Clothes pole end polishing and chamfering integrated machine

By designing an integrated machine for polishing and chamfering the ends of clothes rods, the chamfering and polishing of the ends of clothes rods can be completed in the same process, solving the problems of low automation and low efficiency of existing equipment, and improving processing efficiency and product quality stability.

CN224674303UActive Publication Date: 2026-08-25FOSHAN FUKUANG INTELLIGENT HOME CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522033841.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-20
Publication Date
2026-08-25
Estimated Expiration
2035-09-20

AI Technical Summary

Technical Problem

Existing clothes rod end processing equipment has a low degree of automation, low processing efficiency, and difficulty in ensuring product quality stability.

Method used

The design incorporates a clothes rod end polishing and chamfering integrated machine, employing two symmetrical processing platforms, a feeding mechanism, a chamfering and polishing device, and a clamping mechanism. This allows for simultaneous processing of the clothes rod in the upper and lower clamping areas within the processing channel, and the chamfering and polishing operations are completed in the same process through the chamfering and polishing device.

Benefits of technology

It improved processing efficiency, reduced material transfer time, lowered labor intensity, and ensured the stability of product quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224674303U_ABST
    Figure CN224674303U_ABST
Patent Text Reader

Abstract

A clothes pole end polishing and chamfering integrated machine, comprising a rack, two sets of processing platforms, two sets of feeding mechanisms, two sets of chamfering and polishing devices and two sets of clamping mechanisms, the two sets of processing platforms are installed on the rack in a spaced manner, the feeding mechanisms, the chamfering and polishing devices and the clamping mechanisms are symmetrically installed on the two sets of processing platforms respectively, the processing platform is provided with a vertical processing channel, the clamping mechanisms are located on the front and back sides of the processing channel, the chamfering and polishing devices are located at the two ends of the processing channel, the clamping mechanisms form two sets of clamping areas in the processing channel, the clothes pole enters the upper and lower clamping areas in sequence to be chamfered and polished respectively, the chamfering and polishing operations are completed in one process, the time for transferring materials is reduced, the processing cycle is shortened, the mechanisms work cooperatively, the degree of automation is high, the labor intensity is reduced, the influence of human factors on product quality is reduced, and the stability of product quality is ensured.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of clothes rod production and processing equipment, specifically to an integrated machine for polishing and chamfering the ends of clothes rods. Background Technology

[0002] In the production of clothes rods, polishing and chamfering the ends are crucial processes. Traditional processing methods typically use separate equipment: first, a chamfering machine is used to chamfer the ends of the clothes rod, and then a polishing machine is used for polishing. This processing method has the following drawbacks: 1. Low processing efficiency: Multiple clamping and material transfers are required, increasing auxiliary time and extending the overall processing cycle.

[0003] 2. Low level of automation: It relies on manual operation, which is labor-intensive and easily affected by the operator's skills, making it difficult to guarantee the stability of product quality.

[0004] While some integrated processing equipment exists in the existing technology, most are designed for parts with specific shapes and cannot be directly applied to the end processing of slender rods such as clothes rods. For example, the automatic polishing and chamfering equipment disclosed in patent CN210756851U has a longitudinal gripper and chamfering device that are difficult to adapt to the slender structure of clothes rods. Therefore, there is a significant market demand for developing an integrated device specifically for processing the ends of clothes rods. Utility Model Content

[0005] In order to overcome the shortcomings of the existing technology, this utility model provides an integrated machine for polishing and chamfering the ends of clothes rods.

[0006] The technical solution adopted by this utility model to solve its technical problem is: The integrated machine for polishing and chamfering the ends of clothes rods includes a frame, two sets of processing platforms, two sets of feeding mechanisms, two sets of chamfering and polishing devices, and two sets of clamping mechanisms. The two sets of processing platforms are installed alternately on the frame. The feeding mechanism, chamfering and polishing device, and clamping mechanism are symmetrically installed on the two sets of processing platforms. The processing platform has a vertical processing channel. The feeding mechanism feeds the clothes rod to be processed into the processing channel. The clamping mechanism is located on the front and rear sides of the processing channel to clamp and fix the clothes rod. The chamfering and polishing device is located at both ends of the processing channel to chamfer and polish the ends of the clothes rod. The clamping mechanism forms two sets of clamping areas in the processing channel. The clothes rod enters the upper and lower clamping areas in sequence for chamfering and polishing respectively. The processed clothes rod is unloaded from the bottom of the processing channel.

[0007] In this utility model, the feeding mechanism includes a support column, a guide trough, and a spacer guide. The top of the support column is connected to the bottom of the guide trough, the guide trough is inclined towards the processing channel, and the lower end is connected to the top of the processing channel. The spacer guide is located at the connection between the guide trough and the processing channel to form a block.

[0008] Furthermore, the spacer includes a guide plate, a stop block, a movable block, a first support block, and a first telescopic device. The stop block is fixed on the processing platform and its upper end is higher than the slope of the guide trough. A vertical slide groove is provided on its rear side. The movable block is slidably installed in the slide groove and its top plane is lower than the slope. The first telescopic device is fixed on the rear side of the stop block. The rear end of the guide plate is connected to the telescopic end of the first telescopic device, and its middle part is guided and cooperates with the movable block. The first support block is connected to the front end of the guide plate. A guide hole is provided on the guide plate, and a guide post is provided on the movable block. The guide post is slidably cooperates with the guide hole. The first telescopic device drives the guide plate to move back and forth, causing the movable block to move up and down along the slide groove to lift the clothes rod. The first support block extends into the processing channel to lift the clothes rod.

[0009] In this utility model, the chamfering and polishing device includes a guide seat, a rotary driver, and a translation driver. The guide seat is a U-shaped cross-section elongated structure, vertically fixed on the processing platform and connected to the top of the feeding mechanism. The slot forms a processing channel inward. The rotary driver has two sets of output shafts that extend into the upper and lower clamping areas respectively. The chamfering cutter is installed at the end of the output shaft in the upper clamping area, and the polishing disc is installed at the end of the output shaft in the lower clamping area. The translation driver drives the rotary driver to translate so that the chamfering cutter and the polishing disc move closer to or away from the end of the clothes rod.

[0010] Furthermore, the rotary drive includes a support base, a gear synchronizer, and a rotary motor. The support base is mounted on the translational drive, the rotary motor is mounted on one side of the support base, the gear synchronizer is mounted on the other side of the support base, the output end of the rotary motor is connected to the input end of the gear synchronizer, and two sets of output shafts are connected to the output end of the gear synchronizer.

[0011] Furthermore, the translation driver includes a fixed plate, a slide rail, a slider, and a telescopic rod. The slide rail is set on the fixed plate parallel to the output shaft direction, the slider slides on the slide rail, the telescopic end of the telescopic rod is connected to the slider, and the support is fixed on the slider.

[0012] In this utility model, the clamping mechanism includes a fixed clamping block, a movable clamping block, a second telescopic device, and a third telescopic device. The fixed clamping block is installed on one side of the processing channel via a fixed seat, and the movable clamping block is installed on the other side of the processing channel via a movable seat. The fixed clamping block and the movable clamping block are provided with a V-shaped clamping opening on opposite sides. The second telescopic device is installed on the rear side of the movable clamping block to drive its movement. The third telescopic device is installed on one side of the processing channel and has a second support block at its telescopic end, which extends into the processing channel to support the clothes rod.

[0013] Furthermore, both the fixed clamping block and the movable clamping block are provided with two sets, corresponding to the positions of the upper and lower clamping areas, and the second telescopic device is provided with two sets, which are respectively connected to the upper movable block and the lower movable block.

[0014] In this utility model, the frame is provided with a spacing adjustment mechanism. Two sets of processing platforms are respectively fixed and movable on the spacing adjustment mechanism. The spacing adjustment mechanism includes a base, a guide rod, a sliding seat, a screw, a drive block, and a drive motor. The base is fixed on both sides of the top of the frame, the two ends of the guide rod are fixed on the base, the sliding seat is slidably sleeved on the guide rod, one set of processing platforms is fixedly mounted on the sliding seat, and the other set can slide along the guide rod. The screw is rotatably mounted on the bottom of the processing platform and parallel to the guide rod. The drive motor is connected to one end of the screw, and the drive block is threadedly fitted on the screw and connected to the movable processing platform.

[0015] This utility model has the following advantages and beneficial effects: By setting up two symmetrical processing platforms, a feeding mechanism, a chamfering and polishing device, and a clamping mechanism, with the clamping mechanism forming upper and lower clamping areas within the processing channel, the clothes rods to be processed enter the upper and lower clamping areas sequentially from top to bottom and are clamped and fixed. Chamfering is performed in the upper clamping area, and polishing in the lower clamping area, completing both chamfering and polishing operations in a single process. This reduces material transfer time and shortens the processing cycle. Simultaneously, an interval guide allows new clothes rods to enter the upper clamping area, enabling synchronous processing of clothes rods in both areas, further improving processing efficiency. The collaborative operation of all mechanisms results in a high degree of automation, reducing labor intensity, minimizing the impact of human factors on product quality, and ensuring product quality stability. Attached Figure Description

[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments: Figure 1 This is a schematic diagram of the integrated polishing and chamfering machine in this embodiment; Figure 2 This is a front view of the polishing and chamfering integrated machine in this embodiment; Figure 3 for Figure 2 AA section view in the middle; Figure 4 This is a schematic diagram of the spacer feeder in this embodiment; Figure 5 This is an exploded view of the spacer feeder in this embodiment; Figure 6 This is a schematic diagram of the chamfering and polishing device in this embodiment; Figure 7 This is a schematic diagram showing the connection between the output shaft and the gear synchronizer in this embodiment; Figure 8 This is a schematic diagram of the clamping mechanism in this embodiment. Detailed Implementation

[0017] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. However, this utility model is not limited to the following embodiments.

[0018] It should be noted that if any directional indication (such as up, down, left, right, front, back, top, bottom, inside, outside, vertical, horizontal, longitudinal, counterclockwise, clockwise, circumferential, radial, axial, etc.) is involved in the embodiments of this utility model, the directional indication is only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.

[0019] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," such descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.

[0020] like Figures 1 to 8As shown, this embodiment discloses an integrated machine for polishing and chamfering the ends of clothes rods, including a frame 1, a processing platform 2, a feeding mechanism 3, a chamfering and polishing device 4, and a clamping mechanism 5. The processing platform 2 is provided in two sets, which are installed alternately on the frame 1. The feeding mechanism 3, the chamfering and polishing device 4, and the clamping mechanism 5 are also provided in two symmetrical sets, respectively installed on the two sets of processing platforms 2. The processing platform 2 has a vertically arranged processing channel 20. The feeding mechanism 3 is located on the front or rear side of the processing channel 20 and feeds the clothes rod to be processed into the processing channel 20 from above. The clamping mechanism 5 is located on the front and rear sides of the processing channel 20, and during processing, it holds the clothes rod to be processed within the processing channel 20. The garment rod is clamped and fixed. Two symmetrical sets of chamfering and polishing devices 4 are located at both ends of the processing channel 20 to chamfer and polish the ends of the garment rod. In addition, the clamping mechanism 5 forms two sets of clamping areas in the processing channel 20. The garment rod to be processed enters the upper clamping area 201 and the lower clamping area 202 from top to bottom and is clamped and fixed. After the upper clamping area 201 clamps the garment rod to be processed, the chamfering and polishing device 4 performs chamfering. After the lower clamping area 202 clamps the garment rod to be processed, the chamfering and polishing device 4 performs polishing. The processed garment rod is unloaded from the bottom of the processing channel 20. Thus, the chamfering and polishing operations can be completed in one process, which improves processing efficiency, reduces the time for transferring materials, and shortens the processing cycle.

[0021] In this embodiment, the feeding mechanism 3 includes a support column 31, a guide trough 32 fixed on the support column 31, and a spacer guide 33 installed below the guide trough 32. The top of the support column 31 is connected to the bottom of the guide trough 32 to form a support. The guide trough 32 is inclined towards the processing channel 20, thereby forming a ramp that can guide the clothes rod to be processed to roll down towards the processing channel 20. The lower end of the ramp is connected to the top of the processing channel 20. The spacer guide 33 is located at the connection between the guide trough 32 and the processing channel 20, and forms a block at the lower end of the guide trough 32. During processing, the clothes rod to be processed in the guide trough 32 is sequentially fed into the processing channel 20 through the spacer guide 33.

[0022] Furthermore, the spacer guide 33 includes a guide plate 331, a stop block 332, a movable block 333, a first support block 334, and a first telescopic device 335. The stop block 332 is fixed on the processing platform 2, and its upper end is higher than the slope formed by the guide groove 32 to block the clothes rod to be processed from rolling down. A vertically extending groove 336 is provided on the rear side of the stop block 332. The movable block 333 is slidably installed in the groove 336, and its top plane is lower than the slope. The first telescopic device 335 is fixed on the rear side of the stop block 332. The rear end of the guide plate 331 is connected to the telescopic end of the first telescopic device 335. The middle part of the guide plate 331 guides and cooperates with the movable block 333. The first support block 334 is connected to the front end of the guide plate 331. The first telescopic device 335 drives the guide plate 331 to move back and forth. Specifically, the guide plate 331 is provided with a guide hole 337. The movable block 333 is provided with a guide post 338, which is slidably fitted in the guide hole 337. When the first telescopic device 335 drives the guide plate 331 to move back and forth, the guide hole 337 drives the movable block 333 to move up and down along the slide groove 336 through the guide post 338. When the movable block 333 moves upward, it lifts up the clothes rod that is blocked at the front and passes over the stop block 332 before entering the processing channel 20. In addition, when the guide plate 331 moves to the front end, the first support block 334 extends into the processing channel 20 to lift the clothes rod and wait for the clamping mechanism 5 to clamp and fix it. It should be noted that the top plane of the stop block 332 is parallel to the slope, that is, it is also an inclined surface, which makes it convenient for the clothes rod to pass over the stop block 332. In addition, the width of the top plane of the movable block 333 is greater than or equal to the diameter of the clothes rod, so that the movable block 333 can stably lift the clothes rod. The first telescopic device 335 is preferably a telescopic cylinder.

[0023] In this embodiment, the chamfering and polishing device 4 includes a guide seat 41, a rotary driver 42, and a translational driver 43. The guide seat 41 is an elongated structure with a U-shaped cross-section. The guide seat 41 is vertically fixed on the processing platform 2, and its top is connected to the feeding mechanism 3. The slot of the guide seat 41 faces inward, and the vertically extending grooves form the processing channel 20. The rotary driver 42 is provided with two sets of output shafts 421. After passing through the guide seat 41, the two sets of output shafts 421 extend into the upper clamping area 201 and the lower clamping area 202 respectively. A chamfering cutter 44 is installed at the end of the output shaft 421 inside 201, and a polishing disc 45 is installed at the end of the output shaft 421 that extends into the lower clamping area 202. The rotary driver 42 drives both sets of output shafts 421 to rotate simultaneously, so that chamfering and polishing are performed at the same time. The translation driver 43 is fixed on the processing platform 2 to form a support. The rotary driver 42 is mounted on the translation driver 43. The translation driver 43 drives the rotary driver 42 to translate. When the rotary driver 42 translates, it drives the chamfering cutter 44 and the polishing disc 45 to move closer to or away from the end of the clothes rod to be processed.

[0024] Furthermore, the rotary driver 42 includes a support base 422, a gear synchronizer 423, and a rotary motor 424. The support base 422 is mounted on the translation driver 43, the rotary motor 424 is mounted on one side of the support base 422, and the gear synchronizer 423 is mounted on the other side of the support base 422. The output end of the rotary motor 424 is connected to the input end of the gear synchronizer 423, and two sets of output shafts 421 are connected to the output end of the gear synchronizer 423. The gear synchronizer 423 achieves dual-axis synchronous rotation through gear transmission.

[0025] Furthermore, the translation driver 43 includes a fixed plate 431, a slide rail 432 fixed on the fixed plate 431, a slider 433 slidably engaged on the slide rail 432, and a telescopic rod 434 fixed on the fixed plate 431. The slide rail 432 is arranged parallel to the output shaft 421. The telescopic end of the telescopic rod 434 is connected to the slider 433. The support base 422 is fixed on the slider 433. The telescopic rod 434 is an electric actuator. The telescopic rod 434 drives the rotary driver 42 to translate along the slide rail 432 through the slider 433.

[0026] In this embodiment, the clamping mechanism 5 includes a fixed clamping block 51, a movable clamping block 52, a second telescopic device 53, and a third telescopic device 54. The fixed clamping block 51 is mounted on one side of the processing channel 20 via a fixed base 55, and the movable block 53 is mounted on the other side of the processing channel 20 via a movable base 56. A V-shaped clamping jaw is also provided on the opposite side of the fixed clamping block 51 and the movable clamping block 52. The second telescopic device 53 is mounted on the rear side of the movable clamping block 52 and connected to it. The second telescopic device 53 drives the movable clamping block 52 to move relative to the fixed clamping block 51, thereby clamping or releasing the clothes rod. The third telescopic device 54 is mounted on the processing channel 20. On one side of the 0 and at the telescopic end, there is a second support block 57. The third telescopic device 54 drives the second support block 57 to extend into or out of the processing channel 20. After extending into the processing channel 20, it lifts the clothes rod to be processed and waits for the clamping mechanism 5 to clamp it. It should be noted here that the first support block 334 corresponds to the upper clamping area 201, and the second support block 57 corresponds to the lower clamping area 202. Specifically, the fixed clamping block 51 and the movable clamping block 52 are each provided with two sets. The positions of the upper and lower sets of fixed clamping blocks 51 and movable clamping blocks 52 correspond to the upper clamping area 201 and the lower clamping area 202. The second telescopic device 53 is provided with two sets and is respectively connected to the upper movable block 333 and the lower movable block 333.

[0027] In this embodiment, a spacing adjustment mechanism 6 is also provided on the frame 1. Two sets of processing platforms 2 are respectively fixed and movable on the spacing adjustment mechanism 6. By adjusting the spacing between the two processing platforms 2, different lengths of clothes rods can be accommodated. The spacing adjustment mechanism 6 includes a base 61, a guide rod 62, a sliding seat 63, a screw 64, a drive block 65, and a drive motor 66. The base 61 has two sets and is fixed on both sides of the top of the frame 1. The two ends of the guide rod 62 are fixed on the two side bases 61. There are two guide rods 62, which are parallel and horizontally arranged. The movable seat 63 is slidably sleeved on the guide rod 62. One set of the processing platforms 2 is fixed after being installed on the sliding seat 63, and the other set of processing platforms 2 is slidable along the guide rod 62 after being installed on the sliding seat 63. The screw 64 is rotatably installed at the bottom of the processing platform 2 and is parallel to the guide rod 62. The drive motor 66 is connected to one end of the screw 64. The drive block 65 is threadedly fitted on the screw 64 and connected to the movable processing platform 2. When the drive motor 66 rotates, it drives the screw 64 to rotate. The screw 64 drives the drive block 65 to move, thereby driving the processing platform 2 to translate along the direction of the guide rod 62.

[0028] The working principle of this embodiment is as follows: When the spacer guide 33 is activated, it drives the guide plate 331 to move forward, causing the first support block 334 to extend below the upper clamping area 201. At the same time, the guide plate 331 drives the movable block 333 to move upward, thereby lifting the garment rod to be processed in the guide groove 32. The garment rod passes over the stop block 332 and enters the upper clamping area 201 of the processing channel 20. At this time, the garment rod is supported by the first support block 334. Subsequently, the third telescopic device 54 drives the upper movable block 333 to move relative to the upper fixed block to clamp the garment rod. With the cooperation of the translation mechanism and the rotation driver 42, the output shaft 4... The chamfering cutter 44 on 21 chamfers the end face of the clothes rod. After the chamfering is completed, the upper movable block 333 and the first support block 334 retract simultaneously, and the clothes rod falls into the lower clamping area 202. At this time, the second support block 57 lifts the clothes rod. Then, the third telescopic device 54 drives the lower movable block 333 to move relative to the lower fixed block to clamp the clothes rod. With the action of the translation mechanism and the rotation driver 42, the polishing disc 45 on the output shaft 421 polishes the end face of the clothes rod. After polishing is completed, the lower movable block 333 and the second support block 57 retract simultaneously to release the clothes rod. The clothes rod falls out from the bottom of the processing channel 20 to complete the processing.

[0029] It should be noted that after the clothes rod in the upper clamping area 201 enters the lower clamping area 202, the spacer guide 33 will activate again to allow a new clothes rod to be processed to enter the upper clamping area 201. This enables the clothes rods in the upper and lower clamping areas 202 to be processed simultaneously, improving efficiency. After the clothes rods in both the upper and lower clamping areas 202 have been processed, the clothes rod in the lower clamping area 202 will be released first, and then the clothes rod in the upper clamping area 201 will be released.

[0030] The above description in this specification is merely an illustrative example of the present invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the specific embodiments described or adopt similar methods to replace them, as long as they do not deviate from the content of this specification or exceed the scope defined in the claims, they shall all fall within the protection scope of this invention.

Claims

1. A machine for polishing and chamfering the ends of clothes rods, characterized in that, The machine includes a frame (1), two sets of processing platforms (2), two sets of feeding mechanisms (3), two sets of chamfering and polishing devices (4) and two sets of clamping mechanisms (5). The two sets of processing platforms (2) are installed on the frame (1) at intervals. The feeding mechanism (3), chamfering and polishing device (4) and clamping mechanism (5) are symmetrically installed on the two sets of processing platforms (2). The processing platform (2) is provided with a vertical processing channel (20). The feeding mechanism (3) sends the clothes rod to be processed into the processing channel (20). The clamping mechanism (5) is located on the front and rear sides of the processing channel (20) to clamp and fix the clothes rod. The chamfering and polishing device (4) is located at both ends of the processing channel (20) to chamfer and polish the ends of the clothes rod. The clamping mechanism (5) forms two sets of clamping areas in the processing channel (20). The clothes rod enters the upper and lower clamping areas (202) in sequence to be chamfer and polish respectively. The processed clothes rod is unloaded from below the processing channel (20).

2. The integrated polishing and chamfering machine for the ends of clothes rods according to claim 1, characterized in that, The feeding mechanism (3) includes a support column (31), a guide trough (32) and an interval guide (33). The top of the support column (31) is connected to the bottom of the guide trough (32). The guide trough (32) is inclined towards the processing channel (20) and its lower end is connected to the top of the processing channel (20). The interval guide (33) is located at the connection between the guide trough (32) and the processing channel (20) to form a block.

3. The integrated polishing and chamfering machine for the ends of clothes rods according to claim 2, characterized in that, The spacer guide (33) includes a guide plate (331), a stop block (332), a movable block (333), a first support block (334), and a first telescopic device (335). The stop block (332) is fixed on the processing platform (2) and its upper end is higher than the slope of the guide trough (32). A vertical slide groove (336) is provided on its rear side. The movable block (333) is slidably installed in the slide groove (336) and its top plane is lower than the slope. The first telescopic device (335) is fixed on the rear side of the stop block (332). The rear end of the guide plate (331) is connected to the first telescopic device (335). 335) The telescopic end is guided and cooperated with the movable block (333) in the middle. The first support block (334) is connected to the front end of the guide plate (331). The guide plate (331) is provided with a guide hole (337). The movable block (333) is provided with a guide post (338). The guide post (338) is slidably cooperated in the guide hole (337). The first telescopic device (335) drives the guide plate (331) to move back and forth, so that the movable block (333) moves up and down along the slide groove (336) to lift the clothes rod. The first support block (334) extends into the processing channel (20) to lift the clothes rod.

4. The integrated polishing and chamfering machine for the ends of clothes rods according to claim 1, characterized in that, The chamfering and polishing device (4) includes a guide seat (41), a rotary driver (42), and a translation driver (43). The guide seat (41) is a U-shaped long strip structure, which is vertically fixed on the processing platform (2) and connected to the feeding mechanism (3) at the top. The slot forms a processing channel (20) inward. The rotary driver (42) is equipped with two sets of output shafts (421), which extend into the upper and lower clamping areas (202) respectively. The chamfering cutter (44) is installed at the end of the output shaft (421) of the upper clamping area (201), and the polishing disc (45) is installed at the end of the output shaft (421) of the lower clamping area (202). The translation driver (43) drives the rotary driver (42) to translate so that the chamfering cutter (44) and the polishing disc (45) are close to or away from the end of the clothes rod.

5. The integrated polishing and chamfering machine for the ends of clothes rods according to claim 4, characterized in that, The rotary driver (42) includes a support base (422), a gear synchronizer (423), and a rotary motor (424). The support base (422) is mounted on the translation driver (43). The rotary motor (424) is mounted on one side of the support base (422), and the gear synchronizer (423) is mounted on the other side of the support base (422). The output end of the rotary motor (424) is connected to the input end of the gear synchronizer (423), and two sets of output shafts (421) are connected to the output end of the gear synchronizer (423).

6. The integrated polishing and chamfering machine for the ends of clothes rods according to claim 4, characterized in that, The translation driver (43) includes a fixed plate (431), a slide rail (432), a slider (433), and a telescopic rod (434). The slide rail (432) is arranged on the fixed plate (431) parallel to the output shaft (421). The slider (433) is slidably fitted on the slide rail (432). The telescopic end of the telescopic rod (434) is connected to the slider (433). The support base (422) is fixed on the slider (433).

7. The integrated polishing and chamfering machine for the ends of clothes rods according to claim 1, characterized in that, The clamping mechanism (5) includes a fixed clamping block (51), a movable clamping block (52), a second telescopic device (53), and a third telescopic device (54). The fixed clamping block (51) is installed on one side of the processing channel (20) via a fixed seat (55), and the movable clamping block (52) is installed on the other side of the processing channel (20) via a movable seat (56). The fixed clamping block (51) and the movable clamping block (52) are provided with V-shaped clamping openings on opposite sides. The second telescopic device (53) is installed on the rear side of the movable clamping block (52) to drive it to move. The third telescopic device (54) is installed on one side of the processing channel (20) and has a second support block (57) at its telescopic end, which extends into the processing channel (20) to support the clothes rod.

8. The integrated polishing and chamfering machine for the ends of clothes rods according to claim 7, characterized in that, The fixed clamping block (51) and the movable clamping block (52) are each provided with two sets, corresponding to the positions of the upper and lower clamping areas (202). The second telescopic device (53) is provided with two sets and is respectively connected to the upper movable block (333) and the lower movable block (333).

9. The integrated polishing and chamfering machine for the ends of clothes rods according to claim 1, characterized in that, The frame (1) is provided with a spacing adjustment mechanism (6). Two sets of processing platforms (2) are respectively installed on the spacing adjustment mechanism (6) in a fixed and movable manner. The spacing adjustment mechanism (6) includes a base (61), a guide rod (62), a sliding seat (63), a screw (64), a drive block (65), and a drive motor (66). The base (61) is fixed on both sides of the top of the frame (1). The two ends of the guide rod (62) are fixed on the base (61). The sliding seat (63) is slidably sleeved on the guide rod (62). One set of processing platforms (2) is fixed on the sliding seat (63), and the other set can slide along the guide rod (62). The screw (64) is rotatably installed on the bottom of the processing platform (2) and parallel to the guide rod (62). The drive motor (66) is connected to one end of the screw (64). The drive block (65) is threadedly fitted on the screw (64) and connected to the movable processing platform (2).