbench (1). A collection box (413) is slidably connected to the bottom of the collection cylinder (412).

2. The multifunctional forming and processing device for motor housing according to claim 1, characterized in that, The outer side of the slide plate (8) is slidably connected to the inside of the rotating drum (6). The bottom end of the slide plate (8) is fixedly connected to a connecting rod (14). The lower part of the connecting rod (14) is slidably connected to the bottom of the rotating drum (6). The top of the workbench (1) is fixedly connected to multiple horizontal blocks (12). The multiple horizontal blocks (12) are all located outside the rotating drum (6). The bottom of the rotating drum (6) is rotatably connected to a support platform (13). The bottom end of the support platform (13) is fixedly connected to the top of the workbench (1).

3. The multifunctional forming and processing device for motor housing according to claim 1, characterized in that, Multiple positioning plates (203) are rotatably connected to multiple ball bearings at the ends away from the connecting plate (202). The bottom ends of the front and rear arc-shaped clamps (211) are slidably connected to the top of the worktable (1). The bottom end of the connecting plate (202) is fixedly connected to a slide rod (212). The outside of the slide rod (212) is slidably connected to a sleeve (213). The bottom end of the sleeve (213) is fixedly connected to the top of the rotating cylinder (6). The spring (201) is wound around the outside of the sleeve (213). The connecting frame (206) has grooves on both sides inside, and the grooves correspond to the arc-shaped movable plate (208) respectively.

4. The multifunctional forming and processing device for motor housing according to claim 1, characterized in that, The driven wheels (302) on both sides are rotatably connected to the bottom of a support frame (309). The bottom of the support frame (309) on both sides is fixedly connected to the bottom of the workbench (1). The transmission rods (303) on both sides are rotatably connected to a limit frame (310). The outer side of the limit frame (310) is fixedly connected to the inside of the air intake pipes (305) on both sides.

5. The multifunctional forming and processing device for motor housing according to claim 1, characterized in that, The rotating rod (403) is externally rotatably connected to multiple support plates (414), the tops of which are fixedly connected to the top of the workbench (1). The front end of the turntable (404) is externally rotatably connected to a support plate (415), the top of which is fixedly connected to the top of the workbench (1). The top of the L-shaped plate (407) is slidably connected to a limit block (416) on the side near the groove plate (406), the top of which is fixedly connected to the rear side of the top of the workbench (1). The top of the frustum (410) is fixedly connected to a fixing plate (417), the inside of which is slidably connected to a limit plate (418), the top of which is fixedly connected to the rear side of the top of the workbench (1).

6. The multifunctional forming and processing device for motor housing according to claim 1, characterized in that, The inclined groove (411) is located above the collecting cylinder (412), and the frustum (410) is directly opposite the collecting cylinder (412).

Citation Information

Patent Citations

  • Bearing surface treatment equipment and method thereof

    CN114770255A

  • Barrel constant pressing device

    CN210231937U

  • Scrap treatment device for offset cylindrical worm grinding

    CN213616105U