Polishing device for part machining

Through the design of the cylinder frame assembly and transmission assembly, the automatic polishing of the workpiece shaft body is realized, solving the safety hazards and increased operating steps caused by manual adjustment, and improving the polishing efficiency and safety.

CN120347655AActive Publication Date: 2025-07-22JIANGSU TONGSHUN POWER TECH CO LTD
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Patent Information

Application Number
CN202510275643.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-07-22
Estimated Expiration
2045-03-10

AI Technical Summary

Technical Problem

Existing polishing equipment requires manual adjustment of the decent position of the shaft, adding operation steps and posing safety risks.

Method used

A polishing device is designed to clamp the workpiece shaft body through the clamping assembly of the cylinder frame assembly, and combine the reciprocating driving of the transmission assembly and the rotational movement of the feed assembly to realize the automatic rotation and polishing of the workpiece shaft body, reducing manual intervention.

Benefits of technology

Automatic polishing of the workpiece shaft body is realized, reducing operating steps and improving safety and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a polishing device for part machining, and relates to the technical field of polishing equipment. The discharging assembly is installed at the bottom of the main frame assembly, the barrel frame assembly is installed on the right side of the main frame assembly, a workpiece shaft entering through the barrel frame assembly can be clamped by the clamping assembly at the barrel frame assembly, and after the polishing assembly is externally connected with power, the transmission assembly operates to drive the reciprocating assembly in a reciprocating mode. The polishing assembly is installed on the reciprocating assembly, the polishing assembly can polish a workpiece shaft body, meanwhile, a feeding assembly of the polishing assembly can make contact with a driven block at the position of the cylinder frame assembly, rotation of the workpiece shaft body on the cylinder frame assembly is achieved, rotation of the workpiece shaft body during reciprocating polishing of the polishing assembly is achieved, and the rotation effect of the workpiece shaft body during polishing is achieved. The problems that when the surface position of a shaft body is manually adjusted in the prior art, a workpiece needs to be clamped for the second time after adjustment, operation steps are increased, and meanwhile unnecessary potential safety hazards are inevitable are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of polishing equipment, and particularly relates to a polishing device for part processing. Background Art

[0002] With the continuous development of technology, people's living standards are also increasing. To improve people's living standards, it is necessary to transform cities with large population flows, increase the construction of buildings in the cities, build good greening areas in the cities, etc., so that the garden construction near the cities increases. In the constructed green gardens, there are not only greening facilities but also some decorative elements similar to landscapes, such as various light belts and waterwheels. For buildings similar to waterwheels, they will operate continuously. To increase the stability and durability of the device during operation, some mechanical components will be used.

[0003] During the long-term operation of mechanical components, wear problems will inevitably occur, resulting in the need for maintenance and replacement of mechanical components, leading to an increase in the demand for such continuously operating components. After the production of the shaft body for operation, it is necessary to polish the dull outer wall of the shaft body. Existing equipment for polishing the shaft body requires manual adjustment of the position of the shaft body surface. Manual adjustment requires re-clamping of the workpiece, increasing the operation steps, and at the same time, unnecessary safety hazards will inevitably occur. Summary of the Invention

[0004] The embodiment of the present disclosure relates to a polishing device for part processing. When the workpiece shaft enters through the barrel frame assembly, the clamping assembly at the barrel frame assembly will clamp it. After connecting the external power to the polishing assembly, the transmission assembly operates to reciprocally drive the reciprocating assembly. The polishing assembly is installed on the reciprocating assembly to achieve the polishing of the workpiece shaft by the polishing assembly. At the same time, the feeding assembly of the polishing assembly will contact the driven block at the barrel frame assembly to realize the rotation of the workpiece shaft on the barrel frame assembly, so that the workpiece shaft rotates during the reciprocating polishing of the polishing assembly, playing a role in the self-rotation of the workpiece shaft during polishing.

[0005] In the first aspect of the present disclosure, a polishing device for part processing is provided, specifically including: a main frame assembly; a blanking assembly is installed at the bottom position of the main frame assembly, a cylinder frame assembly is installed at the right side position of the main frame assembly, a clamping assembly is installed on the outer wall of the cylinder frame assembly, a transmission assembly is installed at the upper end of the left side position of the main frame assembly, a reciprocating assembly is slidably installed at the middle position of the main frame assembly where the transmission assembly is installed, a polishing assembly is installed on the reciprocating assembly, a feeding assembly is installed at the right side position of the reciprocating assembly, an external connection block of the feeding assembly is arranged at the right side position of the reciprocating assembly, a pressing block is hingedly installed at the end of the external connection block, a guide wheel is arranged at the end of the pressing block, the pressing block is set in an inclined installation state, a driven block of the feeding assembly is arranged on the cylinder frame assembly, the driven blocks are arranged in a circumferential array on the cylinder frame assembly, the driven blocks are triangular in shape, an extension block is arranged at the end of the driven block, the feeding assembly is in contact with the cylinder frame assembly, and the cylinder frame assembly bearing of the main frame assembly passes through the workpiece shaft body.

[0006] In at least some embodiments, the main frame body of the main frame assembly is set as a rectangular frame structure, a horizontal outer frame rod is vertical at the right side position of the main frame body, swing frames are arranged on both the left and right sides of the bottom of the main frame body, a bearing wheel is rotatably installed on the swing frames, and the top of the swing frames is set as a triangular structure.

[0007] In at least some embodiments, the blanking plate of the blanking assembly is hingedly installed at the bottom of the main frame assembly, the swing frame of the main frame assembly is fixed on the blanking plate, a vertical connecting rod is arranged at the outer end of the hinged part of the blanking plate, the outer end of the connecting rod is slidably installed on the sliding plate, a falling cylinder is arranged at the inner end of the right side of the sliding plate, and the sliding plate is slidably installed on the outer frame rod of the main frame assembly through the falling cylinder.

[0008] In at least some embodiments, the bearing cylinder of the cylinder frame assembly is snap - fitted and installed at the right - side opening of the main frame assembly, a fixing plate is additionally installed at the upper end position of the main frame assembly where the bearing cylinder is installed, an extension edge is arranged at the right - hand edge of the bearing cylinder, and the extension plate of the bearing cylinder extends obliquely outward.

[0009] In at least some embodiments, the connecting column of the clamping assembly is arranged on the cylinder frame assembly, a clamping block is hingedly installed on the connecting column, a sliding groove is arranged at the outer end of the clamping block, the sliding groove of the clamping block is connected with an adjusting ring, and the adjusting ring is rotatably installed on the outer wall of the cylinder frame assembly.

[0010] In at least some embodiments, the clamping block is set as a triangular structure with an arc - shaped edge, the inner end of the clamping block is set as clamping teeth, and a chamfer is arranged at the outer end of the clamping block near the clamping teeth.

[0011] In at least some embodiments, the drive belt of the drive assembly is rotatably installed at the rear position at the top of the main frame assembly. The outer end of the drive belt is connected to the synchronization rod, and the synchronization rod connects the two drive belts together. A drive rod is arranged on the drive belt, and the drive rod slides in the connecting frame. The outer end of the connecting frame is set as an oval groove structure, and the connecting frame is fixed at both ends of the reciprocating assembly.

[0012] In at least some embodiments, the reciprocating plate of the reciprocating assembly is set as a rectangular plate shape. A raised strip is arranged on the edge of the reciprocating plate. Both ends of the reciprocating plate are slidably installed at the top of the main frame assembly. An installation opening is arranged in the middle of the reciprocating plate, and a fixing block is screwed and installed at the left side position of the reciprocating plate.

[0013] In at least some embodiments, the bearing box of the polishing assembly is vertically columnar. A polishing wheel is installed at the bottom of the bearing box. The outer wall of the bearing box is set as a contact wall. The polishing wheel is set as a falling structure, and vertical grooves are simultaneously arranged on the outer wall of the contact wall.

[0014] The present invention provides a polishing device for part processing, which has the following beneficial effects: In the present invention, the carrier wheel on the main frame assembly has a workpiece shaft body for carrying, making the conveying of the workpiece shaft body towards the direction of the cylinder frame assembly more stable. And a clamping assembly is installed on the cylinder frame assembly. After the clamping block is tightened by rotating the adjusting ring, the outer part of the workpiece shaft body entering the cylinder frame assembly is clamped on the clamping block, realizing the function of clamping and rotating the workpiece shaft body by the clamping assembly when the cylinder frame assembly rotates subsequently. After the drive assembly is driven by an external power, the drive assembly achieves the reciprocating movement of the reciprocating assembly. A polishing assembly is installed at the installation opening in the middle of the reciprocating assembly. The polishing wheel at the bottom of the polishing assembly directly contacts the outer wall of the workpiece shaft body, and the top of the polishing assembly is connected to an external power, realizing the function of polishing the outer wall of the workpiece shaft body by the polishing assembly. The feeding assembly is installed on the surface of the reciprocating assembly close to the cylinder frame assembly, and the feeding assembly will reciprocate along with the reciprocating assembly, directly pressing on the driven block at the position of the cylinder frame assembly, so that the feeding assembly rotates the cylinder frame assembly by a certain angle. And the workpiece shaft body is clamped on the clamping assembly of the cylinder frame assembly, so as to drive the workpiece shaft body to rotate when the cylinder frame assembly rotates, thus completing the effect of automatically rotating the surface of the workpiece shaft body. Finally, when an external device presses and feeds the workpiece shaft body, it will simultaneously contact the blanking assembly, causing the blanking assembly part at the bottom of the polishing assembly to swing and tilt, and discharging the polished workpiece shaft body.

[0015] In addition, after the workpiece shaft body is polished at the polishing assembly first, the workpiece shaft body at the outer end is advanced by other feeding devices. When the external feeding device advances the workpiece shaft body, it will contact the right side of the sliding plate at the same time, causing the sliding plate to slide leftward through the falling cylinder, making the connecting rod sliding leftward on the sliding plate swing leftward. At the same time, the connecting rod drives the main frame assembly to open obliquely from the bottom. There is a swing frame and a carrying wheel vertically on the blanking plate, allowing the workpiece shaft body to slide down through the carrying wheel, so that the blanking assembly cooperates with the carrying wheel to achieve rapid blanking.

[0016] In addition, first, the clamping block is hinged and installed on the connecting column of the cylinder frame assembly. The chute outside the clamping block is connected to the adjusting ring, and the adjusting ring is rotatably installed outside the cylinder frame assembly. At this time, rotating the adjusting ring can control the clamping block, so as to realize the clamping and loosening operations of the adjusting ring controlling the clamping block on the workpiece shaft body. The clamping assembly on the cylinder frame assembly is set as the structure mainly clamping the workpiece shaft body. Four clamping blocks are hinged and installed on the connecting column at the outer end of the cylinder frame assembly, and the clamping block is set as an arc-shaped triangular structure, so that the clamping teeth of the clamping block can directly abut against the outer wall of the workpiece shaft body. The arc-shaped clamping block can make the workpiece shaft body tightly abutted when moving forward, which is convenient for the cylinder frame assembly to rotate and drive the workpiece shaft body. When the clamping block cooperates with the clamping teeth, the workpiece shaft body can rotate stably.

[0017] In addition, first, the connecting frame is set at both ends of the reciprocating assembly, and the transmission rod of the transmission belt slides on the connecting frame. At this time, when the transmission belt runs, the transmission belt will drive the connecting frame through the transmission rod, and at the same time, the transmission assembly directly drives the reciprocating assembly to reciprocate. The transmission belt is set in two groups front and back. In order to make the transmission assembly run stably and synchronously, the transmission belts are directly connected by the synchronizing rod, so as to make the transmission belts run stably and synchronously.

[0018] In addition, the reciprocating plate is set to be slidably installed at the top of the main frame assembly. At the same time, raised strips are set at the edges of the reciprocating plate. After the installation opening is opened on the reciprocating plate, the raised strips of the reciprocating plate can keep the reciprocating plate stable. The installation opening is convenient for the installation of the polishing assembly, and the fixing block has the auxiliary tightening effect on the polishing assembly after being twisted.

[0019] In addition, first, the external connection block is set on the reciprocating assembly, and the reciprocating assembly drives the polishing assembly to polish the workpiece shaft body. At the same time, when the pressing block at the end of the external connection block moves to the right, the guide wheel at the end of the pressing block contacts the triangular driven block, and the pressing block squeezes the driven block, so that the driven block fixed on the cylinder frame assembly is driven, causing the cylinder frame assembly to rotate a certain angle. When the pressing block and the driven block are separated, the pressing block is hinged and installed, which is convenient for the pressing block to disengage from the extension block at the end of the driven block, facilitating the stable driving of the feeding assembly on the cylinder frame assembly. Brief Description of the Drawings

[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0021] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0022] In the drawings: Figure 1 shows the overall structural schematic diagram of the present application; Figure 2 shows the schematic diagram of the main frame assembly structure of the present application; Figure 3 shows the schematic diagram of the barrel frame assembly structure of the present application; Figure 4 shows the schematic diagram of the blanking assembly structure of the present application; Figure 5 shows the schematic diagram of the feeding assembly structure of the present application; Figure 6 shows the schematic diagram of the cross-sectional structure of the barrel frame assembly of the present application; Figure 7 shows the schematic diagram of the clamping assembly structure of the present application; Figure 8 shows the schematic diagram of the transmission assembly structure of the present application; Figure 9 shows the schematic diagram of the polishing assembly structure of the present application; List of Reference Numerals 1. Main frame assembly; 101. Main frame body; 102. Swing frame; 103. Carrier wheel; 104. Outer frame rod; 2. Blanking assembly; 201. Blanking plate; 202. Connecting rod; 203. Sliding plate; 204. Falling barrel; 3. Barrel frame assembly; 301. Carrier barrel; 302. Fixed plate; 4. Clamping assembly; 401. Connecting column; 402. Clamping block; 403. Adjusting ring; 404. Clamping teeth; 5. Transmission assembly; 501. Transmission belt; 502. Transmission rod; 503. Synchronous rod; 504. Connecting frame; 6. Reciprocating assembly; 601. Reciprocating plate; 602. Installation port; 603. Fixed block; 7. Polishing assembly; 701. Bearing box; 702. Contact wall; 703. Polishing wheel; 8. Feeding assembly; 801. External connection block; 802. Pressing block; 803. Driven block; 9. Workpiece shaft body. Detailed Description of the Preferred Embodiments

[0023] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions of the embodiments of the present invention with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts fall within the scope of protection of the present invention.

[0024] Embodiment 1: Please refer to Figures 1 to 9 : The present invention provides a polishing device for part processing, including: a main frame assembly 1; a blanking assembly 2 is installed at the bottom position of the main frame assembly 1, a cylinder frame assembly 3 is installed at the right side position of the main frame assembly 1, a clamping assembly 4 is installed on the outer wall of the cylinder frame assembly 3, a transmission assembly 5 is installed at the upper end of the left side position of the main frame assembly 1, a reciprocating assembly 6 is slidably installed at the middle position of the main frame assembly 1 where the transmission assembly 5 is installed, a polishing assembly 7 is installed on the reciprocating assembly 6, a feeding assembly 8 is installed at the right side position of the reciprocating assembly 6, an external connection block 801 of the feeding assembly 8 is arranged at the right side position of the reciprocating assembly 6, a pressing block 802 is hingedly installed at the end of the external connection block 801, a guide wheel is arranged at the end of the pressing block 802, the pressing block 802 is arranged in an inclined installation state, a driven block 803 of the feeding assembly 8 is arranged on the cylinder frame assembly 3, the driven blocks 803 are arranged in a circumferential array on the cylinder frame assembly 3, the driven blocks 803 are triangular in shape, an extension block is arranged at the end of the driven block 803. First, the external connection block 801 is arranged on the reciprocating assembly 6, and the reciprocating assembly 6 drives the polishing assembly 7 to polish the workpiece shaft 9. At the same time, when the pressing block 802 of the external connection block 801 moves to the right, the guide wheel at the end of the pressing block 802 contacts the triangular driven block 803, and the pressing block 802 squeezes the driven block 803, so that the driven block 803 fixed on the cylinder frame assembly 3 is driven, achieving a certain angle of rotation of the cylinder frame assembly 3. When the pressing block 802 is disengaged from the driven block 803, the pressing block 802 is hingedly installed, which is convenient for the pressing block 802 to disengage from the extension block at the end of the driven block 803, facilitating the stable driving effect of the feeding assembly 8 on the cylinder frame assembly 3. The feeding assembly 8 and the cylinder frame assembly 3 are in contact with each other, and the bearing of the cylinder frame assembly 3 of the main frame assembly 1 passes through the workpiece shaft 9.

[0025] In the embodiments of the present disclosure, as Figure 2 Figure 3As shown in the figure, the main frame body 101 of the main frame assembly 1 is set as a rectangular frame structure. At the right side position of the main frame body 101, there is a horizontal outer frame rod 104 vertically. The outer frame rod 104 is set at the right end of the main frame body 101, and at the same time, the outer frame rod 104 is set as a horizontal structure, so as to facilitate the use of the components of the blanking assembly 2 sliding on it, and can guide the sliding of some components of the blanking assembly 2. Swing frames 102 are arranged on both the left and right sides at the bottom of the main frame body 101. A carrying wheel 103 is rotatably installed on the swing frame 102. The top of the swing frame 102 is set as a triangular structure. The swing frame 102 of the main frame assembly 1 is arranged at the left and right positions at the bottom of the main frame body 101, and a carrying wheel 103 is rotatably installed on the swing frame 102, so as to enable the carrying wheel 103 to carry the workpiece shaft 9, achieving the function of the carrying wheel 103 assisting in the conveying and guiding of the workpiece shaft 9. And the part of the swing frame 102 close to the carrying wheel 103 is set in a triangular shape, so that no sundries will remain on the swing frame 102, and it is also convenient for subsequent cleaning of the swing frame 102 and the carrying wheel 103.

[0026] In the embodiment of the present disclosure, as Figure 4 shown in the figure, the blanking plate 201 of the blanking assembly 2 is hingedly installed at the bottom of the main frame assembly 1. The swing frame 102 of the main frame assembly 1 is fixed on the blanking plate 201. A vertical connecting rod 202 is arranged at the outer end of the hinge of the blanking plate 201. The outer end of the connecting rod 202 is slidably installed on the sliding plate 203. A falling cylinder 204 is arranged at the right inner end of the sliding plate 203. The sliding plate 203 is slidably installed on the outer frame rod 104 of the main frame assembly 1 through the falling cylinder 204. First, after the workpiece shaft 9 is polished at the polishing assembly 7, the outer workpiece shaft 9 will be pushed by other feeding devices. When the external feeding device pushes the workpiece shaft 9, it will contact the right side of the sliding plate 203 at the same time, causing the sliding plate 203 to slide to the left through the falling cylinder 204, making the connecting rod 202 sliding to the left on the sliding plate 203 swing to the left, and at the same time causing the connecting rod 202 to drive the main frame assembly 1 to be opened obliquely from the bottom. And there are a swing frame 102 and a carrying wheel 103 vertically on the blanking plate 201, enabling the workpiece shaft 9 to slide down through the carrying wheel 103, so that the blanking assembly 2 cooperates with the carrying wheel 103 to achieve the function of rapid blanking.

[0027] In the embodiment of the present disclosure, as Figure 3As shown in the figure, the bearing cylinder 301 of the cylinder frame assembly 3 is snap-fitted and installed at the right opening of the main frame assembly 1. A fixing plate 302 is additionally installed at the upper end position of the main frame assembly 1 for installing the bearing cylinder 301. An extension edge is provided at the right side edge of the bearing cylinder 301, and the extension plate of the bearing cylinder 301 extends obliquely outward. First, to make the bearing cylinder 301 more stable, the bearing cylinder 301 is directly snap-fitted at the right side position of the main frame assembly 1. At the same time, a fixing plate 302 is additionally installed at the upper end of the position where the main frame assembly 1 installs the bearing cylinder 301 to assist in increasing the reinforcement effect on the bearing cylinder 301. The bearing cylinder 301 is set as the necessary entry position when the workpiece shaft 9 is processed. Therefore, an extension edge is provided at the outer edge of the right side of the bearing cylinder 301, and the extension edge is set in a shape that extends obliquely outward, so that the workpiece shaft 9 has an auxiliary guiding effect when being introduced.

[0028] In the embodiment of the present disclosure, as Figure 6 shown, the connecting column 401 of the clamping assembly 4 is arranged on the cylinder frame assembly 3. A clamping block 402 is hinged and installed on the connecting column 401. A sliding groove is provided at the outer end of the clamping block 402, and the sliding groove of the clamping block 402 is connected to an adjusting ring 403. The adjusting ring 403 is rotatably installed on the outer wall of the cylinder frame assembly 3. First, the clamping block 402 is hinged and installed on the connecting column 401 of the cylinder frame assembly 3. The sliding groove outside the clamping block 402 is connected to the adjusting ring 403, and the adjusting ring 403 is rotatably installed outside the cylinder frame assembly 3. At this time, rotating the adjusting ring 403 can control the clamping block 402, thereby realizing the clamping and loosening operations of the adjusting ring 403 to control the clamping block 402 on the workpiece shaft 9.

[0029] In the embodiment of the present disclosure, as Figure 7 shown, the clamping block 402 is set as a triangular structure with an arc-shaped edge. The inner end of the clamping block 402 is set as a clamping tooth 404, and a chamfer is provided at the outer end of the clamping block 402 near the clamping tooth 404. The clamping assembly 4 on the cylinder frame assembly 3 is set as the main structure for clamping the workpiece shaft 9. Therefore, four clamping blocks 402 are hinged and installed on the connecting column 401 at the outer end of the cylinder frame assembly 3. The clamping block 402 is set as a triangular structure with an arc shape, so that the clamping tooth 404 of the clamping block 402 can directly abut against the outer wall of the workpiece shaft 9. The arc-shaped clamping block 402 can make the workpiece shaft 9 be tightly abutted when moving forward, which is convenient for the cylinder frame assembly 3 to rotate and drive the workpiece shaft 9, and enables the clamping block 402 to cooperate with the clamping tooth 404 to stably rotate the workpiece shaft 9.

[0030] Embodiment 2, on the basis of Embodiment 1, as Figure 2 Figure 8As shown in the figure, the transmission belt 501 of the transmission assembly 5 is rotatably installed at the rear position of the top of the main frame assembly 1. The outer end of the transmission belt 501 is connected to the synchronization rod 503. The synchronization rod 503 connects the two groups of transmission belts 501 together. The transmission belt 501 is provided with a transmission rod 502. The transmission rod 502 slides within the connecting frame 504. The outer end of the connecting frame 504 is set in an oval slot structure. The connecting frame 504 is fixed at both ends of the reciprocating assembly 6. First, the connecting frame 504 is set at both ends of the reciprocating assembly 6. The transmission rod 502 of the transmission belt 501 slides on the connecting frame 504. At this time, when the transmission belt 501 is running, the transmission belt 501 will drive the connecting frame 504 to move through the transmission rod 502, and at the same time, the transmission assembly 5 directly drives the reciprocating assembly 6 to perform reciprocating motion. The transmission belt 501 is provided with two groups in the front and back. In order to make the transmission assembly 5 run stably and synchronously, the transmission belts 501 are directly connected together through the synchronization rod 503, so as to make the transmission belts 501 run stably and synchronously.

[0031] In the embodiment of the present disclosure, as Figure 5 Figure 9 shown, the reciprocating plate 601 of the reciprocating assembly 6 is set as a rectangular plate. The edge of the reciprocating plate 601 is provided with a raised strip. Both ends of the reciprocating plate 601 are slidably installed at the top of the main frame assembly 1. An installation opening 602 is provided in the middle of the reciprocating plate 601. A fixing block 603 is screwed and installed at the left side position of the reciprocating plate 601. The reciprocating plate 601 is set to be slidably installed at the top of the main frame assembly 1. At the same time, a raised strip is provided at the edge of the reciprocating plate 601. After the installation opening 602 is opened on the reciprocating plate 601, the reciprocating plate 601 can be kept stable through the raised strip of the reciprocating plate 601. The installation opening 602 is convenient for the installation of the polishing assembly 7. The fixing block 603 has the function of tightly pressing the polishing assembly 7 after being twisted.

[0032] Embodiment 3, on the basis of Embodiment 1, as Figure 9 shown, the bearing box 701 of the polishing assembly 7 is vertically columnar. A polishing wheel 703 is installed at the bottom of the bearing box 701. The outer wall of the bearing box 701 is set as a contact wall 702. The polishing wheel 703 is set as a falling structure. Vertical grooves are simultaneously provided on the outer wall of the contact wall 702. After the polishing wheel 703 is installed at the bottom of the bearing box 701, the top of the bearing box 701 can be connected to a driving device, so that the bearing box 701 plays a role in stable transmission. The contact wall 702 on the outer wall of the bearing box 701 has the function of rotating and adjusting the height of the bearing box 701 on the installation opening 602 through the spiral structure of the contact wall 702. The vertical grooves provided on the outer wall of the contact wall 702 at the same time make the fixing block 603 press against the outer wall of the contact wall 702 when the fixing block 603 is tightened, increasing the anti-slip property of the vertical grooves of the contact wall 702 and maintaining the overall stability of the polishing assembly 7.

[0033] Working principle of this embodiment: During installation, first check or directly replace the polishing wheel 703 of the polishing assembly 7, and then twist the entire polishing assembly 7 onto the installation port 602 of the reciprocating assembly 6. At this time, manually rotate the adjustment ring 403 to open the clamping block 402, insert the workpiece shaft 9 into the inner end of the cylinder frame assembly 3, and then rotate the adjustment ring 403 so that the clamping teeth 404 of the clamping block 402 press against the outside of the workpiece shaft 9, realizing the clamping effect of the clamping assembly 4 on the workpiece shaft 9. At this time, the protruding workpiece shaft 9 will extend to the bottom of the polishing assembly 7. Rotate and adjust the polishing assembly 7 accordingly to make the polishing wheel 703 of the polishing assembly 7 close to the outer wall of the workpiece shaft 9. At this time, tighten the fixing block 603 of the reciprocating assembly 6 to fix the polishing assembly 7. At this time, externally connect a power device to the top of the polishing assembly 7, and at the same time externally connect a power device to the transmission assembly 5; During use, when the device is running, the transmission assembly 5 will make the two transmission belts 501 run synchronously through the synchronizing rod 503. The connecting frame 504 is installed on the reciprocating assembly 6, and the transmission belt 501 drives the connecting frame 504 through the transmission rod 502, enabling the transmission assembly 5 to drive the reciprocating assembly 6, realizing the reciprocating movement of the reciprocating assembly 6, so that the polishing assembly 7 of the reciprocating assembly 6 reciprocates on the outer wall of the workpiece shaft 9, realizing the polishing of the outer wall of the workpiece shaft 9 after the polishing assembly 7 is externally connected to a power source. During the process of the reciprocating assembly 6 driving the polishing assembly 7 to polish the workpiece shaft 9, the feeding assembly 8 installed on the reciprocating assembly 6 will contact the cylinder frame assembly 3. The external block 801 of the feeding assembly 8 is installed on the reciprocating assembly 6, and the driven block 803 of the feeding assembly 8 is installed on the cylinder frame assembly 3. The pressing block 802 of the external block 801 is installed in a swinging state. When the pressing block 802 follows the reciprocating assembly 6 and approaches the driven block 803, the pressing block 802 will press against the triangular inclined surface of the driven block 803, realizing the driving of the driven block 803 by the pressing block 802, and realizing the rotation of the cylinder frame assembly 3, so as to make the clamping assembly 4 of the cylinder frame assembly 3 drive the workpiece shaft 9 to rotate; After use, an external feeding device will feed the workpiece shaft 9 towards the device again, and at the same time the feeding part will contact the blanking assembly 2, causing the blanking assembly 2 to swing the swing frame 102 on the right downward, playing a role in swinging and blanking the polished workpiece shaft 9.

[0034] In this article, the following points need attention: 1. The drawings of the embodiments of the present disclosure only involve the structures related to the embodiments of the present disclosure, and other structures can refer to the general design.

[0035] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0036] The above are only specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.

Claims

1. A polishing device for part processing, comprising: Main frame assembly (1); a blanking assembly (2) is installed at the bottom position of the main frame assembly (1), characterized in that a cylinder frame assembly (3) is installed at the right side position of the main frame assembly (1), a clamping assembly (4) is installed on the outer wall of the cylinder frame assembly (3), a transmission assembly (5) is installed at the upper end of the left side position of the main frame assembly (1), a reciprocating assembly (6) is slidably installed at the middle position where the main frame assembly (1) installs the transmission assembly (5), a polishing assembly (7) is installed on the reciprocating assembly (6), a feeding assembly (8) is installed at the right side position of the reciprocating assembly (6), an external connection block (801) of the feeding assembly (8) is arranged at the right side position of the reciprocating assembly (6), a pressing block (802) is hingedly installed at the end of the external connection block (801), a guide wheel is arranged at the end of the pressing block (802), the pressing block (802) is arranged in an inclined installation state, a driven block (803) of the feeding assembly (8) is arranged on the cylinder frame assembly (3), the driven blocks (803) are arranged in a circumferential array on the cylinder frame assembly (3), the driven blocks (803) are triangular in shape, an extension block is arranged at the end of the driven block (803), the feeding assembly (8) is in contact with the cylinder frame assembly (3), and the bearing of the cylinder frame assembly (3) of the main frame assembly (1) passes through the workpiece shaft body (9).

2. The polishing device for part processing according to claim 1, characterized in that The main frame body (101) of the main frame assembly (1) is arranged in a rectangular frame structure, a horizontal outer frame rod (104) is vertical at the right side position of the main frame body (101), swing frames (102) are arranged on both the left and right sides of the bottom of the main frame body (101), a carrier wheel (103) is rotatably installed on the swing frames (102), and the top of the swing frame (102) is arranged in a triangular structure.

3. The polishing device for part processing according to claim 1, characterized in that The blanking plate (201) of the blanking assembly (2) is hingedly installed at the bottom of the main frame assembly (1), the swing frame (102) of the main frame assembly (1) is fixed on the blanking plate (201), a vertical connecting rod (202) is arranged at the outer end of the hinge of the blanking plate (201), the outer end of the connecting rod (202) is slidably installed on a sliding plate (203), a falling cylinder (204) is arranged at the inner end of the right side of the sliding plate (203), and the sliding plate (203) is slidably installed on the outer frame rod (104) of the main frame assembly (1) through the falling cylinder (204).

4. The polishing device for part processing according to claim 1, characterized in that The bearing cylinder (301) of the cylinder frame assembly (3) is snap-fitted at the right side opening of the main frame assembly (1), a fixing plate (302) is additionally installed at the upper end position where the main frame assembly (1) installs the bearing cylinder (301), an extension edge is arranged at the right side edge of the bearing cylinder (301), and the extension plate of the bearing cylinder (301) extends obliquely outward.

5. The polishing device for part processing according to claim 1, characterized in that The connecting column (401) of the clamping assembly (4) is arranged on the cylinder frame assembly (3). A clamping block (402) is hingedly installed on the connecting column (401). A chute is arranged at the outer end of the clamping block (402). The chute of the clamping block (402) is connected to an adjusting ring (403). The adjusting ring (403) is rotatably installed on the outer wall of the cylinder frame assembly (3).

6. The polishing device for part processing according to claim 5, wherein The clamping block (402) is arranged in a triangular structure with an arc-shaped edge. The inner end of the clamping block (402) is provided with clamping teeth (404). A chamfer is arranged at the outer end of the clamping block (402) near the clamping teeth (404).

7. The polishing device for part processing according to claim 1, wherein The transmission belt (501) of the transmission assembly (5) is rotatably installed at the rear position at the top of the main frame assembly (1). The outer end of the transmission belt (501) is connected to a synchronous rod (503). The synchronous rod (503) connects the two groups of transmission belts (501) together. A transmission rod (502) is arranged on the transmission belt (501). The transmission rod (502) slides in a connecting frame (504). The outer end of the connecting frame (504) is arranged in an oval slot structure. The connecting frame (504) is fixed at both ends of the reciprocating assembly (6).

8. The polishing device for part processing according to claim 1, wherein The reciprocating plate (601) of the reciprocating assembly (6) is arranged in a rectangular plate shape. A raised strip is arranged on the edge of the reciprocating plate (601). Both ends of the reciprocating plate (601) are slidably installed at the top of the main frame assembly (1). An installation opening (602) is arranged in the middle of the reciprocating plate (601). A fixing block (603) is screwed and installed at the left side position of the reciprocating plate (601).

9. The polishing device for part processing according to claim 1, wherein The bearing box (701) of the polishing assembly (7) is vertically columnar. A polishing wheel (703) is installed at the bottom of the bearing box (701). The outer wall of the bearing box (701) is provided with a contact wall (702). The polishing wheel (703) is arranged in a falling shape. Vertical grooves are simultaneously arranged on the outer wall of the contact wall (702).

Citation Information

Patent Citations

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