Positioning mechanism for garment processing
By designing the cutting mechanism and positioning mechanism body that automatically cleans clothes debris, the problem that the existing clothing processing positioning mechanism cannot automatically clean clothes debris is solved, which improves work efficiency and equipment use efficiency, and ensures the accuracy of clothing dimensionality.
Patent Information
- Application Number
- CN202421826502.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The existing clothing processing and positioning mechanism cannot automatically clean up the clothes debris left on the workbench during the processing of clothing fabrics, resulting in the need of manual cleaning of the workload and time, and reduce work efficiency and equipment use efficiency.
A garment processing positioning mechanism including a cutting mechanism and a positioning mechanism body is designed. The feeding mechanism drives the single-hole rectangular plate to rotate through the motor drive rotating rod, and directs the clothes debris into the collection box for collection. The positioning mechanism body ensures that the fabric does not have angular deviation during processing and ensures dimensional accuracy through the cooperation of L-shaped blocks, slide chutes and clamps.
It realizes automatic cleaning of clothes debris, reduces the workload and time of staff, improves work efficiency and equipment use efficiency, and ensures the dimensional accuracy of key parts of clothing.
Smart Images

Figure CN223025502U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of clothing processing, in particular to a clothing processing positioning mechanism. Background Art
[0002] Clothing refers to the general term for clothes, shoes, bags, toys, ornaments, etc., mostly referring to clothes. Clothing processing is a process of making raw materials such as textile fabrics and accessories into finished clothing that can be worn through a series of processes and procedures such as cutting, sewing, and ironing. In the clothing processing process, in order to ensure the dimensional accuracy of the key parts of each piece of clothing, a positioning mechanism is generally used in the clothing processing process.
[0003] In the existing technology, although the existing clothing processing positioning mechanism can ensure the dimensional accuracy of the key parts of each piece of clothing during actual use, it does not have the function of cleaning the clothing debris left on the workbench during the processing of the clothing fabric. That is, the clothing debris left on the workbench still needs to be manually handled by the staff, which increases the workload of the staff, reduces work efficiency, reduces the use effect of the clothing processing positioning mechanism, and also reduces the use efficiency of the clothing processing positioning mechanism.
[0004] Therefore, it is necessary to propose a clothing processing positioning mechanism to solve the above-mentioned technical problems. Content of the Utility Model
[0005] The purpose of the utility model is to solve the problem that the existing clothing processing positioning mechanism in the existing technology does not have the function of cleaning the clothing debris left on the workbench during the processing of the clothing fabric. That is, the clothing debris left on the workbench still needs to be manually handled by the staff, which increases the workload of the staff, reduces work efficiency, reduces the use effect of the clothing processing positioning mechanism, and also reduces the use efficiency of the clothing processing positioning mechanism, and to propose a clothing processing positioning mechanism.
[0006] To achieve the above purpose, the utility model adopts the following technical scheme: A clothing processing positioning mechanism includes a blanking mechanism, and a positioning mechanism body is arranged on the blanking mechanism. The blanking mechanism includes two support frames. Connecting plates are fixed to the tops of the two support frames. A single-hole rectangular plate is arranged between the opposite sides of the two connecting plates. A rotating rod is fixed inside the single-hole rectangular plate. A motor is installed on one side of one of the support frames, and a controller is installed on one side of one of the support frames. Stabilizing frames are fixed to the opposite sides of the two support frames, and a collection box is installed between the tops of the two stabilizing frames.
[0007] Preferably, the output end of the motor is installed with one end of the rotating rod. The two ends of the rotating rod respectively pass through the opposite sides of the two connecting plates movably. The motor is electrically connected to the controller. The opposite sides of the two connecting plates are respectively in contact with both sides of the single-hole rectangular plate.
[0008] Preferably, the positioning mechanism body includes two L-shaped blocks, a sliding groove and two rectangular blocks. L-shaped plates are rotatably connected to the front surfaces of the two L-shaped blocks near the top positions through hinges. Rectangular holes are formed in the front surfaces of the two L-shaped plates. Clamping blocks are movably sleeved inside the two rectangular holes.
[0009] Preferably, the upper sides of the two clamping blocks are respectively in contact with the bottom of the single-hole rectangular plate. Sponge blocks are adhesively connected to the bottoms of the two clamping blocks near the edges. Soft pads are adhesively connected to the lower sides of the two L-shaped plates.
[0010] Preferably, the bottoms of the two soft pads are respectively in contact with the top of the single-hole rectangular plate. The sliding groove is formed in the surface of the single-hole rectangular plate close to the L-shaped block.
[0011] Preferably, sliders are slidably connected inside the two sliding grooves. The front surfaces of the two L-shaped blocks are respectively fixed to the surfaces of the two sliders.
[0012] Preferably, the tops of the two rectangular blocks are respectively fixed to the bottoms of the two connecting plates near the front surface positions. The tops of the two rectangular blocks are respectively in contact with the bottom of the single-hole rectangular plate.
[0013] Compared with the prior art, the advantages and positive effects of the present utility model are as follows.
[0014] 1. In the present utility model, by arranging the blanking mechanism, the clothing scraps remaining on the single-hole rectangular plate during the clothing fabric processing can be quickly diverted to the collection box for collection, thereby reducing the workload of the staff, improving the work efficiency, improving the use effect of the clothing processing positioning mechanism, and at the same time improving the use efficiency of the clothing processing positioning mechanism. By the cooperation of the two connecting plates, the two support frames, the rotating rod and the motor, the rotation operation of the single-hole rectangular plate can be realized. By the action of the collection box, the clothing scraps diverted from the single-hole rectangular plate can be collected.
[0015] 2. In the present utility model, by arranging the positioning mechanism body, the angle deviation of the clothing fabric during the processing can be avoided, so as to ensure that the sizes of the key parts of each piece of clothing after processing meet the requirements. By the cooperation of the sliding groove, the L-shaped block, the L-shaped plate, the rectangular hole, the clamping block, the slider and the soft pad, the clothing fabric can be stably fixed on the single-hole rectangular plate. By the action of the rectangular block, a certain supporting force can be provided for the single-hole rectangular plate. Description of the Drawings
[0016] Figure 1 This utility model provides a perspective view of a positioning mechanism for clothing processing;
[0017] Figure 2 This utility model provides another perspective view of a positioning mechanism for clothing processing;
[0018] Figure 3 This utility model provides a partial perspective view of a positioning mechanism for clothing processing from a top view angle;
[0019] Figure 4 This utility model provides a perspective view of the main body of a positioning mechanism for clothing processing;
[0020] Figure 5 This utility model provides a partial perspective view of a positioning mechanism for clothing processing from a bottom view angle.
[0021] Legend: 1. blanking mechanism; 101. support frame; 102. connecting plate; 103. single-hole rectangular plate; 104. rotating rod; 105. motor; 106. controller; 107. stabilizing frame; 108. collection box; 2. main body of the positioning mechanism; 201. L-shaped block; 202. L-shaped plate; 203. rectangular hole; 204. clamping block; 205. sponge block; 206. soft pad; 207. chute; 208. slider; 209. rectangular block. Detailed implementation manners
[0022] In order to more clearly understand the above-mentioned objects, features and advantages of this utility model, the following further describes this utility model in conjunction with the drawings and embodiments. It should be noted that, without conflict, the embodiments of this application and the features in the embodiments can be combined with each other.
[0023] In the following description, many specific details are set forth to fully understand this utility model. However, this utility model can also be implemented in other ways different from those described herein. Therefore, this utility model is not limited by the specific embodiments disclosed in the following specification.
[0024] Such as Figures 1 - 5As shown in the figure, the utility model provides a positioning mechanism for clothing processing, which includes a blanking mechanism 1. A positioning mechanism body 2 is arranged on the blanking mechanism 1. The blanking mechanism 1 includes two support frames 101. Connecting plates 102 are fixed to the tops of the two support frames 101. A single-hole rectangular plate 103 is arranged between the opposite sides of the two connecting plates 102. A rotating rod 104 is fixed inside the single-hole rectangular plate 103. A motor 105 is installed on one side of one of the support frames 101, and a controller 106 is installed on one side of one of the support frames 101. Stabilizing frames 107 are fixed to the opposite sides of the two support frames 101. A collection box 108 is installed between the tops of the two stabilizing frames 107. The output end of the motor 105 is installed with one end of the rotating rod 104. The two ends of the rotating rod 104 respectively pass through the opposite sides of the two connecting plates 102 movably. The motor 105 is electrically connected to the controller 106. The opposite sides of the two connecting plates 102 are respectively in contact with the two sides of the single-hole rectangular plate 103. The positioning mechanism body 2 includes two L-shaped blocks 201, a chute 207 and two rectangular blocks 209. L-shaped plates 202 are rotatably connected to the front surfaces of the two L-shaped blocks 201 near the top positions through hinges. Rectangular holes 203 are opened on the front surfaces of the two L-shaped plates 202. Clamping blocks 204 are movably sleeved inside the two rectangular holes 203. The upper sides of the two clamping blocks 204 are in contact with the bottom of the single-hole rectangular plate 103. Sponge blocks 205 are adhesively connected to the edges near the bottoms of the two clamping blocks 204. Soft pads 206 are adhesively connected to the lower sides of the two L-shaped plates 202. The bottoms of the two soft pads 206 are in contact with the top of the single-hole rectangular plate 103. The chute 207 is opened on the surface of the single-hole rectangular plate 103 near the L-shaped block 201. Sliders 208 are slidably connected inside the two chutes 207. The front surfaces of the two L-shaped blocks 201 are respectively fixed to the surfaces of the two sliders 208. The tops of the two rectangular blocks 209 are respectively fixed to the positions near the front surfaces of the bottoms of the two connecting plates 102. The tops of the two rectangular blocks 209 are in contact with the bottom of the single-hole rectangular plate 103.
[0025] The achieved effect is that when the clothing fabric needs to be processed, the staff first removes the two sponge blocks 205 from the two clamping blocks 204 respectively, and then removes the two clamping blocks 204 from the two rectangular holes 203 respectively. Then, each L-shaped plate 202 rotates a certain angle (depending on the situation) with the corresponding L-shaped block 201 as the rotation axis. At this time, each rotating L-shaped plate 202 will drive the soft pad 206 connected to it to rotate. When the two L-shaped plates 202 cannot rotate any further, the fabric to be processed is directly placed flat on the single-hole rectangular plate 103. Then, according to the size of the clothing fabric, the two sliders 208 are horizontally moved respectively through the cooperation of the sliding grooves 207. At this time, each moving slider 208 will drive the L-shaped plate 202 connected to it to move, and each moving L-shaped plate 202 will also drive the soft pad 206 connected to it to move. When the two sliders 208 reach the appropriate positions, the two L-shaped plates 202 are directly rotated back to the initial position, and then each L-shaped plate 202 is fixed through the cooperation of the corresponding rectangular hole 203 and the clamping block 204. When the two L-shaped plates 202 are both fixed, the clothing fabric on the single-hole rectangular plate 103 can be fixed. At this time, when the clothing fabric is processed, the clothing fabric will not shift, so as to ensure that the sizes of the key parts of each piece of clothing obtained by processing meet the requirements. When the processing operation of the clothing fabric is completed, the above operation steps are directly repeated, the fixing operation of the clothing fabric is released, and then the fabric of the key part of each piece of clothing obtained by processing is removed from the single-hole rectangular plate 103. Then, the two L-shaped plates 202 are reset to their original positions. After that, the controller 106 is used to start the motor 105. At this time, the started motor 105 will drive the single-hole rectangular plate 103 and the components on the single-hole rectangular plate 103 to rotate simultaneously under the cooperation of the two support frames 101, the two connecting plates 102 and the rotating rod 104. At this time, the clothing debris on the top of the single-hole rectangular plate 103 will flow in the direction of the collection box 108 under the action of the continuously inclined single-hole rectangular plate 103, and then flow into the interior of the collection box 108 for collection. At the same time, the bottom of the rotating single-hole rectangular plate 103 will also be separated from the tops of the two rectangular blocks 209. When all the clothing debris on the top of the single-hole rectangular plate 103 has flowed into the interior of the collection box 108, the single-hole rectangular plate 103 is directly reset to its original position by using the cooperation of the controller 106, the two support frames 101, the two connecting plates 102 and the rotating rod 104. When the single-hole rectangular plate 103 is reset to its original position, the motor 105 is directly turned off by using the controller 106, and then the next clothing fabric processing operation can be carried out, which reduces the workload of the staff, improves work efficiency, improves the use effect of the clothing processing positioning mechanism, and also improves the use efficiency of the clothing processing positioning mechanism.
[0026] Working principle: When processing clothing fabrics, the staff first remove the two sponge blocks 205 from the two clamping blocks 204 respectively, and then remove the two clamping blocks 204 from the two rectangular holes 203 respectively. Then, each L-shaped plate 202 rotates a certain angle (depending on the situation) with the corresponding L-shaped block 201 as the rotation axis. At this time, each rotating L-shaped plate 202 will drive the cushion 206 connected to it to rotate. When both L-shaped plates 202 can no longer rotate, directly place the fabric to be processed flat on the single-hole rectangular plate 103. Then, according to the size of the clothing fabric, cooperate with the sliding groove 207 to horizontally move the two sliders 208 respectively. At this time, each moving slider 208 will drive the L-shaped plate 202 connected to it to move, and each moving L-shaped plate 202 will also drive the cushion 206 connected to it to move. When both sliders 208 move to the appropriate positions, directly reset and rotate the two L-shaped plates 202 back to the initial positions. Then, each L-shaped plate 202 is fixed through the cooperation of the corresponding rectangular hole 203 and the clamping block 204. When both L-shaped plates 202 are fixed, the clothing fabric on the single-hole rectangular plate 103 can be fixed. At this time, when processing the clothing fabric, the clothing fabric will not shift, so as to ensure that the dimensions of the key parts of each piece of clothing obtained by processing meet the requirements. When the processing operation of the clothing fabric is completed, directly repeat the above operation steps, loosen the fixing operation of the clothing fabric, and then remove the fabric of the key parts of each piece of clothing obtained by processing from the single-hole rectangular plate 103. Then, reset the two L-shaped plates 202 back to their original positions. After that, use the controller 106 to start the motor 105. At this time, the started motor 105 will drive the single-hole rectangular plate 103 and the components on the single-hole rectangular plate 103 to rotate simultaneously under the cooperation of the two support frames 101, the two connecting plates 102 and the rotating rod 104. At this time, the clothing debris on the top of the single-hole rectangular plate 103 will flow in the direction of the collection box 108 under the action of the continuously inclined single-hole rectangular plate 103, and then flow into the interior of the collection box 108 for collection. At the same time, the bottom of the rotating single-hole rectangular plate 103 will also be separated from the tops of the two rectangular blocks 209. When all the clothing debris on the top of the single-hole rectangular plate 103 has flowed into the interior of the collection box 108, directly use the controller 106, the two support frames 101, the two connecting plates 102 and the rotating rod 104 to cooperate to reset the single-hole rectangular plate 103 back to its original position. When the single-hole rectangular plate 103 is reset back to its original position, directly use the controller 106 to turn off the motor 105, and then the next clothing fabric processing operation can be carried out.
[0027] The wiring diagram of the motor 105 and the controller 106 (PLC controller) in the present utility model belongs to the common general knowledge in the art. Its working principle is already well-known technology. The model is selected according to the actual use, and the control method and wiring layout will not be explained in detail here.
[0028] The above are only the preferred embodiments of the present utility model, and are not limitations to the present utility model in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present utility model, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present utility model still belong to the protection scope of the technical solution of the present utility model.
Claims
1. A garment processing positioning mechanism, characterized in that: The invention comprises a material discharge mechanism (1), wherein a positioning mechanism body (2) is arranged on the material discharge mechanism (1), wherein the material discharge mechanism (1) comprises two support frames (101), a connecting plate (102) is fixed on the top of the two support frames (101), a single-hole rectangular plate (103) is arranged between opposite sides of the two connecting plates (102), a rotating rod (104) is fixed inside the single-hole rectangular plate (103), a motor (105) is installed on one side of one of the support frames (101), a controller (106) is installed on one side of one of the support frames (101), a stabilizing frame (107) is fixed on the opposite sides of the two support frames (101), and a collecting box (108) is installed between the tops of the two stabilizing frames (107).
2. The garment processing positioning mechanism according to claim 1, characterized in that: The output end of the motor (105) is installed with one end of the rotating rod (104), and the two ends of the rotating rod (104) are respectively movable through the opposite sides of the two connecting plates (102). The motor (105) is electrically connected to the controller (106), and the opposite sides of the two connecting plates (102) are respectively in contact with the two sides of the single-hole rectangular plate (103).
3. The garment processing positioning mechanism according to claim 1, characterized in that: The positioning mechanism body (2) comprises two L-shaped blocks (201), a slide groove (207) and two rectangular blocks (209); the front surfaces of the two L-shaped blocks (201) are rotatably connected to an L-shaped plate (202) near the top through a hinge; the front surfaces of the two L-shaped plates (202) are provided with rectangular holes (203); and the insides of the two rectangular holes (203) are movably sleeved with a clamping block (204).
4. The garment processing positioning mechanism according to claim 3, characterized in that: The upper sides of the two clamping blocks (204) are in contact with the bottom of the single-hole rectangular plate (103), the bottoms of the two clamping blocks (204) are bonded and connected to sponge blocks (205) near the edges, and the lower sides of the two L-shaped plates (202) are bonded and connected to soft pads (206).
5. The garment processing positioning mechanism according to claim 4, characterized in that: The bottoms of the two soft pads (206) are in contact with the top of the single-hole rectangular plate (103), and the slide groove (207) is provided on a side of the single-hole rectangular plate (103) close to the L-shaped block (201).
6. The garment processing positioning mechanism according to claim 3, characterized in that: The insides of the two slide grooves (207) are both slidably connected with sliders (208), and the front surfaces of the two L-shaped blocks (201) are respectively fixed to the surfaces of the two sliders (208).
7. The garment processing positioning mechanism according to claim 3, characterized in that: The tops of the two rectangular blocks (209) are respectively fixed to the bottoms of the two connecting plates (102) close to the front surfaces, and the tops of the two rectangular blocks (209) are in contact with the bottom of the single-hole rectangular plate (103).