Clothes hanger automatic painting processing production line
By combining roller painting and spray painting mechanisms on the automatic coat hanger painting production line, and utilizing the groove structure of the paint scraper and paint application shaft to achieve roller painting, the problem of uneven paint filling in the traditional spray painting process is solved, and the surface flatness and processing efficiency of the coat hanger are improved.
Patent Information
- Application Number
- CN202310004460.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-01-03
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2043-01-03
AI Technical Summary
Traditional spray painting processes struggle to fill the cracks on the front and back surfaces of the hanger with paint, resulting in poor surface smoothness after painting and affecting processing efficiency and quality.
The automatic coat hanger painting production line combines a roller painting mechanism and a spray painting mechanism. The paint is stored in a tank composed of a scraper shaft and a paint application shaft. The drive mechanism rotates the tank to achieve roller painting. The hanger is automatically flipped by a flipping structure to ensure that all four surfaces are painted evenly.
It improves the smoothness and adhesion of the paint on the hanger surface, increases processing efficiency and quality, reduces manual flipping operations, and increases the degree of automation.
Smart Images

Figure CN115970964B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of hanger processing technology, and in particular to an automatic hanger painting production line. Background Technology
[0002] During the manufacturing process of clothes hangers, the surface needs to be painted. Painting not only improves the appearance of the hangers but also protects them, effectively preventing corrosion in harsh environments such as dampness and dust. Traditionally, clothes hanger painting typically uses a spray painting process. For example, existing herringbone-shaped wooden hangers include front and back flat surfaces, as well as top and bottom curved surfaces. Traditional spray painting requires painting all four surfaces. Furthermore, after the wooden hanger is shaped, cracks easily appear on the front and back flat surfaces. Using a spray painting process to paint these surfaces makes it difficult for the paint to fill these cracks, resulting in poor surface smoothness after painting. Therefore, touch-ups are frequently needed, affecting processing efficiency and quality. Summary of the Invention
[0003] The present invention aims to solve at least one of the aforementioned technical problems by providing an automatic painting production line for clothes hangers, which can complete the painting process of clothes hangers on the same production line and improve the smoothness of the paint surface after painting on both the front and back surfaces of the clothes hanger, thereby improving the processing efficiency and quality of the clothes hangers.
[0004] To achieve the above objectives, the technical solution adopted by the present invention is as follows: an automatic painting production line for clothes hangers, comprising a horizontally arranged conveyor belt, and a roller painting mechanism and a spray painting mechanism arranged sequentially along the conveyor belt's conveying direction; two roller painting mechanisms are provided, and are used to perform roller painting on the front and rear surfaces of the clothes hanger respectively. Each roller painting mechanism includes a roller painting component and an oven arranged sequentially along the conveyor belt's conveying direction. The roller painting component includes a mounting frame, on which a scraper shaft and a paint application shaft are arranged horizontally and rotatably in sequence along the conveyor belt's conveying direction. Both the scraper shaft and the paint application shaft are connected to a drive mechanism that drives their rotation. The scraper shaft and the paint application shaft are arranged parallel above the conveyor belt, and a trough for storing paint is constructed between the scraper shaft and the paint application shaft. The distance between the paint application shaft and the conveyor belt is matched with the thickness of the clothes hanger; two spray painting mechanisms are provided, and are used to perform roller painting on the upper and lower surfaces of the clothes hanger respectively. Each spray painting mechanism includes a spray painting component and an oven arranged sequentially along the conveyor belt's conveying direction.
[0005] Preferably, the mounting frame is provided with two adjusting frames, and the two ends of the paint scraper shaft and the two ends of the paint application shaft are rotatably mounted on the two adjusting frames respectively. The two adjusting frames are slidably engaged with the mounting frame and can move vertically relative to the mounting frame. Two adjusting screws are rotatably mounted on the mounting frame and are threadedly connected to the two adjusting frames respectively.
[0006] Preferably, each of the adjustment frames is slidably connected to two adjustment seats, and both ends of the paint scraper shaft and the paint application shaft are rotatably mounted on the adjustment seats. One of the adjustment seats on each adjustment frame is slidably engaged with it so as to adjust the horizontal distance between the two adjustment frames on the same adjustment frame.
[0007] Preferably, a flipping structure is provided between the two roller painting mechanisms. The conveyor belt includes a first conveyor belt and a second conveyor belt connected together. The two roller painting mechanisms are respectively located above the first conveyor belt and the second conveyor belt. The height of the first conveyor belt is higher than the height of the second conveyor belt. A guide block that can flip the hanger is installed at the connection between the first conveyor belt and the second conveyor belt to form the flipping structure.
[0008] Preferably, the painting assembly includes a paint spraying box and a painting device disposed inside the paint spraying box, with an inlet at one end of the paint spraying box and an outlet at the other end.
[0009] Preferably, the painting assembly further includes a support rod for supporting the hanger so that the hanger is placed vertically. The support rod passes through the paint spray box, and the conveyor belt is connected to one end of the support rod through a first guide plate, so that the horizontally placed hanger is placed vertically between the two support rods after passing through the first guide plate.
[0010] Preferably, the other end of the support rod is connected to the conveyor belt via a second guide plate, so that the vertically placed clothes hanger is placed horizontally on the conveyor belt after passing through the second guide plate.
[0011] Preferably, a lever is provided at the end of the conveyor belt facing the discharge port, and the distance between the lever and the conveyor belt is greater than the thickness of a clothes hanger and less than the thickness of two clothes hangers stacked together.
[0012] Preferably, the paint spraying assembly further includes a first material pushing assembly for pushing the hanger on the support rod toward the discharge port.
[0013] Preferably, the starting end of the conveyor belt is provided with an automatic feeding mechanism for conveying hangers onto the conveyor belt. The automatic feeding mechanism includes a storage platform, a storage rack and a second pushing component installed on the storage platform. The storage rack is provided with a storage trough for vertically stacking hangers. A pushing port is left between the bottom of the storage trough and the storage platform. The second pushing component can push the bottom hanger of the storage trough onto the conveyor belt each time.
[0014] The beneficial effects are as follows: Compared with the prior art, the automatic painting production line for clothes hangers of the present invention, by setting up a roller painting mechanism and a spray painting mechanism in cooperation, can complete the painting process of four surfaces of wooden clothes hangers on the same production line. It has a high degree of automation and improves the painting efficiency of wooden clothes hangers. At the same time, the roller painting mechanism is equipped with a scraper shaft and a painting shaft, and the scraper shaft and the painting shaft are constructed to form a tank for storing paint. The paint can be placed in the tank. When the drive mechanism drives the scraper shaft and the painting shaft to rotate, the surface of the painting shaft can be coated with a layer of paint. When the conveyor mechanism horizontally conveys the clothes hanger under the painting shaft, the painting shaft can roll the surface of the clothes hanger, thereby pressing the paint on the painting shaft onto the surface of the clothes hanger to achieve the painting of the clothes hanger surface. The painting of the clothes hanger surface by rolling can evenly and smoothly press the paint onto the surface of the clothes hanger, and can fill the cracks of the clothes hanger, thereby improving the smoothness of the paint surface of the clothes hanger and increasing the adhesion of the paint to the surface of the clothes hanger. Attached Figure Description
[0015] The specific embodiments of the present invention will be further described in detail below with reference to the accompanying drawings, wherein:
[0016] Figure 1 This is a schematic diagram of the structure of an automatic painting production line for clothes hangers according to the present invention;
[0017] Figure 2 This is a schematic diagram of the roller coating assembly.
[0018] Figure 3 This is a schematic diagram of the flipping structure;
[0019] Figure 4 This is a schematic diagram of the painting mechanism;
[0020] Figure 5 This is a structural schematic diagram of the first embodiment of the support rod;
[0021] Figure 6 This is a structural diagram of the second embodiment of the support rod;
[0022] Figure 7 This is a schematic diagram of the automatic feeding mechanism;
[0023] Figure 8 This is a schematic diagram of the cross-section of the storage rack. Detailed Implementation
[0024] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0025] It should be noted that when a component is described as "fixed to" another component, it can be directly on the other component or may have a central component. When a component is described as "connected to" another component, it can be directly connected to the other component or may have a central component. When a component is described as "set on" another component, it can be directly set on the other component or may have a central component. When a component is described as "set in the middle," it is not simply set in the exact center, as long as it is not set within the area defined by both ends being in the middle. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.
[0026] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0027] like Figures 1 to 8As shown, an automatic painting production line for clothes hangers includes a horizontally arranged conveyor belt 1, and a roller painting mechanism 2 and a spray painting mechanism 3 arranged sequentially along the conveying direction of the conveyor belt 1. Two roller painting mechanisms 2 are provided, used to perform roller painting on the front and rear surfaces of the clothes hanger respectively. Each roller painting mechanism 2 includes a roller painting assembly 4 and a drying oven 5 arranged sequentially along the conveying direction of the conveyor belt 1. The drying oven 5 can dry the painted clothes hanger to facilitate subsequent painting operations. The roller painting assembly 4 includes a mounting frame 6, which includes two frames symmetrically arranged on both sides of the conveyor belt 1. A scraper shaft 7 and a painting shaft 8 are horizontally rotatably arranged sequentially along the conveying direction of the conveyor belt 1 on the mounting frame 6. Both the scraper shaft 7 and the painting shaft 8 are connected to a drive mechanism to drive their rotation. Specifically, the drive mechanism may include a motor, with a drive wheel mounted on the output shaft of the motor, and driven wheels mounted at the ends of both the painting shaft 8 and the scraper shaft 7. The drive wheel and the driven wheel are connected by a belt or chain drive, thereby enabling the motor to drive the painting shaft 8 and the scraper shaft 7 to rotate. The paint scraper shaft 7 and the paint application shaft 8 are arranged in parallel above the conveyor belt 1. The two ends of the paint scraper shaft 7 and the paint application shaft 8 are rotatably mounted on two frames. A trough 9 for storing paint is constructed between the paint scraper shaft 7 and the paint application shaft 8. The distance between the paint scraper shaft 7 and the paint application shaft 8 is 1-2mm to prevent paint from flowing down through the gap between them. During rotation, the surface of the paint application shaft 8 is coated with a layer of paint. The paint scraper shaft 7 can scrape off excess paint from the paint application shaft 8 to ensure the paint application is smooth and even. The paint thickness on the surface of the paint roller 8 is uniform. The distance between the paint roller 8 and the conveyor belt 1 is matched with the thickness of the hanger, so that the paint roller 8 can roll the hanger surface on the conveyor belt 1. The outer diameter of the paint roller 8 is larger than the outer diameter of the scraper roller 7, so that the scraper roller 7 will not press against the surface of the hanger. Two painting mechanisms 3 are provided, which are used to perform roller painting on the upper and lower surfaces of the hanger respectively. Both painting mechanisms 3 include a painting assembly 10 and an oven 5 arranged sequentially along the conveying direction of the conveyor belt 1. After the surface of the hanger is roller painted and painted, it can be conveyed to the oven 5 for drying via the conveyor belt 1. In this application, the oven 5 can adopt an existing structure, which is not an improvement of this application, so it will not be described in detail. In this application, the conveyor belt 1 can be provided in multiple sections, and the height of each section of the conveyor belt 1 can be set as needed.
[0028] This invention provides an automated painting production line for wooden hangers. By cooperating with a roller painting mechanism 2 and a spray painting mechanism 3, it can complete the painting process on all four surfaces of wooden hangers on the same production line, achieving a high degree of automation and improving the painting efficiency of wooden hangers. The roller painting mechanism 2, by incorporating a scraper shaft 7 and a spray painting shaft 8, and configuring a trough 9 between the scraper shaft 7 and the spray painting shaft 8 to hold the paint, allows the paint to be placed in the trough 9. When the drive mechanism drives the scraper shaft 7 and the spray painting shaft 8 to rotate, it enables... The surface of the painting shaft 8 is coated with a layer of paint. When the conveyor mechanism horizontally conveys the hanger below the painting shaft 8, the painting shaft 8 can roll the surface of the hanger, thereby pressing the paint on the painting shaft 8 onto the surface of the hanger to achieve painting of the hanger surface. The painting of the hanger surface by rolling can evenly and smoothly press the paint onto the surface of the hanger, and can also fill the cracks of the hanger, thereby improving the smoothness of the paint surface of the hanger and increasing the adhesion of the paint to the surface of the hanger.
[0029] like Figure 2 As shown, in one embodiment, the mounting frame 6 may be provided with two adjusting frames 11. The two ends of the paint scraper shaft 7 and the two ends of the paint application shaft 8 are rotatably mounted on the two adjusting frames 11, that is, one end of the paint scraper shaft 7 and the paint application shaft 8 is mounted on one adjusting frame 11, and the other end of the paint scraper shaft 7 and the paint application shaft 8 is mounted on the other adjusting frame 11. The two adjusting frames 11 are respectively slidably engaged with the two frames of the mounting frame 6, and can be moved, adjusted and fixed in the vertical direction relative to the mounting frame 6, so that the height between the paint scraper shaft 7 and the paint application shaft 8 and the conveyor belt 1 can be adjusted as needed to realize the roller painting process for hangers of different thicknesses.
[0030] Specifically, two adjusting screws 12 are rotatably mounted on the mounting bracket 6. The two adjusting screws 12 are threadedly connected to the two adjusting brackets 11 respectively. The two sides of the adjusting brackets 11 are slidably engaged with the slide rails on the mounting bracket 6, so that the adjusting brackets 11 can only slide up and down along the slide rails. The adjusting screws 12 are threadedly connected to the mounting bracket 6 to form a screw drive mechanism. That is, by rotating the adjusting screws 12, the up and down movement and positioning of the adjusting brackets 11 can be achieved.
[0031] In another embodiment, each adjusting frame 11 is slidably connected to two adjusting seats 13. Both ends of the paint scraper shaft 7 and the paint application shaft 8 are rotatably mounted on the adjusting seats 13. One adjusting seat 13 on each adjusting frame 11 is slidably engaged with it, allowing adjustment of the horizontal distance between the two adjusting frames 11 on the same adjusting frame 11. This adjusts the distance between the paint application shaft 8 and the paint scraper shaft 7, thereby allowing adjustment of the paint thickness on the paint application shaft 8 according to different painting requirements. Specifically, the adjusting structure of the adjusting seat 13 is similar to that of the adjusting frame 11, also employing a screw drive mechanism composed of adjusting screws 12, and therefore will not be described in detail here. Furthermore, the adjusting frame 11 and adjusting seat 13 can also employ other adjusting structures. For example, both the adjusting frame 11 and adjusting seat 13 can be driven by a cylinder or hydraulic cylinder for convenient adjustment.
[0032] like Figure 3 As shown, a flipping structure can be provided between the two roller painting mechanisms 2. The conveyor belt 1 can include a first conveyor belt 14 and a second conveyor belt 15 connected together. The two roller painting mechanisms 2 are respectively located above the first conveyor belt 14 and the second conveyor belt 15, and the height of the first conveyor belt 14 is higher than the height of the second conveyor belt 15. A guide block 16 that can flip the hanger is installed at the connection between the first conveyor belt 14 and the second conveyor belt 15. The guide block 16 can be arranged in an arc shape. When the hanger falls from the end of the first conveyor belt 14, the guide block 16 can support the head of the hanger and make it flip during the fall. After falling to the starting end of the second conveyor belt 15, the flipping is completed, thus forming the above-mentioned flipping structure. By incorporating two roller painting mechanisms 2, the front and rear surfaces of the hanger can be roller-painted separately during the hanger's transport process. Furthermore, a flipping structure between the two roller painting mechanisms 2 allows for automatic flipping after roller painting on one surface of the hanger, facilitating roller painting on the other surface. This eliminates the need for manual flipping, resulting in a high degree of automation and improved painting efficiency.
[0033] like Figure 4 As shown, in one specific embodiment, the painting assembly 10 may include a paint spraying box 17 and a painting device disposed in the paint spraying box 17. One end of the paint spraying box 17 is provided with a feed port 18 and the other end is provided with a discharge port 19. The painting device adopts an existing structure, which is not an improvement of this application, so it will not be described in detail.
[0034] Furthermore, the painting assembly 10 may also include a support rod 20 for supporting the hanger so that it is placed vertically. The support rod 20 passes through the paint spray box 17, and the conveyor belt 1 is connected to one end of the support rod 20 through a first guide plate 21, so that the horizontally placed hanger is placed vertically between the two support rods 20 after passing through the first guide plate 21. Specifically, the first guide plate 21 is an arc-shaped plate that is inclined downwards, so that the horizontally conveyed hanger can change to a vertical position as it slides down along the first guide plate 21. The support rod 20 in this application has two configurations, which are respectively set on different painting mechanisms 3, such as... Figure 5 In one arrangement shown, two support rods 20 are provided, arranged parallel to each other, to support both ends of the hanger respectively. This arrangement ensures that the hanger is positioned with its lower surface facing upwards after placement. Figure 6 As shown, in another configuration, there are three support rods 20. The three support rods 20 are arranged in parallel to each other and form a three-point support structure. One support rod 20 is used to support the middle of the hanger, and the other two support rods 20 are used to support the two ends of the hanger. In this configuration, the upper surface of the hanger is placed upwards after it is placed.
[0035] Furthermore, the other end of the support rod 20 can be connected to the conveyor belt 1 via the second guide plate 22, so that the vertically placed clothes hanger can be placed horizontally on the conveyor belt 1 after passing through the second guide plate 22. Specifically, the second guide plate 22 can also be an arc-shaped plate that is inclined downwards, so that the clothes hanger that is vertically conveyed on the support rod 20 can be changed to a horizontally placed state on the conveyor belt 1 as it slides down along the first guide plate 21.
[0036] In one preferred embodiment, a paddle 23 may be provided at one end of the conveyor belt 1 facing the discharge port 19. The distance between the paddle 23 and the conveyor belt 1 is greater than the thickness of a hanger but less than the thickness of two hangers stacked together. This allows the paddle 23 to separate the stacked hangers when they slide down from the support rod 20 onto the conveyor belt 1, thus preventing the hangers from stacking during the conveying process and facilitating subsequent drying and painting.
[0037] In another preferred embodiment, the paint spraying assembly 10 further includes a first pusher assembly 24, which is used to push the hanger on the support rod 20 toward the discharge port 19, thereby automatically pushing the hanger into the paint spraying box 17 for paint spraying. Specifically, the paint spraying assembly 10 may include a pusher plate and a cylinder.
[0038] like Figure 7 and Figure 8As shown, in a more preferred embodiment, the starting end of the conveyor belt 1 can be provided with an automatic feeding mechanism 25 for feeding hangers onto the conveyor belt 1. The automatic feeding mechanism 25 includes a storage platform 26, a storage rack 27 mounted on the storage platform 26, and a second pushing component 28. The storage rack 27 is provided with a storage trough 29 for vertically stacking hangers. A pushing opening 30 is provided between the bottom of the storage trough 29 and the storage platform 26. The second pushing component 28 can push the bottom hanger of the storage trough 29 onto the conveyor belt 1 each time. In this embodiment, the second pushing component 28 can also include a push plate and a cylinder for driving the push plate. The cylinder drives the push plate to reciprocate, so that the push plate can push the hangers onto the conveyor belt 1 in a regular manner. The thickness of the push plate is less than the height of the pushing opening 30, so that the push plate extends into the bottom of the storage trough 29 and completely pushes out the hangers. The automatic feeding mechanism 25 automatically feeds the hangers onto the conveyor belt 1, which has a high degree of automation, reduces manpower input, and further improves production efficiency.
[0039] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them. Any modifications or equivalent substitutions that do not depart from the spirit and scope of the present invention should be covered within the scope of the technical solutions of the present invention.
Claims
1. A clothes hanger automatic painting processing production line, characterized in that, The application relates to a clothes hanger painting device, which comprises horizontally arranged conveying belts (1), and roll painting mechanisms (2) and paint spraying mechanisms (3) arranged in sequence along the conveying direction of the conveying belts (1); the roll painting mechanisms (2) are arranged in two groups and are used for respectively performing roll painting on the front and back planes of the clothes hanger; each roll painting mechanism (2) comprises roll painting assemblies (4) and ovens (5) arranged in sequence along the conveying direction of the conveying belts (1); the roll painting assembly (4) comprises a mounting frame (6), the mounting frame (6) is horizontally and rotatably provided with paint scraping shafts (7) and paint applying shafts (8) in sequence along the conveying direction of the conveying belts (1), the paint scraping shafts (7) and the paint applying shafts (8) are connected with driving mechanisms for driving the rotation of the paint scraping shafts (7) and the paint applying shafts (8), the paint scraping shafts (7) and the paint applying shafts (8) are arranged in parallel above the conveying belts (1), a groove (9) capable of storing paint is formed between the paint scraping shafts (7) and the paint applying shafts (8), and the distance between the paint applying shafts (8) and the conveying belts (1) is matched with the thickness of the clothes hanger; the paint spraying mechanisms (3) are arranged in two groups and are used for respectively performing roll painting on the upper and lower planes of the clothes hanger; each paint spraying mechanism (3) comprises paint spraying assemblies (10) and ovens (5) arranged in sequence along the conveying direction of the conveying belts (1); two adjusting frames (11) are arranged on the mounting frame (6), the two ends of the paint scraping shafts (7) and the two ends of the paint applying shafts (8) are rotatably arranged on the two adjusting frames (11), the two adjusting frames (11) are in sliding connection with the mounting frame (6) and can move in the vertical direction relative to the mounting frame (6), two adjusting screws (12) are rotatably arranged on the mounting frame (6), the two adjusting screws (12) are in threaded connection with the two adjusting frames (11), a turnover structure is arranged between the two roll painting mechanisms (2), the conveying belts (1) comprise a first conveying belt (14) and a second conveying belt (15) connected with each other, the two roll painting mechanisms (2) are arranged above the first conveying belt (14) and the second conveying belt (15), the height of the first conveying belt (14) is higher than that of the second conveying belt (15), and a guide block (16) capable of turning over the clothes hanger is arranged at the connection position of the first conveying belt (14) and the second conveying belt (15) to form the turnover structure.
2. The automatic clothes hanger painting processing production line according to claim 1, characterized in that, Two adjusting seats (13) are in sliding connection with each adjusting frame (11), the two ends of the paint scraping shafts (7) and the paint applying shafts (8) are rotatably arranged on the adjusting seats (13), and one adjusting seat (13) on each adjusting frame (11) is in sliding connection with the adjusting frame (11) so as to adjust the horizontal distance between the two adjusting seats (13) on the same adjusting frame (11).
3. The automatic clothes hanger painting processing production line according to claim 1, characterized in that, The paint spraying assembly (10) comprises a paint spraying box (17) and paint spraying devices arranged in the paint spraying box (17), one end of the paint spraying box (17) is provided with a feeding port (18), and the other end is provided with a discharging port (19).
4. The automatic clothes hanger painting processing production line according to claim 3, characterized in that, The paint spraying assembly (10) further comprises supporting rods (20) for supporting hangers to be placed vertically, the supporting rods (20) penetrating the paint spraying box (17), and the conveying belt (1) being connected to one end of the supporting rods (20) through a first guide plate (21) so that the horizontally placed hangers are placed vertically between the two supporting rods (20) after passing through the first guide plate (21).
5. The automatic clothes hanger painting processing production line according to claim 4, characterized in that, The other end of the supporting rods (20) is connected to the conveying belt (1) through a second guide plate (22) so that the vertically placed hangers are placed horizontally on the conveying belt (1) after passing through the second guide plate (22).
6. The automatic clothes hanger painting processing production line according to claim 5, characterized in that, The conveying belt (1) is provided with a push piece (23) at one end towards the discharge port (19), and the distance between the push piece (23) and the conveying belt (1) is greater than the thickness of one hanger and less than the thickness of two hangers stacked together.
7. The automatic hanger painting processing production line according to claim 4, characterized in that, The paint spraying assembly (10) further comprises a first pushing assembly (24) for pushing the hangers on the supporting rods (20) to move towards the discharge port (19).
8. The automatic clothes hanger painting processing production line according to claim 1, characterized in that, The starting end of the conveying belt (1) is provided with an automatic feeding mechanism (25) for feeding hangers onto the conveying belt (1), and the automatic feeding mechanism (25) comprises a storage platform (26), a storage rack (27) and a second pushing assembly (28) installed on the storage platform (26), the storage rack (27) is provided with storage grooves (29) for vertically stacking hangers, and a pushing opening (30) is left between the bottom of the storage grooves (29) and the storage platform (26), and the second pushing assembly (28) can push the bottom hanger in the storage grooves (29) onto the conveying belt (1) at a time.
Citation Information
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