Barb removing and oil coating equipment for workpiece machining

By designing a workpiece processing equipment including a guide mechanism, a moving mechanism, a polishing mechanism, a collection mechanism and an oiling mechanism, the automation problems of deburring and oiling treatment in motor rotor processing are solved, and a more efficient processing process and motor performance are achieved.

CN120134129APending Publication Date: 2025-06-13LINYI GAISHI MACHINERY
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Patent Information

Application Number
CN202510459953.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

During the motor rotor processing process, it is difficult for the prior art to effectively remove burrs and evenly apply oil, resulting in increased friction and reduced efficiency.

Method used

A de-barb oiling equipment for workpiece processing is designed, including a guide mechanism, a moving mechanism, a polishing mechanism, a collection mechanism and an oiling mechanism. Through the coordinated work of these mechanisms, the rotor is automated deburring and oiling treatment.

Benefits of technology

The equipment can automatically handle burrs on the rotor, reduce tedious steps in manual operation, and improve the lubrication effect of the rotor by uniform oiling, reduce friction and improve motor efficiency.

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Abstract

The invention relates to the technical field of workpiece machining, in particular to barb removing and oil coating equipment for workpiece machining, which comprises a worktable, and a guide mechanism is fixedly mounted on the worktable; a moving mechanism is mounted in the workbench in a sliding manner; a polishing mechanism is installed on the portion, close to the top end of the moving mechanism, of the workbench. A collecting mechanism is fixed on the workbench; an oil coating mechanism is mounted at the part, close to the collecting mechanism, of the worktable; the motor rotors are sequentially placed on the guide mechanism, the moving mechanism is started, and the rotor at the bottommost end of the guide mechanism can be moved; a control switch of the polishing mechanism is turned on, so that the polishing mechanism moves to be in contact with the rotor, and the side wall of the rotor can be deburred when the polishing mechanism is started; the rotor subjected to deburring treatment can be conveyed to the oiling mechanism through the moving mechanism and the guiding mechanism, when the oiling mechanism rotates, lubricating oil can be evenly smeared on the rotor, and the machined rotor can be collected through the collecting mechanism.
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Description

Technical Field

[0001] The present invention relates to the technical field of workpiece processing, and specifically relates to a burr-removing and oiling device for workpiece processing. Background Art

[0002] The rotor is one of the important workpieces of an electric motor. It is the rotating part of the motor and, together with the stator (the stationary part of the motor), can achieve the conversion between electrical energy and mechanical energy. During the rotor processing, small protrusions or sharp edges are likely to occur on the surface or edge of the rotor. If not processed, the burrs will increase the friction between the rotor and the stator, bearings or other contact surfaces, resulting in energy loss and reduced efficiency.

[0003] However, when deburring the motor rotor, the operator needs to manually place the rotor on the wire brush wheel part for polishing and deburring. During the operation, if the operation is improper, the rotor may be over-polished, which is likely to cause material loss on the rotor surface and affect its dimensional accuracy; when lubricating the polished rotor, the lubricating device may not ensure uniform coating of the lubricating oil, easily resulting in insufficient or excessive lubrication in some parts of the rotor, and further reducing the efficiency of the motor. Summary of the Invention

[0004] In view of the problems in the prior art, the present invention provides a burr-removing and oiling device for workpiece processing.

[0005] The technical solution adopted by the present invention to solve its technical problems is: a burr-removing and oiling device for workpiece processing, including a workbench, on which a guiding mechanism is fixedly installed; a moving mechanism is slidably installed inside the workbench; a polishing mechanism is installed at a position of the workbench close to the top of the moving mechanism; a collecting mechanism is fixed on the workbench; an oiling mechanism is installed at a position of the workbench close to the collecting mechanism;

[0006] The moving mechanism includes a first motor and a fixing frame. The bottom end of the workbench is fixedly connected to the fixing frame. The fixing frame is fixedly installed with the first motor. The output end of the first motor is fixedly connected to a lead screw through a coupling. A slider is threadedly connected to the lead screw. The slider is fixedly installed with a first hydraulic rod. A chute is provided at a position of the workbench close to the first hydraulic rod. The telescopic end of the first hydraulic rod is fixedly connected to a support rod. The lead screw is rotatably connected between the fixing frame. The slider is slidably connected between the fixing frame. The slider is arranged in a T-shaped structure. The first hydraulic rod is slidably installed at the chute part. The two ends of the support rod are arranged in an arc surface structure.

[0007] Specifically, the guiding mechanism includes a support rod and a guiding wheel. The support rod is fixedly installed on the workbench, and a plurality of guiding wheels are rotatably installed on the support rod at equal intervals. The workbench is fixedly installed with a limiting rod and a bracket. The two support rods, the limiting rod and the bracket are all symmetrically arranged with respect to the support rod. The support rod and the limiting rod are inclined.

[0008] Specifically, the polishing mechanism includes a vertical frame and a second hydraulic rod. The vertical frame is fixedly connected to the workbench, and the second hydraulic rod is fixedly installed on the vertical frame. The telescopic end of the second hydraulic rod is fixedly connected to a sliding plate. A rotating rod is rotatably installed on the sliding plate. A clamping rod is fixedly connected to the rotating rod. A wire brush wheel and a clamping ring are clamped on the clamping rod. A resisting block is threadedly connected to the clamping rod. The sliding plate is slidably connected between the vertical frame. The part where the clamping ring is clamped with the clamping rod is arranged in a regular hexagon structure. The resisting block abuts against the clamping ring.

[0009] Specifically, the collecting mechanism includes an aggregate box and a clamping groove. Two clamping grooves are symmetrically arranged on the workbench. A clamping block is slidably installed at the clamping groove part. The aggregate box is fixedly connected to the clamping block. The two clamping blocks are symmetrically arranged with respect to the aggregate box. The aggregate box is slidably connected to the workbench. The clamping groove and the clamping block are both arranged in a T-shaped structure.

[0010] Specifically, the oiling mechanism includes an oil tank and a mounting frame. Two mounting frames are fixedly connected to the bottom end of the workbench. The oil tank is clamped and installed in the workbench. The oil tank abuts against the mounting frame. A second motor is fixedly installed in the oil tank. The output end of the second motor is fixedly connected to a rotating shaft through a coupling. Another rotating shaft is rotatably connected in the workbench. A roller and a gear are fixedly connected to the rotating shaft. A sponge ring is adhered to the roller. The two gears mesh with each other. The cross-sectional diameters of the two rollers and the gears are equal. The rotating directions of the two rotating shafts are opposite. The cross-sectional diameter of the sponge ring is larger than that of the roller.

[0011] The beneficial effects of the present invention are:

[0012] (1) The barb removal and oiling equipment for workpiece processing described in the present invention can place the motor rotor on the guide mechanism in sequence, and start the moving mechanism to move the rotor at the bottom of the guide mechanism, which is conducive to reducing the tedious steps of manually moving the rotor, that is, when the operator processes the electronic rotor, the rotor can be placed on the support rod first. Since the support rod is inclined, a number of guide wheels are equidistantly installed on the support rod. When the rotor slides along the support rod, it can contact the guide wheel, and then the friction between the rotor and the support rod can be reduced through the guide wheel; a limit groove is provided at one end of the support rod close to the bracket, and the shorter end of the support rod can be used to The rotor is limited, so that the rotor is in the limit groove. At this time, the control switch of the first hydraulic rod is turned on, and the telescopic end of the first hydraulic rod drives the support rod to move upward, so that one end of the support rod can be inserted between the two rotors, so that the rotor at the bottom is clamped on the end of the support rod away from the bracket, and then the support rod is reset and the first motor switch is started, so that the screw rod can rotate in the fixed frame installed at the bottom of the workbench. A slider is threadedly connected to the screw rod. When the slider slides in the fixed frame, it can drive the first hydraulic rod to slide in the direction away from the support rod. When the rotor moves to a position close to the bracket, the rotor can be moved into the bracket by the support rod, so that the bracket limits the rotor.

[0013] (2) The present invention discloses a barb removal and oiling device for workpiece processing. The control switch of the polishing mechanism is turned on to move the polishing mechanism to a state in contact with the rotor. When the polishing mechanism is started, the side wall of the rotor can be deburred. That is, when processing the burrs on the rotor, the wire brush wheel can be first clamped onto the side wall of the clamping rod installed on the rotating rod, and then the clamping ring can be clamped onto the end of the clamping rod. The retaining block can be rotated by using a tool to make the retaining block threadedly installed on the end of the clamping rod, thereby facilitating the disassembly and assembly of the wire brush wheel during use. The rotating rod is fixedly connected to the slide plate installed in the vertical frame. A second hydraulic rod is fixedly installed in the vertical frame. When the second hydraulic rod is started, the telescopic end of the second hydraulic rod can drive the slide plate to slide in the vertical frame. When the slide plate slides in the direction close to the workbench, the rotating rod can drive the wire brush wheel to move to a state in contact with the side wall of the rotor. At this time, the motor switch installed on the slide plate is turned on to drive the rotating rod to rotate, so that the wire brush wheel processes the burrs on the rotor during rotation.

[0014] (3) The debarring and oiling equipment for workpiece processing according to the present invention can convey the rotor after deburring treatment to the oiling mechanism through the moving mechanism and the guiding mechanism. When the oiling mechanism rotates, the lubricating oil can be evenly applied to the rotor. Through the collecting mechanism, the processed rotor can be collected. That is, after the burrs on the rotor are processed, the first motor and the first hydraulic rod are restarted, and the supporting rod can remove the rotor on the bracket. Under the driving force of the lead screw, the supporting rod conveys the rotor to the position between the two limiting rods. The rotor can move along the limiting rods to the position between the two rollers. The rollers are installed in the oil tank, and the oil tank is snap-connected to the workbench. The bottom end of the workbench is fixed with a mounting frame, and the bottom end of the oil tank abuts against the mounting frame. Pour the lubricating oil into the oil tank, and then turn on the control switch of the second motor. The second motor drives a rotating shaft to rotate in the oil tank, so that the gear fixed on the rotating shaft drives the gear on the other rotating shaft to rotate. Since the two rotating shafts are fixed with rollers and the rotating directions of the two rotating shafts are different, when the rollers rotate, the sponge rings sleeved on the side walls of the rollers can adsorb the lubricating oil stored in the oil tank. During the rotation process, the sponge rings apply the lubricating oil to the rotor, and thus the rotor can be oiled. A collecting box is installed at the part of the workbench close to the oil tank. The two sides of the collecting box are fixed with clamping blocks. When installing the collecting box, align the clamping blocks with the clamping grooves provided in the workbench and push the collecting box, so that the clamping blocks can move into the workbench, which is convenient for installing the collecting box and can also place the oiled rotor in the collecting box for storage. Description of the Drawings

[0015] The present invention will be further described below with reference to the drawings and embodiments.

[0016] Figure 1 It is a schematic diagram of the overall structure of a preferred embodiment of the debarring and oiling equipment for workpiece processing provided by the present invention;

[0017] Figure 2 is Figure 1 the enlarged schematic diagram of the structure of part A shown in the figure;

[0018] Figure 3 It is a schematic diagram of the connection structure between the workbench and the vertical frame of the present invention;

[0019] Figure 4 is Figure 3 the enlarged schematic diagram of the structure of part B shown in the figure;

[0020] Figure 5 It is a schematic diagram of the connection structure between the vertical frame and the first hydraulic rod of the present invention;

[0021] Figure 6 is Figure 5 the enlarged schematic diagram of the structure of part C shown in the figure;

[0022] Figure 7Schematic diagram of the connection structure between the rotating roller and the rotating shaft of the present invention;

[0023] Figure 8 Schematic diagram of the connection structure between the workbench and the fixing frame of the present invention.

[0024] In the figure: 1, workbench; 2, guiding mechanism; 201, support rod; 202, guiding wheel; 203, limiting rod; 204, bracket; 3, moving mechanism; 301, first motor; 302, fixing frame; 303, first hydraulic rod; 304, supporting rod; 305, chute; 306, lead screw; 307, slider; 4, collecting mechanism; 401, collecting box; 402, card slot; 403, clamping block; 5, oiling mechanism; 501, oil tank; 502, rotating roller; 503, sponge ring; 504, mounting frame; 505, gear; 506, rotating shaft; 507, second motor; 6, polishing mechanism; 601, vertical frame; 602, second hydraulic rod; 603, sliding plate; 604, rotating rod; 605, wire brush wheel; 606, clamping rod; 607, snap ring; 608, abutting block. Detailed implementation manners

[0025] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.

[0026] As shown in Figure 1 , Figure 3 , Figure 5 , Figure 7 and Figure 8 shown, a bar-removing and oiling device for workpiece processing according to the present invention includes a workbench 1, on which a guiding mechanism 2 is fixedly installed; a moving mechanism 3 is slidably installed in the workbench 1; a polishing mechanism 6 is installed at a position of the workbench 1 close to the top of the moving mechanism 3; a collecting mechanism 4 is fixed on the workbench 1; and an oiling mechanism 5 is installed at a position of the workbench 1 close to the collecting mechanism 4.

[0027] Specifically, as shown in Figure 1 , Figure 2 , Figure 3 and Figure 8As shown in the figure, the moving mechanism 3 includes a first motor 301 and a fixed frame 302. The bottom end of the workbench 1 is fixedly connected to the fixed frame 302, and the first motor 301 is fixedly installed on the fixed frame 302. The output end of the first motor 301 is fixedly connected to a lead screw 306 through a coupling. A slider 307 is threadedly connected to the lead screw 306. A first hydraulic rod 303 is fixedly installed on the slider 307. A chute 305 is provided at a position of the workbench 1 close to the first hydraulic rod 303. The telescopic end of the first hydraulic rod 303 is fixedly connected to a support rod 304. The lead screw 306 is rotatably connected between the fixed frame 302, and the slider 307 is slidably connected between the fixed frame 302. The slider 307 is arranged in a T-shaped structure. The first hydraulic rod 303 is slidably installed at the chute 305 position. The two ends of the support rod 304 are arranged in an arc surface structure.

[0028] Specifically, as Figure 1 , Figure 2 and Figure 3As shown, the guiding mechanism 2 includes a support rod 201 and guiding wheels 202. The support rod 201 is fixedly installed on the workbench 1. A number of guiding wheels 202 are rotatably installed on the support rod 201 at equal intervals. A limiting rod 203 and a bracket 204 are fixedly installed on the workbench 1. The two support rods 201, the limiting rod 203 and the bracket 204 are all symmetrically arranged with respect to the support rod 304. The support rod 201 and the limiting rod 203 are inclined. Place the motor rotor on the guiding mechanism 2 in sequence and start the moving mechanism 3, which can move the rotor at the bottommost end of the guiding mechanism 2, facilitating the reduction of the cumbersome steps of manually moving the rotor. That is, when an operator processes the electronic rotor, the rotor can be first placed on the support rod 201. Since the support rod 201 is inclined and a number of guiding wheels 202 are rotatably installed on the support rod 201 at equal intervals, when the rotor slides along the support rod 201, it can contact the guiding wheels 202, and thus the friction between the rotor and the support rod 201 can be reduced through the guiding wheels 202. A limiting groove is provided at one end of the support rod 201 close to the bracket 204. The shorter end of the support rod 201 can limit the bottommost rotor, so that the rotor is in the limiting groove. At this time, turn on the control switch of the first hydraulic rod 303. The telescopic end of the first hydraulic rod 303 drives the support rod 304 to move upward, so that one end of the support rod 304 can be inserted between two rotors, and thus the bottommost rotor can be clamped at one end of the support rod 304 away from the bracket 204. Then reset the support rod 304. Turn on the switch of the first motor 301, which can make the lead screw 306 rotate in the fixed frame 302 installed at the bottom of the workbench 1. A slider 307 is threadedly connected to the lead screw 306. When the slider 307 slides in the fixed frame 302, it can drive the first hydraulic rod 303 to slide in a direction away from the support rod 201. When the rotor moves to a position close to the bracket 204, the rotor can be moved into the bracket 204 through the support rod 304, and thus the bracket 204 can limit the rotor.

[0029] Specifically, as Figure 1 , Figure 3 , Figure 5 and Figure 6As shown, the polishing mechanism 6 includes a vertical frame 601 and a second hydraulic rod 602. A vertical frame 601 is fixedly connected to the workbench 1, and a second hydraulic rod 602 is fixedly installed on the vertical frame 601. The telescopic end of the second hydraulic rod 602 is fixedly connected to a sliding plate 603. A rotating rod 604 is rotatably installed on the sliding plate 603. A clamping rod 606 is fixedly connected to the rotating rod 604. A wire brush wheel 605 and a clamping ring 607 are clamped and installed on the clamping rod 606. A blocking block 608 is threadedly connected to the clamping rod 606. The sliding plate 603 is slidably connected to the vertical frame 601. The part where the clamping ring 607 is clamped with the clamping rod 606 is arranged in a regular hexagon structure. The blocking block 608 abuts against the clamping ring 607. Turn on the control switch of the polishing mechanism 6 to make it move to a state of contacting the rotor. When the polishing mechanism 6 is started, it can deburr the side wall of the rotor, that is: when dealing with the burrs on the rotor, the wire brush wheel 605 can be first clamped on the side wall of the clamping rod 606 installed on the rotating rod 604, and then the clamping ring 607 can be clamped on the end of the clamping rod 606. Use a tool to rotate the blocking block 608, and the blocking block 608 can be threadedly installed at the end of the clamping rod 606, which is convenient for disassembling and assembling the wire brush wheel 605 during use; the rotating rod 604 is fixedly connected to the sliding plate 603 installed in the vertical frame 601. A second hydraulic rod 602 is fixedly installed in the vertical frame 601. When the second hydraulic rod 602 is started, its telescopic end can drive the sliding plate 603 to slide in the vertical frame 601. When the sliding plate 603 slides in the direction close to the workbench 1, the rotating rod 604 can drive the wire brush wheel 605 to move to a state of contacting the side wall of the rotor. At this time, turn on the motor switch installed on the sliding plate 603 to drive the rotating rod 604 to rotate, so that the wire brush wheel 605 can deal with the burrs on the rotor during rotation.

[0030] Specifically, as Figure 1 , Figure 3 and Figure 4 shown, the collection mechanism 4 includes an aggregate box 401 and a card slot 402. Two card slots 402 are symmetrically arranged on the workbench 1. A clamping block 403 is slidably installed at the position of the card slot 402. An aggregate box 401 is fixedly connected to the clamping block 403. The two clamping blocks 403 are symmetrically arranged with respect to the aggregate box 401. The aggregate box 401 is slidably connected to the workbench 1. Both the card slot 402 and the clamping block 403 are arranged in a T-shaped structure.

[0031] Specifically, as Figure 1 , Figure 3 and Figure 4As shown, the oiling mechanism 5 includes an oil tank 501 and a mounting bracket 504. Two mounting brackets 504 are fixedly connected to the bottom end of the workbench 1. The oil tank 501 is snap-fitted inside the workbench 1. The oil tank 501 abuts against the mounting bracket 504. A second motor 507 is fixedly installed inside the oil tank 501. The output end of the second motor 507 is fixedly connected to a rotating shaft 506 through a coupling. Another rotating shaft 506 is rotatably connected inside the workbench 1. A roller 502 and a gear 505 are fixedly connected to the rotating shaft 506. A sponge ring 503 is adhered to the roller 502. The two gears 505 mesh with each other. The cross-sectional diameters of the two rollers 502 and the gears 505 are equal. The rotating directions of the two rotating shafts 506 are opposite. The cross-sectional diameter of the sponge ring 503 is larger than the cross-sectional diameter of the roller 502. Through the moving mechanism 3 and the guiding mechanism 2, the rotor after deburring treatment can be conveyed onto the oiling mechanism 5. When the oiling mechanism 5 rotates, the lubricating oil can be evenly applied to the rotor. Through the collecting mechanism 4, the processed rotor can be collected, that is: after the burrs on the rotor are processed, restart the first motor 301 and the first hydraulic rod 303. The supporting rod 304 can move the rotor on the bracket 204 away. Under the driving force of the lead screw 306, the supporting rod 304 conveys the rotor to the position between the two limiting rods 203. The rotor can move along the limiting rods 203 to the position between the two rollers 502. The rollers 502 are installed inside the oil tank 501. The oil tank 501 is snap-connected to the workbench 1. The mounting bracket 504 is fixed to the bottom end of the workbench 1. The bottom end of the oil tank 501 abuts against the mounting bracket 504. Pour the lubricating oil into the oil tank 501, and then turn on the control switch of the second motor 507. The second motor 507 drives a rotating shaft 506 to rotate inside the oil tank 501, so that the gear 505 fixed to the rotating shaft 506 drives the gear 505 on the other rotating shaft 506 to rotate. Since the two rotating shafts 506 are fixed with rollers 502 and the rotating directions of the two rotating shafts 506 are different, when the rollers 502 rotate, the sponge ring 503 sleeved on the side wall of the roller 502 can adsorb the lubricating oil stored in the oil tank 501. During the rotation process, the sponge ring 503 applies the lubricating oil to the rotor, and thus the rotor can be oiled. A collecting box 401 is installed at the part of the workbench 1 close to the oil tank 501. Clamping blocks 403 are fixed on both sides of the collecting box 401. When installing the collecting box 401, align the clamping blocks 403 with the clamping slots 402 provided inside the workbench 1 and push the collecting box 401, so that the clamping blocks 403 can move into the interior of the workbench 1, which is convenient for installing the collecting box 401 and can also place the oiled rotor in the collecting box 401 for storage.

[0032] When the present invention is in use, first, when an operator processes an electronic rotor, the rotor can be first placed on the support rod 201. Since the support rod 201 is inclined, a plurality of guide wheels 202 are rotatably installed on the support rod 201 at equal intervals. When the rotor slides along the support rod 201, it can contact the guide wheels 202, and thus the friction between the rotor and the support rod 201 can be reduced through the guide wheels 202. A limiting groove is provided at one end of the support rod 201 close to the bracket 204. The shorter end of the support rod 201 can limit the lowermost rotor, so that the rotor is in the limiting groove. At this time, the control switch of the first hydraulic rod 303 is turned on, and the telescopic end of the first hydraulic rod 303 drives the support rod 304 to move upward, so that one end of the support rod 304 can be inserted between two rotors, and thus the lowermost rotor is clamped to the end of the support rod 304 away from the bracket 204. Then the support rod 304 is reset, and the switch of the first motor 301 is started, so that the lead screw 306 can rotate in the fixed bracket 302 installed at the bottom end of the workbench 1. A slider 307 is threadedly connected to the lead screw 306. When the slider 307 slides in the fixed bracket 302, it can drive the first hydraulic rod 303 to slide in a direction away from the support rod 201. When the rotor moves to a position close to the bracket 204, the rotor can be moved into the bracket 204 through the support rod 304, and thus the bracket 204 limits the rotor.

[0033] When processing the burrs on the rotor, the wire brush wheel 605 can be first clamped to the side wall of the clamping rod 606 installed on the rotating rod 604, and then the snap ring 607 is clamped to the end of the clamping rod 606. By using a tool to rotate the abutting block 608, the abutting block 608 can be threadedly installed at the end of the clamping rod 606, which is convenient for disassembling and assembling the wire brush wheel 605 during use. The rotating rod 604 is fixedly connected to the sliding plate 603 installed in the vertical frame 601. A second hydraulic rod 602 is fixedly installed in the vertical frame 601. When the second hydraulic rod 602 is started, its telescopic end can drive the sliding plate 603 to slide in the vertical frame 601. When the sliding plate 603 slides in a direction close to the workbench 1, the rotating rod 604 can drive the wire brush wheel 605 to move to a state of contacting the side wall of the rotor. At this time, the motor switch installed on the sliding plate 603 is turned on to drive the rotating rod 604 to rotate, and thus the wire brush wheel 605 processes the burrs on the rotor during rotation.

[0034] After the burrs on the rotor are processed, restart the first motor 301 and the first hydraulic rod 303. The supporting rod 304 can move the rotor on the bracket 204 away. Under the driving force of the lead screw 306, the supporting rod 304 transports the rotor to the position between the two limiting rods 203. The rotor can move along the limiting rods 203 to the position between the two rollers 502. The rollers 502 are installed in the fuel tank 501. The fuel tank 501 is snap-connected to the workbench 1. An installation frame 504 is fixed at the bottom end of the workbench 1. The bottom end of the fuel tank 501 abuts against the installation frame 504. Pour lubricating oil into the fuel tank 501, and then turn on the control switch of the second motor 507. The second motor 507 drives a rotating shaft 506 to rotate in the fuel tank 501, so that the gear 505 fixed on the rotating shaft 506 drives the gear 505 on the other rotating shaft 506 to rotate. Since the rollers 502 are fixed on the two rotating shafts 506 and the rotating directions of the two rotating shafts 506 are different, when the rollers 502 rotate, the sponge rings 503 sleeved on the side walls of the rollers 502 can adsorb the lubricating oil stored in the fuel tank 501. During the rotation process, the sponge rings 503 smear the lubricating oil on the rotor, thereby lubricating the rotor. An aggregate box 401 is installed at the part of the workbench 1 close to the fuel tank 501. Clamping blocks 403 are fixed on both sides of the aggregate box 401. When installing the aggregate box 401, align the clamping blocks 403 with the clamping grooves 402 provided in the workbench 1 and push the aggregate box 401, so that the clamping blocks 403 can move into the workbench 1, which is convenient for installing the aggregate box 401 and can also place the lubricated rotor in the aggregate box 401 for storage.

[0035] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.

[0036] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A barb removal and oiling device for workpiece processing, characterized in that: The invention comprises a workbench (1), wherein a guide mechanism (2) is fixedly mounted on the workbench (1); a moving mechanism (3) is slidably mounted inside the workbench (1); a polishing mechanism (6) is mounted at a position of the workbench (1) close to the top of the moving mechanism (3); a collecting mechanism (4) is fixed on the workbench (1); and an oiling mechanism (5) is mounted at a position of the workbench (1) close to the collecting mechanism (4); The moving mechanism (3) comprises a first motor (301) and a fixed frame (302); the bottom end of the workbench (1) is fixedly connected to the fixed frame (302); the first motor (301) is fixedly mounted on the fixed frame (302); the output end of the first motor (301) is fixedly connected to a screw rod (306) via a coupling; a slider (307) is threadedly connected to the screw rod (306); a first hydraulic rod (303) is fixedly mounted on the slider (307); a sliding groove (305) is provided at a portion of the workbench (1) close to the first hydraulic rod (303); and a support rod (304) is fixedly connected to the telescopic end of the first hydraulic rod (303).

2. The barb removal and oiling equipment for workpiece processing according to claim 1, characterized in that: The screw rod (306) is rotationally connected to the fixed frame (302), the slider (307) is slidingly connected to the fixed frame (302), the slider (307) is arranged in a T-shaped structure, the first hydraulic rod (303) is slidably installed in the slide groove (305), and the two ends of the support rod (304) are arranged in an arc surface structure.

3. The barb removal and oiling equipment for workpiece processing according to claim 1, characterized in that: The guide mechanism (2) comprises a support rod (201) and a guide wheel (202); the support rod (201) is fixedly mounted on the workbench (1); a plurality of guide wheels (202) are equidistantly rotatably mounted on the support rod (201); and a limit rod (203) and a bracket (204) are fixedly mounted on the workbench (1).

4. The barb removal and oiling equipment for workpiece processing according to claim 3, characterized in that: The two support rods (201), the limiting rod (203) and the bracket (204) are all symmetrically arranged with respect to the supporting rod (304), and the support rod (201) and the limiting rod (203) are arranged obliquely.

5. The barb removal and oiling equipment for workpiece processing according to claim 1, characterized in that: The polishing mechanism (6) comprises a stand (601) and a second hydraulic rod (602); the stand (601) is fixedly connected to the workbench (1); the second hydraulic rod (602) is fixedly installed on the stand (601); the telescopic end of the second hydraulic rod (602) is fixedly connected to a slide plate (603); a rotating rod (604) is rotatably installed on the slide plate (603); a clamping rod (606) is fixedly connected to the rotating rod (604); a wire brush wheel (605) and a clamping ring (607) are clamped and installed on the clamping rod (606); and a stopper (608) is threadedly connected to the clamping rod (606).

6. The barb removal and oiling equipment for workpiece processing according to claim 5, characterized in that: The slide plate (603) is slidably connected to the stand (601), the portion where the clamping ring (607) and the clamping rod (606) are engaged is arranged in a regular hexagonal structure, and the abutment block (608) abuts against the clamping ring (607).

7. The barb removal and oiling equipment for workpiece processing according to claim 1, characterized in that: The collecting mechanism (4) comprises a material collecting box (401) and a card slot (402); two card slots (402) are symmetrically provided on the workbench (1); a card block (403) is slidably mounted on the card slot (402); and the material collecting box (401) is fixedly connected to the card block (403).

8. The barb removal and oiling equipment for workpiece processing according to claim 7, characterized in that: The two clamping blocks (403) are symmetrically arranged with respect to the material collection box (401); the material collection box (401) is slidably connected to the workbench (1); and the clamping slot (402) and the clamping block (403) are both arranged in a T-shaped structure.

9. The barb removal and oiling equipment for workpiece processing according to claim 1, characterized in that: The oiling mechanism (5) comprises an oil tank (501) and a mounting frame (504). The bottom end of the workbench (1) is fixedly connected to two mounting frames (504). The workbench (1) is provided with an oil tank (501) which is engaged and mounted therein. The oil tank (501) is in contact with the mounting frame (504). A second motor (507) is fixedly mounted therein. The output end of the second motor (507) is fixedly connected to a rotating shaft (506) via a coupling. Another rotating shaft (506) is rotatably connected therein. A rotating roller (502) and a gear (505) are fixedly connected to the rotating shaft (506). A sponge ring (503) is bonded to the rotating roller (502). The two gears (505) are meshed with each other.

10. The barb removal and oiling equipment for workpiece processing according to claim 9, characterized in that: The cross-sectional diameters of the two rotating rollers (502) and the gear (505) are equal, the rotation directions of the two rotating shafts (506) are opposite, and the cross-sectional diameter of the sponge ring (503) is larger than the cross-sectional diameter of the rotating roller (502).