A bearing machining auxiliary device
By designing an automatic flipping and clamping bearing processing auxiliary device, the problem of the existing device requiring multiple loosening and clamping is solved, and convenient processing and efficient grinding of bearing rings are achieved.
Patent Information
- Application Number
- CN202310922771.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-26
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-07-26
AI Technical Summary
The existing bearing processing auxiliary device needs to be loosened and clamped multiple times when processing both sides of the bearing ring, which is inconvenient to operate.
A bearing processing auxiliary device is designed. Through the fixed seat and drive motor fixedly connected to the side of the clamping box, and the combination of an adjusting screw and a telescopic rod, the bearing ring can be automatically flipped and clamped, avoiding the steps of loosening and re-clamping.
The automatic turning and clamping of the bearing ring is realized, the processing flow is simplified, and the processing efficiency and precision are improved.
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Figure CN116713901B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of bearing processing, in particular to a bearing processing auxiliary device. BACKGROUND
[0002] The bearing is an important part of mechanical equipment, which can support the rotating body of the machine and ensure the rotation accuracy. The bearing is composed of an outer ring, an inner ring, balls and a retainer. During the processing of the inner and outer rings of the bearing, polishing equipment and a lathe are generally used to polish and cut the surface of the bearing ring to process the bearing ring into the required shape. During the polishing process of the bearing ring, an auxiliary device is needed to clamp and fix the bearing ring to avoid displacement of the bearing ring, which may cause large errors in processing.
[0003] The existing bearing processing auxiliary device can stably clamp the bearing ring when in use, but after one side of the bearing ring is processed, the other side of the bearing ring needs to be processed. Therefore, the bearing ring needs to be loosened first, and then the bearing ring is turned over and clamped again for processing the other side of the bearing ring, which is inconvenient to use. SUMMARY
[0004] In order to overcome the above technical problems, the purpose of the present application is to provide a bearing processing auxiliary device. The fixed seat is fixedly connected to the side surface of the clamping box. After one side of the bearing ring is processed, the adjusting screw rod is driven to rotate by the driving motor. Since the support column supports the sliding box through the telescopic rod, the adjusting frame drives the support module to move downward, so that the clamping box rotates around the adjusting rod as the center, thereby turning over the bearing ring. The bearing ring does not need to be loosened, which is convenient to use.
[0005] The purpose of the present application can be achieved by the following technical solutions:
[0006] The utility model provides a bearing processing auxiliary device, including clamping module and support module, the clamping module includes bottom plate, the bottom plate top surface fixedly connected with support column no.
[0007] The bearing ring can be placed on the support module, a hydraulic rod can be arranged in the telescopic rod, one end of the hydraulic rod is fixedly connected with the inside of the large end of the telescopic rod, and the output end of the hydraulic rod is fixedly connected with the inside of the small end of the telescopic rod, so that the telescopic rod can be automatically telescoped through the hydraulic rod, the sliding box can drive the adjusting frame to move towards the bearing ring through the telescopic rod, the sliding box can move the clamping box through the adjusting rod, so that the bearing ring is clamped and fixed on the ball of the clamping block through the clamping wheel one and the clamping wheel two, after one side of the bearing ring is processed by the polishing equipment, the adjusting screw can be driven to rotate by the driving motor, the adjusting frame can be driven to move downwards by the adjusting screw because the sliding box is supported by the telescopic rod, the support module can be driven to move downwards by the adjusting frame, so that a certain gap is formed between the support module and the bearing ring, the clamping box can be rotated around the adjusting rod, so that the bearing ring is turned over, the bearing ring can be smoothly rotated on the clamping block through the ball, after the bearing ring is turned over, the clamping block can still be located at the bottom of the bearing ring, so that the clamping block can maintain a certain gap with the polishing block when the polishing head corresponds to the clamping block, the polishing block can polish the side of the bearing ring located on the clamping block, and because the clamping wheel one and the clamping wheel two can clamp the bearing ring on the clamping block, the horizontal position of the clamping block does not change, so that the polishing block can be aligned with the bearing ring through the clamping block when clamping the bearing ring of different sizes, and the polishing can be quickly carried out.
[0008] Further in, the inner side of the bottom of the fixed seat is rotationally connected with a rotating shaft I fixedly connected with the bottom surface of the adjacent clamping wheel, the inner side of the clamping box is rotationally connected with a rotating shaft II, the side surfaces of the rotating shaft I and the rotating shaft II are fixedly sleeved with belt pulleys, and the two belt pulleys are drivingly connected through a belt, the inside of the clamping box is provided with a transmission rod, the transmission rod passes through the inside of the adjusting rod, the inner side of the sliding box is provided with a power motor, the output end of the power motor is drivingly connected with one end of the transmission rod, the side surface of the transmission rod and the side surface of the rotating shaft II are fixedly sleeved with bevel gears, the two bevel gears are meshing transmission, the power motor can drive the transmission rod to rotate, the transmission rod can drive the rotating shaft II to rotate through the bevel gears, the rotating shaft II and the rotating shaft I can synchronously rotate through the belt pulleys, so that the rotating shaft I can drive the clamping wheel I to rotate, and the clamping wheel I can drive the bearing ring to rotate, so that each part of the top surface of the bearing ring passes the polishing head in sequence, and the top surface of the bearing ring is polished comprehensively.
[0009] Further in, the side surface of the adjusting rod is fixedly sleeved with an adjusting gear, and the inner side of the adjusting frame is fixedly connected with a toothed plate corresponding to the adjusting gear at the top, when the adjusting frame drives the supporting module to move downwards, the adjusting frame can drive the toothed plate to move downwards, after the toothed plate is meshed with the adjusting gear, the toothed plate can drive the adjusting gear to rotate, so that the adjusting rod is rotated, and the clamping box is automatically turned over.
[0010] Further in, the inner side of the clamping box is fixedly connected with a fixed cylinder rotationally connected with the side surface of the transmission rod, the inner side of the fixed cylinder is slidingly connected with a ratchet block I, one end of the adjusting rod is fixedly connected with a ratchet block II meshed with the ratchet block I, and the side surface of the ratchet block II is rotationally connected with the inner side of the fixed cylinder, and the inner side of the fixed cylinder is fixedly connected with a return spring fixedly connected with the side surface of the ratchet block I, under the action of the return spring, the ratchet block I and the ratchet block II can be kept meshed, the toothed plate and the adjusting gear are meshed, so that the adjusting rod can be driven to rotate, the ratchet block II can be driven to rotate by the adjusting rod, the ratchet block I can be driven to rotate by the ratchet block II, and the fixed cylinder can be driven to rotate by the ratchet block I, so that the clamping box, the fixed seat and the rotating seat are rotated, so that the clamping wheel I and the clamping wheel II drive the bearing ring to rotate on the ball on the clamping block, so that the bearing ring is turned over, then the adjusting screw rod can be reversely rotated by the driving motor, the adjusting frame drives the toothed plate to move upwards, so that the adjusting rod is reversely rotated, since the ratchet block II can only drive the ratchet block I to rotate in one direction, the ratchet block II will not drive the ratchet block I to rotate, so that the clamping box and the bearing ring are not reversely rotated, and the bearing ring is smoothly rotated.
[0011] Further, the inner side of the rotating seat is rotationally connected with the fixed block fixedly connected with the side of the clamping box, the inner side of the fixed block is fixedly connected with the fixed shaft rotationally connected with the inner side of the fixed block, and the inner side of the fixed block and the side of the fixed shaft are provided with the torsion spring.
[0012] Further, the support module comprises a support plate, the sides of the support column one and the support column two are slidingly connected with the side of the support plate, the top surface of the support plate is provided with an open slot, the inner sides of the two sides of the open slot are provided with connecting grooves, the inner sides of the connecting grooves are slidingly connected with sliding plates, the opposite surfaces of the two sliding plates are fixedly connected with the side of the adjusting frame, the sliding plates can slide in the connecting grooves, the support plate can move upward or downward along the support column one and the support column two, and the adjusting frame can support the support plate through the sliding plates.
[0013] Further, the inner side of the rotating seat is rotationally connected with the fixed block fixedly connected with the side of the clamping box, the inner side of the fixed block is fixedly connected with the fixed shaft rotationally connected with the inner side of the fixed block, and the inner side of the fixed block and the side of the fixed shaft are provided with the torsion spring.
[0014] Further, the two sides of the sliding seat are fixedly connected with the sliding rods slidingly connected with the inner sides of the adjacent connecting grooves, the inner sides of the connecting grooves are fixedly connected with the first rack, the side of the sliding seat is fixedly connected with the second rack slidingly connected with the inner side of the connecting groove, one end of the sliding rod between the first rack and the second rack is rotationally connected with the connecting shaft, the side of the connecting shaft is fixedly sleeved with the connecting gear, and the first rack and the second rack are in meshing transmission with the connecting gear. When the adjusting frame is moved by the telescopic rod and the bearing ring is clamped, the adjusting frame can drive the second rack to move through the sliding plate, the second rack can drive the connecting gear to roll on the first rack, the connecting gear drives the sliding rod to move through the connecting shaft, the sliding rod can drive the sliding seat and the support disc to move, and since the moving distance of the second rack is twice the moving distance of the connecting gear, that is, the moving distance of the clamping wheel one is twice the moving distance of the support disc. After the bearing ring is clamped, the axis of the support disc and the axis of the bearing ring are located on the same straight line, so that different sizes of bearing rings can be adapted, and the self-rotation of the bearing ring is facilitated.
[0015] The beneficial effects of the present application are as follows:
[0016] 1、Through the fixed seat fixedly connected with the clamping box side, after the bearing ring is placed on the support module, the bearing ring can be clamped and fixed on the ball on the clamping block through the clamping wheel one and the clamping wheel two, one side of the bearing ring can be processed, then the adjusting screw rod can be rotated through the driving motor, since the support column one supports the sliding box through the telescopic rod, the adjusting frame can drive the support module to move downwards, so that the clamping box can rotate around the adjusting rod, thereby the bearing ring can be turned over, without the need of loosening the bearing ring, the bearing ring can be smoothly rotated on the clamping block through the contact between the ball and the bearing ring, so that the clamping block can be always located at the bottom of the bearing ring, the polishing head can correspond to the clamping block, the clamping block can always keep a certain distance from the polishing block, so that the polishing block can smoothly polish the bearing ring, since the clamping wheel one and the clamping wheel two can abut the bearing ring on the clamping block, when clamping the bearing rings of different sizes, the polishing block can be aligned with the bearing ring through the clamping block, and the bearing ring can be placed on the support disc, the clamping wheel one can be rotated through the power motor, so that the bearing ring can be rotated, and the support disc can rotate in the sliding seat, so that the support disc can rotate with the bearing ring, thereby avoiding that the bearing ring is greatly rubbed on the support disc and affects the rotation of the bearing ring, and the adjusting frame can drive the rack two to move through the sliding plate, so that the connecting gear drives the sliding seat and the support disc to move, and the moving distance of the adjusting frame is twice the moving distance of the support disc, so that when the bearing rings of different sizes are clamped, the axis of the support disc and the axis of the bearing ring can be in the same straight line, thereby facilitating the rotation of the bearing ring.
[0017] 2、Through the rack one and the rack two are engaged with the connecting gear, the telescopic rod can drive the adjusting frame to move the clamping box towards the bearing ring, so that the clamping wheel one and the clamping wheel two can clamp and fix the bearing ring, the bearing ring can be placed on the support disc, the clamping wheel one can be rotated through the power motor, so that the bearing ring can be rotated, and the support disc can rotate in the sliding seat, so that the support disc can rotate with the bearing ring, thereby avoiding that the bearing ring is greatly rubbed on the support disc and affects the rotation of the bearing ring, and the adjusting frame can drive the rack two to move through the sliding plate, so that the connecting gear drives the sliding seat and the support disc to move, and the moving distance of the adjusting frame is twice the moving distance of the support disc, so that when the bearing rings of different sizes are clamped, the axis of the support disc and the axis of the bearing ring can be in the same straight line, thereby facilitating the rotation of the bearing ring. BRIEF DESCRIPTION OF DRAWINGS
[0018] The application will be further described below in combination with the drawings.
[0019] Figure 1 is the overall structure schematic diagram of the bearing processing auxiliary device of the application;
[0020] Figure 2 is the support plate structure schematic diagram in the application;
[0021] Figure 3 is the clamping block structure schematic diagram in the application;
[0022] Figure 4 is the support plate overhead structure schematic diagram in the application;
[0023] Figure 5 is the internal overhead structure schematic diagram of the connecting groove in the application;
[0024] Figure 6 isFigure 5 Enlarged view of A in FIG. 1;
[0025] Figure 7 Schematic diagram of internal structure of the adjusting frame in the present application;
[0026] Figure 8 Schematic diagram of internal structure of the clamping box in the present application;
[0027] Figure 9 Schematic diagram of top view structure of the fixing block in the present application.
[0028] In the figure: 100, clamping module; 110, bottom plate; 111, support column one; 112, support column two; 113, telescopic rod; 120, clamping box; 121, fixing seat; 122, rotating shaft one; 123, rotating shaft two; 124, transmission rod; 125, fixing cylinder; 126, return spring; 127, bevel gear; 128, pulley; 130, clamping block; 140, adjusting frame; 141, sliding box; 142, adjusting screw; 143, driving motor; 144, toothed plate; 150, rotating seat; 151, fixing block; 152, fixing shaft; 153, torsion spring; 160, power motor; 170, adjusting rod; 171, adjusting gear; 200, support module; 210, support plate; 211, rack one; 212, open slot; 213, connecting slot; 220, sliding seat; 221, support disc; 230, sliding plate; 231, rack two; 240, sliding rod; 241, connecting shaft; 242, connecting gear. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0030] Please refer to Figures 1-9As shown, a bearing processing auxiliary device includes clamping module 100 and support module 200, clamping module 100 includes bottom plate 110, the top surface of bottom plate 110 is fixedly connected with support column one 111 and support column two 112, the top end of support column one 111 is fixedly connected with telescopic rod 113, one end of telescopic rod 113 is provided with adjusting frame 140 fixedly connected with support module 200, the inner side bottom of adjusting frame 140 is slidably connected with sliding box 141 fixedly connected with one end of telescopic rod 113, the inner side of adjusting frame 140 is rotatably connected with adjusting screw 142 screwing with the inner side of sliding box 141, the top surface of adjusting frame 140 is fixedly connected with driving motor 143, the output end of driving motor 143 is drivingly connected with the top end of adjusting screw 142, the side away from telescopic rod 113 of sliding box 141 is rotatably connected with adjusting rod 170, one end of adjusting rod 170 is provided with clamping box 120, the side of clamping box 120 is fixedly connected with fixed seat 121, the inner side of fixed seat 121 is rotatably connected with clamping wheel one, the top end of support column two 112 is fixedly connected with clamping block 130, the side of clamping block 130 is rotatably connected with a plurality of ball bearings, both sides of the side of fixed seat 121 are provided with rotating seat 150, the inner side of rotating seat 150 is rotatably connected with clamping wheel two.
[0031] The bearing ring can be placed on the support module 200, a hydraulic rod can be arranged in the telescopic rod 113, one end of the hydraulic rod is fixedly connected with the inside of the large end of the telescopic rod 113, and the output end of the hydraulic rod is fixedly connected with the inside of the small end of the telescopic rod 113, so that the telescopic rod 113 can be automatically telescoped through the hydraulic rod, the telescopic rod 113 can drive the sliding box 141 and the adjusting frame 140 to move towards the bearing ring, the sliding box 141 can drive the clamping box 120 to move through the adjusting rod 170, so that the bearing ring is clamped and fixed on the ball on the clamping block 130 through the clamping wheel one and the clamping wheel two, and after one side of the bearing ring is processed by the grinding device, the adjusting screw 142 can be driven to rotate by the driving motor 143, the adjusting screw 142 can drive the adjusting frame 140 to move downwards, and the support module 200 can be driven to move downwards by the adjusting frame 140, so that a certain gap is formed between the support module 200 and the bearing ring, so that the clamping box 120 can be rotated around the adjusting rod 170, thereby turning over the bearing ring, and the bearing ring can be smoothly rotated on the clamping block 130 through the ball in contact with the bearing ring, the clamping block 130 can still be at the bottom of the bearing ring after the bearing ring is turned over, so that the clamping block 130 can keep a certain distance from the grinding block when the grinding head corresponds to the clamping block 130, the clamping block 130 can be conveniently ground by the grinding block on one side of the bearing ring located on the clamping block 130, and since the clamping wheel one and the clamping wheel two can abut the bearing ring on the clamping block 130, the horizontal position of the clamping block 130 will not change, so that the grinding block can be aligned with the bearing ring through the clamping block 130 when clamping different sizes of bearing rings, and the grinding can be conveniently and quickly performed.
[0032] The bottom inner side of the fixing base 121 is rotationally connected with a rotating shaft I 122 fixedly connected with the bottom surface of the adjacent clamping wheel, the inner side of the clamping box 120 is rotationally connected with a rotating shaft II 123, the side surface of the rotating shaft I 122 and the side surface of the rotating shaft II 123 are fixedly sleeved with a belt pulley 128, and the two belt pulleys 128 are drivingly connected through a belt, the inside of the clamping box 120 is provided with a transmission rod 124, the transmission rod 124 passes through the inside of the adjusting rod 170, the inner side of the sliding box 141 is provided with a power motor 160, the output end of the power motor 160 is drivingly connected with one end of the transmission rod 124, the side surface of the transmission rod 124 and the side surface of the rotating shaft II 123 are fixedly sleeved with a bevel gear 127, the two bevel gears 127 are meshingly drivingly connected, the power motor 160 can drive the transmission rod 124 to rotate, the transmission rod 124 can drive the rotating shaft II 123 to rotate through the bevel gear 127, the rotating shaft II 123 and the rotating shaft I 122 can synchronously rotate through the belt pulley 128, so that the rotating shaft I 122 can drive the clamping wheel I to rotate, the clamping wheel I can drive the bearing ring to rotate, and each part of the top surface of the bearing ring sequentially passes through the polishing head, so that the top surface of the bearing ring is comprehensively polished, and a rubber ring can be arranged on the surface of the clamping wheel I, so that the clamping wheel contacts the bearing ring through the rubber ring, which is beneficial to increase the friction and make the clamping wheel I stably drive the bearing ring to rotate.
[0033] The side surface of the adjusting rod 170 is fixedly sleeved with an adjusting gear 171, and the inner side of the adjusting frame 140 is fixedly connected with a toothed plate 144 at the top corresponding to the adjusting gear 171, when the adjusting frame 140 drives the supporting module 200 to move downward, the adjusting frame 140 can drive the toothed plate 144 to move downward, after the toothed plate 144 is meshed with the adjusting gear 171, the toothed plate 144 can drive the adjusting gear 171 to rotate, so that the adjusting rod 170 rotates, and the clamping box 120 automatically overturns.
[0034] The inner side of the clamping box 120 is fixedly connected with a fixed cylinder 125 rotatably connected with the side of the transmission rod 124, the inner side of the fixed cylinder 125 is slidably connected with a ratchet block one, one end of the adjusting rod 170 is fixedly connected with a ratchet block two meshing with the ratchet block one, and the side of the ratchet block two is rotatably connected with the inner side of the fixed cylinder 125. The inner side of the fixed cylinder 125 is fixedly connected with a return spring 126 fixedly connected with the side of the ratchet block one. Under the action of the return spring 126, the ratchet block one and the ratchet block two can be kept in engagement. The ratchet block one can slide in the fixed cylinder 125. A clamping block slidably connected with the inner side of the fixed cylinder 125 can be fixedly arranged on the side of the ratchet block one, so that the ratchet block one drives the fixed cylinder 125 to rotate through the clamping block, and the ratchet block one can smoothly slide in the fixed cylinder 125. The toothed plate 144 is meshed with the adjusting gear 171, so that when the adjusting rod 170 rotates, the adjusting rod 170 can drive the ratchet block two to rotate, the ratchet block two can drive the ratchet block one to rotate, and the ratchet block one can drive the fixed cylinder 125 to rotate, so that the clamping box 120, the fixed seat 121 and the rotating seat 150 rotate, thereby driving the clamping wheel one and the clamping wheel two to rotate on the ball on the clamping block 130, so as to overturn the bearing ring. Then the adjusting screw 142 can be reversely rotated by the driving motor 143, so that the adjusting frame 140 drives the toothed plate 144 to move upwards, thereby reversely rotating the adjusting rod 170. Since the ratchet block two can only drive the ratchet block one to rotate in one direction, the ratchet block two will not drive the ratchet block one to rotate, so that the clamping box 120 and the bearing ring will not reversely rotate, so that the bearing ring can rotate smoothly. A damper can be arranged between the side of the adjusting rod 170 and the inner side of the sliding box 141, so as to avoid the adjusting rod 170 from rotating randomly, thereby roughly maintaining the angle of the clamping box 120.
[0035] The inner side of the rotating seat 150 is rotatably connected with a fixed block 151 fixedly connected with the side of the clamping box 120. The inner side of the rotating seat 150 is fixedly connected with a fixed shaft 152 rotatably connected with the inner side of the fixed block 151. A torsion spring 153 is arranged between the inner side of the fixed block 151 and the side of the fixed shaft 152. The rotating seat 150 can be connected with the clamping box 120 through the fixed block 151, and the rotating seat 150 can drive the clamping wheel two to rotate around the fixed shaft 152. After the clamping wheel one abuts against the side of the bearing ring, the clamping wheel two can abut against the side of the bearing ring under the action of the torsion spring 153, thereby limiting the position of the bearing ring and clamping and fixing the bearing ring.
[0036] The support module 200 comprises a support plate 210, the support column one 111 and the support column two 112 are slidably connected with the side surface of the support plate 210, the top surface of the support plate 210 is provided with an open slot 212, the inner side surface of the two sides of the open slot 212 is provided with a connecting slot 213, the inner side surface of the connecting slot 213 is slidably connected with a sliding plate 230, the opposite surface of the two sliding plates 230 is fixedly connected with the side surface of the adjusting frame 140, the sliding plate 230 can slide in the connecting slot 213, the support plate 210 can move upward or upward along the support column one 111 and the support column two 112, and the adjusting frame 140 can support the support plate 210 through the sliding plate 230.
[0037] The inner side surface of the open slot 212 is slidably connected with a sliding seat 220, the inner side surface of the sliding seat 220 is rotatably connected with a support disc 221, the bearing ring can be placed on the support disc 221, and the support disc 221 can rotate in the sliding seat 220, so that the support disc 221 can rotate with the bearing ring when the power motor 160 makes the bearing ring rotate, and the bearing ring is prevented from rotating relative to the support disc 221 and causing large friction to affect the rotation of the bearing ring.
[0038] The two side surfaces of the sliding seat 220 are fixedly connected with sliding rods 240 which are slidably connected with the inner side surfaces of the adjacent connecting slots 213, the inner side surface of the connecting slot 213 is fixedly connected with a rack one 211, the side surface of the sliding seat 220 is fixedly connected with a rack two 231 which is slidably connected with the inner side surface of the connecting slot 213, one end of the sliding rod 240 between the rack one 211 and the rack two 231 is rotatably connected with a connecting shaft 241, the side surface of the connecting shaft 241 is fixedly sleeved with a connecting gear 242, the rack one 211 and the rack two 231 are in meshing transmission with the connecting gear 242, when the telescopic rod 113 moves the adjusting frame 140 to clamp the bearing ring, the adjusting frame 140 can drive the rack two 231 to move through the sliding plate 230, the rack two 231 can drive the connecting gear 242 to roll on the rack one 211, the connecting gear 242 drives the sliding rod 240 to move through the connecting shaft 241, and the sliding rod 240 can drive the sliding seat 220 and the support disc 221 to move, because the moving distance of the rack two 231 is twice the moving distance of the connecting gear 242, that is, the moving distance of the clamping wheel one is twice the moving distance of the support disc 221, so that the axis of the support disc 221 and the axis of the bearing ring are located on the same straight line after the bearing ring is clamped, so that different sizes of the bearing ring can be adapted, and the rotation of the bearing ring is facilitated.
[0039] Working principle: when in use, the bearing ring can be conveyed to the support disc 221, and then the sliding box 141 drives the adjusting frame 140 to move towards the bearing ring through the telescopic rod 113. The sliding box 141 can drive the adjusting rod 170 to move, and the adjusting rod 170 can drive the clamping box 120 through the ratchet block one and the ratchet block two, so that the clamping box 120 drives the fixing seat 121 to move towards the bearing ring, and the clamping wheel one in the fixing seat 121 abuts the bearing ring on the ball of the clamping block 130. Under the action of the torsion spring 153, the clamping wheel two can abut against the bearing ring, so that the two clamping wheels two clamp and fix the bearing ring, so that the bearing ring is clamped and fixed on the support disc 221 by the clamping wheel one, the clamping wheel two and the ball;
[0040] When the adjusting frame 140 moves, the adjusting frame 140 can drive the sliding plate 230 to move, and the sliding plate 230 can drive the rack two 231 to move. The rack two 231 can drive the connecting gear 242 to roll on the rack one 211, so that the connecting gear 242 drives the sliding rod 240 to move through the connecting shaft 241. The sliding rod 240 can drive the sliding seat 220 to move, so that the sliding seat 220 drives the support disc 221 to move. The movement distance of the rack two 231 is twice the movement distance of the connecting gear 242, that is, the movement distance of the clamping wheel one is twice the movement distance of the support disc 221. In this way, after clamping the bearing ring, the axis of the support disc 221 and the axis of the bearing ring are located on the same straight line;
[0041] The top surface of the bearing ring can be polished by the polishing head of the polishing device. The polishing head can contact the part of the bearing ring on the ball of the clamping block 130. At the same time, the power motor 160 can be started, which can drive the transmission rod 124 to rotate. The transmission rod 124 can drive the rotating shaft two 123 to rotate through the bevel gear 127. The rotating shaft two 123 can drive the rotating shaft one 122 to rotate through the belt pulley 128. The rotating shaft one 122 can drive the clamping wheel one to rotate, so that the bearing ring rotates, and each part of the top surface of the bearing ring passes through the polishing head in turn, so that the top surface of the bearing ring is polished comprehensively;
[0042] After the grinding of the top surface of the bearing ring is completed, the driving motor 143 is started, and the driving motor 143 can drive the adjusting screw rod 142 to rotate, and since the supporting column one 111 supports the sliding box 141 through the telescopic rod 113, when the adjusting screw rod 142 rotates, the adjusting screw rod 142 will move downwards along the sliding box 141, drive the adjusting frame 140 to move downwards, the adjusting frame 140 can drive the supporting plate 210 to move downwards through the sliding plate 230, so that the supporting module 200 moves downwards, and the adjusting frame 140 can drive the toothed plate 144 to move downwards, when the toothed plate 144 contacts the adjusting gear 171, the adjusting gear 171 will drive the adjusting rod 170 to rotate, so that the adjusting rod 170 can drive the ratchet block two to rotate, and since the ratchet block one is engaged with the ratchet block two under the action of the reset spring 126, the ratchet block two will drive the ratchet block one to rotate, the ratchet block one will drive the fixed cylinder 125 to rotate, the fixed cylinder 125 will drive the clamping box 120 to rotate, so that the clamping wheel one and the clamping wheel two drive the ball on the clamping block 130 on the bearing ring to rotate, so as to turn over the bearing ring;
[0043] The adjusting screw rod 142 can be reversely rotated by the driving motor 143, so that the adjusting frame 140 drives the toothed plate 144 and the supporting module 200 to move upwards, at this time, the toothed plate 144 will reversely rotate the adjusting gear 171, so that the adjusting rod 170 and the ratchet block two reversely rotate, and since the ratchet block two can only drive the ratchet block one to rotate in one direction, when the ratchet block two reversely rotates, the ratchet block two will not drive the ratchet block one to rotate, so that the clamping box 120 and the bearing ring will not reversely rotate, after the supporting disc 221 contacts the bottom of the bearing ring again, the bearing ring can be driven to rotate again by the power motor 160, and the bottom surface of the bearing ring can be ground by the grinding block, after the grinding is completed, the adjusting frame 140 and the clamping box 120 can be moved away from the bearing ring by the telescopic rod 113, so as to loosen the bearing ring, and then the grinding of the next bearing ring can be performed.
[0044] In the description of the present specification, the description referring to the terms "one embodiment", "an example", "a specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0045] The above is only an example and description of the present application, and those skilled in the art can make various modifications or supplements or adopt similar ways to replace the described specific embodiments, as long as they do not deviate from the invention or exceed the scope defined by the present claims, which shall be within the protection scope of the present application.
Claims
1. A bearing processing auxiliary device, characterized in that: The invention comprises a clamping module (100) and a supporting module (200), wherein the clamping module (100) comprises a bottom plate (110), the top surface of the bottom plate (110) is fixedly connected with a supporting column 1 (111) and a supporting column 2 (112), the top of the supporting column 1 (111) is fixedly connected with a telescopic rod (113), one end of the telescopic rod (113) is provided with an adjusting frame (140) fixedly connected with the supporting module (200), the bottom of the inner side surface of the adjusting frame (140) is slidably connected with a sliding box (141) fixedly connected with one end of the telescopic rod (113), the inner side surface of the adjusting frame (140) is rotatably connected with an adjusting screw (142) screwed together with the inner side surface of the sliding box (141), and the top surface of the adjusting frame (140) is fixedly connected with a driving motor. (143), the output end of the driving motor (143) is connected to the top of the adjusting screw rod (142) in a transmission manner, the sliding box (141) is rotatably connected to the side of the telescopic rod (113) with the adjusting rod (170), one end of the adjusting rod (170) is provided with a clamping box (120), the side of the clamping box (120) is fixedly connected to the fixing seat (121), the inner side of the fixing seat (121) is rotatably connected to the clamping wheel 1, the top of the supporting column 2 (112) is fixedly connected to the clamping block (130), the clamping block (130) is located on the side of the clamping box (120) and is rotatably connected to a plurality of round balls, both sides of the side of the fixing seat (121) are provided with a rotating seat (150), the inner side of the rotating seat (150) is rotatably connected to the clamping wheel 2; The inner side surface of the bottom of the fixed seat (121) is rotatably connected to a rotating shaft 1 (122) fixedly connected to the bottom surface of the adjacent clamping wheel 1, and the inner side surface of the clamping box (120) is rotatably connected to a rotating shaft 2 (123). The sides of the rotating shaft 1 (122) and the rotating shaft 2 (123) are both fixedly sleeved with pulleys (128), and the two pulleys (128) are connected by belt transmission. A transmission rod (124) is provided inside the clamping box (120), and the transmission rod (124) passes through the inside of the adjustment rod (170). A power motor (160) is provided on the inner side surface of the sliding box (141), and the output end of the power motor (160) is transmission-connected to one end of the transmission rod (124). The sides of the transmission rod (124) and the side of the rotating shaft 2 (123) are both fixedly sleeved with bevel gears (127), and the two bevel gears (127) are meshed for transmission. An adjusting gear (171) is fixedly sleeved on the side of the adjusting rod (170), and a toothed plate (144) is fixedly connected to the top of the inner side surface of the adjusting frame (140) corresponding to the adjusting gear (171); The inner side surface of the clamping box (120) is fixedly connected to a fixed cylinder (125) that is rotatably connected to the side surface of the transmission rod (124), and the inner side surface of the fixed cylinder (125) is slidably connected to a ratchet block 1. One end of the adjustment rod (170) is fixedly connected to a ratchet block 2 that meshes with the ratchet block 1, and the side surface of the ratchet block 2 is rotatably connected to the inner side surface of the fixed cylinder (125). The inner side surface of the fixed cylinder (125) is fixedly connected to a return spring (126) that is fixedly connected to the side surface of the ratchet block 1.
2. A bearing processing auxiliary device according to claim 1, characterized in that: The inner side surface of the rotating seat (150) is rotatably connected to a fixed block (151) fixedly connected to the side surface of the clamping box (120), the inner side surface of the rotating seat (150) is fixedly connected to a fixed shaft (152) rotatably connected to the inner side surface of the fixed block (151), and a torsion spring (153) is provided between the inner side surface of the fixed block (151) and the side surface of the fixed shaft (152).
3. A bearing processing auxiliary device according to claim 1, characterized in that: The support module (200) includes a support plate (210), the side surfaces of the support column 1 (111) and the support column 2 (112) are both slidably connected to the side surfaces of the support plate (210), the top surface of the support plate (210) is provided with an opening groove (212), the inner side surfaces of both sides of the opening groove (212) are both provided with connecting grooves (213), the inner side surfaces of the connecting grooves (213) are slidably connected to the sliding plates (230), and the opposite surfaces of the two sliding plates (230) are fixedly connected to the side surfaces of the adjustment frame (140).
4. A bearing processing auxiliary device according to claim 3, characterized in that: The inner side surface of the opening groove (212) is slidably connected to a sliding seat (220), and the inner side surface of the sliding seat (220) is rotatably connected to a supporting plate (221).
5. A bearing processing auxiliary device according to claim 4, characterized in that: Both sides of the sliding seat (220) are fixedly connected to a sliding rod (240) that is slidably connected to the inner side of the adjacent connecting groove (213), the inner side of the connecting groove (213) is fixedly connected to the first rack (211), and the side of the sliding seat (220) is fixedly connected to the second rack (231) that is slidably connected to the inner side of the connecting groove (213), one end of the sliding rod (240) located between the first rack (211) and the second rack (231) is rotatably connected to the connecting shaft (241), and the side of the connecting shaft (241) is fixedly sleeved with a connecting gear (242), and the first rack (211) and the second rack (231) are both meshed with the connecting gear (242) for transmission.
Citation Information
Patent Citations
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