Manufacturing method of clothing with hot compress and fumigation physiotherapy functions

Through the automated binding mechanism, the automatic feeding, limiting and binding of the hot compress components of the physiotherapy clothing are realized, which solves the problem of low manual binding efficiency in the prior art and improves binding efficiency and accuracy.

CN116548694BActive Publication Date: 2025-07-11YULIN CITY SEVEN SHEEP CLOTHING CO LTD
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Patent Information

Application Number
CN202310611833.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-29
Publication Date
2025-07-11
Estimated Expiration
2043-05-29

AI Technical Summary

Technical Problem

During the binding process of hot compress components of existing physical therapy clothing, manual operations of staff lead to problems such as large workload and low binding efficiency.

Method used

The automatic binding mechanism is adopted to realize automatic feeding, limiting and binding of the clothes body and heat compress components through the motor and mechanical transmission system, reducing manual operation.

Benefits of technology

Improve binding efficiency and accuracy, reduce workload for staff, and enhance the degree of automation of the binding process.

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Abstract

The present invention discloses a manufacturing method of clothing with hot compress and fumigation physiotherapy functions, which relates to the technical field of clothing manufacturing devices, and includes a manufacturing table, a fixing frame, a support seat, a clothing main body, a hot compress component, and a binding mechanism. By setting the binding mechanism in the present invention, the output end of the first motor rotates and drives the clothing main body and the hot compress component to move through mechanical transmission. The pressing plate moves and presses one side of the top of the hot compress component. The output ends of the second motor and the third motor rotate and drive the binding component to move in a plane through mechanical transmission, thereby performing a binding operation on the clothing main body and the hot compress component. Through this structure, it is beneficial to automatically bind the clothing main body and the hot compress component. Compared with the traditional manual binding, the workload of the staff is reduced, and at the same time, the efficiency of binding the clothing main body and the hot compress component is improved, and further, the accuracy of binding the clothing main body and the hot compress component is also improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of clothing manufacturing devices, and specifically to a method for manufacturing clothing with hot compress and fumigation physiotherapy functions. Background Art

[0002] In modern society, clothes have gradually evolved into decorative items for the human body. On the basis of the basic functions of clothes remaining unchanged, people increasingly pay attention to the physiotherapy effects of clothing on the body. When a person has lumbar soreness or is injured and needs hot compress with traditional Chinese medicine preparations, clothes instead become an obstacle. Even if a hot compress patch can be placed on the waist, as the person moves, the hot compress patch will shift, thus affecting the hot compress effect and also affecting people's comfort. Fumigation physiotherapy uses the principles of traditional Chinese medicine and can effectively treat various chronic diseases and meridian diseases. However, fumigation physiotherapy generally needs to be carried out in a fixed place, and the person being treated cannot carry out other work during the treatment. Currently, physiotherapy clothing already has hot compress and fumigation physiotherapy methods, and the expected physiotherapy effect is achieved by binding a hot compress component and a fumigation component to the physiotherapy clothing.

[0003] However, when binding the hot compress component of current physiotherapy clothing, the staff manually sends the physiotherapy clothing below the binding component, and then places the hot compress component in the area to be bound. The staff then manipulates the binding component to connect the hot compress component with the physiotherapy clothing. Since the number of physiotherapy clothing to be bound is large, the manual binding workload of the staff is large. At the same time, after the staff binds for a period of time, the arms will feel fatigued, which also leads to a significant decrease in the subsequent binding efficiency. Therefore, a method for manufacturing clothing with hot compress and fumigation physiotherapy functions is provided. Summary of the Invention

[0004] The purpose of the present invention is to provide a method for manufacturing clothing with hot compress and fumigation physiotherapy functions to solve the problems of large workload and low binding efficiency caused by the operation method of the staff manually binding the hot compress component to the physiotherapy clothing.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A method for manufacturing clothing with hot compress and fumigation physiotherapy functions, including a production table. There are two production tables, and a fixing frame is fixed to the tops of the two production tables by bolts. A plurality of support seats are fixed to the tops of the production tables by bolts. A clothing main body is arranged between the two production tables, and a hot compress component is placed on the top of the clothing main body. Step 1: Feeding. The output end of the first motor rotates to drive the rotating rod to rotate. The rotating rod rotates to drive the rotating shaft to rotate. The rotating shaft rotates to drive the conveyor belt to rotate. The conveyor belt rotates to drive the placement box to move towards one end close to the fixing frame. The movement of the placement box drives the clothing main body and the hot compress component to move. Through this structure, it is beneficial to automatically feed the clothing main body and the hot compress component.

[0006] Step 2. Limiting: As the placement box moves, it drives the extrusion rod to move. The inverted trapezoidal through groove on one side of the production table extrudes the extrusion rod, thereby driving the extrusion rod to move downward. The movement of the extrusion rod drives the extrusion plate to move downward. The extrusion plate moves and squeezes one side of the top of the hot compress component. At the same time, the movement of the extrusion rod drives the moving block to move downward. At this time, the spring is squeezed by force. This structure is beneficial to the operation of clamping and limiting the main body of the clothes and the hot compress component during transportation, avoiding the situation of position deviation of the main body of the clothes and the hot compress component during binding, and improving the accuracy during binding.

[0007] Step 3. Binding: The output end of the electric telescopic rod moves downward and drives the binding component to move downward through mechanical transmission. Then, the output end of the second motor rotates and drives the binding component to move laterally through mechanical transmission. The binding component moves and performs a lateral binding operation on the main body of the clothes and the hot compress component. The output end of the third motor rotates and drives the binding component to move endwise through mechanical transmission, thereby performing an endwise binding operation on the main body of the clothes and the hot compress component. This structure is beneficial to the automatic binding operation of the main body of the clothes and the hot compress component. Compared with the traditional manual binding, it reduces the workload of the staff, improves the efficiency of binding the main body of the clothes and the hot compress component, and further improves the accuracy of binding the main body of the clothes and the hot compress component.

[0008] There is also a Step 4, and the Step 4 includes a binding mechanism.

[0009] As a further solution of the present invention: The binding mechanism includes a first motor fixed to one end of the production table by bolts. The output end of the first motor is connected to a rotating rod through a coupling. One end of the rotating rod is connected to a rotating shaft through a coupling. The outer wall of the rotating shaft is engaged with a conveyor belt. The top of the conveyor belt is provided with a placement box. The top of the placement box is provided with a placement groove. The main body of the clothes is located inside the placement groove at the top of the placement box. Two fixed boxes are fixed to the top of the placement box by bolts. An extrusion rod is sleeved inside the fixed box. One side of the extrusion rod penetrates into the inside of the production table. The other side of the extrusion rod is fixed to an extrusion plate by welding. A moving block is fixed to the outer wall of the extrusion rod by welding. A spring fixedly connected to the inner wall of the fixed box is provided at the bottom of the moving block.

[0010] As a further solution of the present invention: The binding mechanism further includes a fixing frame fixed to the top end of the fixed frame by bolts. One side of the fixing frame is fixed with an electric telescopic rod by bolts. The output end of the electric telescopic rod penetrates to the lower part of the fixing frame. The output end of the electric telescopic rod is provided with a moving plate. One side of the moving plate is fixed with a second motor by bolts. The output end of the second motor is connected with a first threaded rod through a coupling. One side of the first threaded rod penetrates into the interior of the moving plate. The outer wall of the first threaded rod is threadedly connected with a sliding block. The bottom end of the sliding block is fixed with a cross bar by bolts. One end of the cross bar is fixed with a third motor by bolts. The output end of the third motor is connected with a second threaded rod through a coupling. One end of the second threaded rod penetrates into the interior of the cross bar. The outer wall of the second threaded rod is threadedly connected with a binding component, and the binding component penetrates to the outside of the cross bar.

[0011] As a further solution of the present invention: The rotating shaft is rotatably connected to the inner wall of the production table through a bearing, and the rotating rod is rotatably connected to the inner wall of the production table through a bearing.

[0012] As a further solution of the present invention: Two moving blocks are arranged on the outer wall of the fixed box. The two moving blocks are symmetrically distributed at both ends of the extrusion rod. A sliding groove matching the moving track of the moving block is arranged inside the fixed box.

[0013] As a further solution of the present invention: The extrusion rod is cylindrical, and a moving groove matching the moving track of the extrusion rod is arranged inside the fixed box.

[0014] As a further solution of the present invention: An inverted trapezoidal through groove sleeving the extrusion rod is arranged on the side of the two production tables close to each other.

[0015] As a further solution of the present invention: A moving through hole matching the moving track of the output end of the electric telescopic rod is arranged inside the fixed frame. The first threaded rod is rotatably connected to the inner wall of the moving plate through a bearing. A first limiting groove matching the moving track of the sliding block is arranged at the bottom end of the moving plate.

[0016] As a further solution of the present invention: The second threaded rod is rotatably connected to the inner wall of the cross bar through a bearing. A second limiting groove matching the moving track of the binding component is arranged on one side of the cross bar.

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] In the present invention, by providing a binding mechanism, the rotation of the output end of the first motor drives the movement of the main body of the clothes and the hot compress component through mechanical transmission. The extrusion plate moves and squeezes one side of the top of the hot compress component. The rotation of the output ends of the second motor and the third motor drives the binding component to move in a plane through mechanical transmission, thereby performing a binding operation on the main body of the clothes and the hot compress component. This structure facilitates the automatic binding operation of the main body of the clothes and the hot compress component. Compared with traditional manual binding, it reduces the workload of the staff, improves the efficiency of binding the main body of the clothes and the hot compress component, and further improves the accuracy of binding the main body of the clothes and the hot compress component. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a schematic structural diagram of the present invention;

[0020] Figure 2 of the present invention Figure 1 is an enlarged structural diagram of part A in;

[0021] Figure 3 is a schematic structural diagram of the internal part of the production table of the present invention;

[0022] Figure 4 of the present invention Figure 3 is an enlarged structural diagram of part B in;

[0023] Figure 5 is a schematic structural diagram of the internal part of the fixed box of the present invention;

[0024] Figure 6 of the present invention Figure 5 is an enlarged structural diagram of part C in;

[0025] Figure 7 is a schematic structural diagram of the internal parts of the fixing frame, the moving plate and the cross bar of the present invention.

[0026] In the figure: 1, production table; 2, fixing frame; 3, support seat; 4, binding mechanism; 401, first motor; 402, rotating rod; 403, rotating shaft; 404, conveyor belt; 405, placing box; 406, fixed box; 407, extrusion rod; 408, extrusion plate; 409, moving block; 410, spring; 411, electric telescopic rod; 412, moving plate; 413, second motor; 414, first threaded rod; 415, sliding block; 416, cross bar; 417, third motor; 418, second threaded rod; 419, binding component; 5, main body of clothes; 6, hot compress component. DETAILED DESCRIPTION OF THE INVENTION

[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0028] Please refer to Figures 1 to 7 , in the embodiment of the present invention, a manufacturing method of clothing with hot compress and fumigation physiotherapy functions includes a manufacturing table 1. There are two manufacturing tables 1. A fixing frame 2 is fixed to the top ends of the two manufacturing tables 1 by bolts. A plurality of supporting seats 3 are fixed to the top ends of the manufacturing tables 1 by bolts. A clothing body 5 is arranged between the two manufacturing tables 1. A hot compress component 6 is placed on the top end of the clothing body 5. Step 1, feeding: The output end of the first motor 401 rotates to drive the rotating rod 402 to rotate. The rotating rod 402 rotates to drive the rotating shaft 403 to rotate. The rotating shaft 403 rotates to drive the conveyor belt 404 to rotate. The conveyor belt 404 rotates to drive the placement box 405 to move towards one end close to the fixing frame 2. The movement of the placement box 405 drives the clothing body 5 and the hot compress component 6 to move. Through this structure, it is beneficial to perform the automatic feeding operation on the clothing body 5 and the hot compress component 6.

[0029] Step 2, limiting: The movement of the placement box 405 drives the extrusion rod 407 to move at the same time. The inverted trapezoidal through groove on one side of the manufacturing table 1 extrudes the extrusion rod 407, thereby driving the extrusion rod 407 to move downward. The movement of the extrusion rod 407 drives the extrusion plate 408 to move downward. The extrusion plate 408 moves and extrudes one side of the top end of the hot compress component 6. The movement of the extrusion rod 407 drives the moving block 409 to move downward at the same time. At this time, the spring 410 is squeezed under force. Through this structure, it is beneficial to perform the clamping and limiting operation on the clothing body 5 and the hot compress component 6 during transportation, avoiding the situation of position deviation of the clothing body 5 and the hot compress component 6 during binding, and improving the accuracy during binding.

[0030] Step 3, binding: The output end of the electric telescopic rod 411 moves downward and drives the binding component 419 to move downward through mechanical transmission. Then, the output end of the second motor 413 rotates to drive the binding component 419 to move laterally through mechanical transmission. The binding component 419 moves to perform the lateral binding operation on the clothing body 5 and the hot compress component 6. The output end of the third motor 417 rotates to drive the binding component 419 to move endwise through mechanical transmission, thereby performing the endwise binding operation on the clothing body 5 and the hot compress component 6. Through this structure, it is beneficial to perform the automatic binding operation on the clothing body 5 and the hot compress component 6. Compared with the traditional manual binding, it reduces the workload of the staff, improves the efficiency of binding the clothing body 5 and the hot compress component 6, and further improves the accuracy of binding the clothing body 5 and the hot compress component 6.

[0031] It further includes Step 4, and Step 4 includes a binding mechanism 4.

[0032] In this embodiment: By providing the binding mechanism 4, it is beneficial to automatically bind the clothing body 5 and the hot compress component 6. Compared with the traditional manual binding, the workload of the staff is reduced, and at the same time, the efficiency of binding the clothing body 5 and the hot compress component 6 is improved, and furthermore, the accuracy of binding the clothing body 5 and the hot compress component 6 is also improved.

[0033] Please refer specifically to Figures 1 to 7, the binding mechanism 4 includes a first motor 401 fixed to one end of the production table 1 by bolts. The output end of the first motor 401 is connected to a rotating rod 402 through a coupling. One end of the rotating rod 402 is connected to a rotating shaft 403 through a coupling. The outer wall of the rotating shaft 403 is engaged with a conveyor belt 404. The top of the conveyor belt 404 is provided with a placement box 405. The top of the placement box 405 is provided with a placement groove. The main body of the clothes 5 is located inside the placement groove at the top of the placement box 405. Two fixing boxes 406 are fixed to the top of the placement box 405 by bolts. An extrusion rod 407 is sleeved inside the fixing box 406. One side of the extrusion rod 407 penetrates into the inside of the production table 1. The other side of the extrusion rod 407 is fixed with an extrusion plate 408 by welding. A moving block 409 is fixed to the outer wall of the extrusion rod 407 by welding. A spring 410 fixedly connected to the inner wall of the fixing box 406 is arranged at the bottom of the moving block 409; the binding mechanism 4 further includes a fixing frame fixed to the top of the fixing frame 2 by bolts. An electric telescopic rod 411 is fixed to one side of the fixing frame by bolts. The output end of the electric telescopic rod 411 penetrates below the fixing frame 2. A moving plate 412 is arranged at the output end of the electric telescopic rod 411. A second motor 413 is fixed to one side of the moving plate 412 by bolts. The output end of the second motor 413 is connected to a first threaded rod 414 through a coupling. One side of the first threaded rod 414 penetrates into the inside of the moving plate 412. A sliding block 415 is threadedly connected to the outer wall of the first threaded rod 414. A cross bar 416 is fixed to the bottom of the sliding block 415 by bolts. A third motor 417 is fixed to one end of the cross bar 416 by bolts. The output end of the third motor 417 is connected to a second threaded rod 418 through a coupling. One end of the second threaded rod 418 penetrates into the inside of the cross bar 416. A binding assembly 419 is threadedly connected to the outer wall of the second threaded rod 418. The binding assembly 419 penetrates outside the cross bar 416; the rotating shaft 403 is rotationally connected to the inner wall of the production table 1 through a bearing, and the rotating rod 402 is rotationally connected to the inner wall of the production table 1 through a bearing; two moving blocks 409 are arranged on the outer wall of the fixing box 406. The two moving blocks 409 are symmetrically distributed at both ends of the extrusion rod 407. A sliding groove matching the moving track of the moving block 409 is arranged inside the fixing box 406; the extrusion rod 407 is cylindrical, and a moving groove matching the moving track of the extrusion rod 407 is arranged inside the fixing box 406; an inverted trapezoidal through groove sleeving the extrusion rod 407 is arranged on one side where the two production tables 1 are close to each other; a moving through hole matching the moving track of the output end of the electric telescopic rod 411 is arranged inside the fixing frame 2. The first threaded rod 414 is rotationally connected to the inner wall of the moving plate 412 through a bearing. A first limiting groove matching the moving track of the sliding block 415 is arranged at the bottom of the moving plate 412; the second threaded rod 418 is rotationally connected to the inner wall of the cross bar 416 through a bearing. A second limiting groove matching the moving track of the binding assembly 419 is arranged on one side of the cross bar 416.

[0034] In this embodiment: The output end of the first motor 401 rotates to drive the movement of the placement box 405 through mechanical transmission. The movement of the placement box 405 drives the movement of the clothes body 5 and the hot compress component 6. At the same time as the placement box 405 moves, it drives the movement of the extrusion rod 407. The inverted trapezoidal through groove on one side of the production table 1 extrudes the extrusion rod 407. The downward movement of the extrusion rod 407 drives the downward movement of the extrusion plate 408 through mechanical transmission. The extrusion plate 408 moves and extrudes one side of the top of the hot compress component 6. The output end of the electric telescopic rod 411 moves downward and drives the downward movement of the binding component 419 through mechanical transmission. Then, the output end of the second motor 413 rotates to drive the lateral movement of the binding component 419 through mechanical transmission. The binding component 419 moves and performs a lateral binding operation on the clothes body 5 and the hot compress component 6. The output end of the third motor 417 rotates and drives the endwise movement of the binding component 419 through mechanical transmission, thereby performing an endwise binding operation on the clothes body 5 and the hot compress component 6. Through this structure, it is beneficial to perform an automatic binding operation on the clothes body 5 and the hot compress component 6. Compared with the traditional manual binding, the workload of the staff is reduced, and at the same time, the efficiency of binding the clothes body 5 and the hot compress component 6 is improved, and furthermore, the accuracy of binding the clothes body 5 and the hot compress component 6 is also improved.

[0035] Working principle: When it is necessary to bind the hot compress component 6 to the main body of the clothes 5, first place the main body of the clothes 5 in the groove at the top of the placement box 405. Then place the hot compress component 6 in the center at the top of the main body of the clothes 5. Then control the first motor 401 to work. The rotation of the output end of the first motor 401 drives the rotation of the rotating rod 402. The rotation of the rotating rod 402 drives the rotation of the rotating shaft 403. The rotation of the rotating shaft 403 drives the rotation of the conveyor belt 404. The rotation of the conveyor belt 404 drives the placement box 405 to move towards the end close to the fixed frame 2. The movement of the placement box 405 drives the main body of the clothes 5 and the hot compress component 6 to move. This structure is beneficial for the automatic feeding operation of the main body of the clothes 5 and the hot compress component 6. The movement of the placement box 405 also drives the extrusion rod 407 to move. The inverted trapezoidal through groove on one side of the workbench 1 extrudes the extrusion rod 407, thereby driving the extrusion rod 407 to move downward. The movement of the extrusion rod 407 drives the extrusion plate 408 to move downward. The movement of the extrusion plate 408 extrudes one side of the top of the hot compress component 6. The movement of the extrusion rod 407 also drives the moving block 409 to move downward. At this time, the spring 410 is squeezed under force. This structure is beneficial for the clamping and limiting operation of the main body of the clothes 5 and the hot compress component 6 during transportation, avoiding the situation of position deviation of the main body of the clothes 5 and the hot compress component 6 during binding, and improving the accuracy during binding. When the main body of the clothes 5 and the hot compress component 6 move to directly below the fixed frame 2, the first motor 401 can stop working. At this time, control the electric telescopic rod 411 to work. The output end of the electric telescopic rod 411 moves downward and drives the moving plate 412 to move. The movement of the moving plate 412 drives the first threaded rod 414 to move. The movement of the first threaded rod 414 drives the sliding block 415 to move. The movement of the sliding block 415 drives the cross bar 416 to move. The movement of the cross bar 416 drives the binding component 419 to move. When the binding component 419 moves to the top of the hot compress component 6, the binding component 419 works and the output end of the electric telescopic rod 411 stops working. Then control the second motor 413 to work. The rotation of the output end of the second motor 413 drives the first threaded rod 414 to rotate. The rotation of the first threaded rod 414 drives the sliding block 415 to move laterally. The movement of the sliding block 415 drives the cross bar 416 to move. The movement of the cross bar 416 drives the binding component 419 to move. The binding component 419 moves and performs a lateral binding operation on the main body of the clothes 5 and the hot compress component 6. After the lateral binding is completed, the second motor 413 stops working. Then control the third motor 417 to work. The rotation of the output end of the third motor 417 drives the second threaded rod 418 to rotate. The rotation of the second threaded rod 418 drives the binding component 419 to move endwise. The binding component 419 moves and performs an endwise binding operation on the main body of the clothes 5 and the hot compress component 6. After the binding is completed, the output end of the electric telescopic rod 411 moves back and drives the binding component 419 to move back through mechanical transmission. Then control the first motor 401 to work. The rotation of the output end of the first motor 401 drives the placement box 405 to move towards one end of the workbench 1 through mechanical transmission.When the rod 407 to be extruded moves to one end of the inverted trapezoidal through groove, the spring 410 returns to its original state. The spring 410 returns to its original state and drives the extrusion rod 407 to move in the reset direction. The reset movement of the extrusion rod 407 drives the extrusion plate 408 to move upward. Then, the staff can operate to remove the clothes body 5 and the hot compress component 6 in the released clamping state. Then, the output end of the first motor 401 rotates in the reverse direction and drives the placement box 405 to move in the reset direction through mechanical transmission. This structure is beneficial to the automatic binding operation of the clothes body 5 and the hot compress component 6. Compared with the traditional manual binding, it reduces the workload of the staff, improves the efficiency of binding the clothes body 5 and the hot compress component 6, and further improves the accuracy of binding the clothes body 5 and the hot compress component 6.

[0036] The above-mentioned is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and the practical concept of the present invention, makes equivalent replacements or changes, and should be covered by the protection scope of the present invention.

Claims

1. Manufacturing device for clothing with hot compress and fumigation physiotherapy functions, comprising a manufacturing table (1) and a binding mechanism (4). There are two manufacturing tables (1), and a fixing frame (2) is fixed to the tops of the two manufacturing tables (1) by bolts. A plurality of supporting seats (3) are fixed to the tops of the manufacturing tables (1) by bolts. A clothing main body (5) is arranged between the two manufacturing tables (1), and a hot compress assembly (6) is placed on the top of the clothing main body (5). It is characterized in that, The binding mechanism (4) includes a first motor (401) fixed to one end of the production table (1) by bolts. The output end of the first motor (401) is connected to a rotating rod (402) through a coupling. One end of the rotating rod (402) is connected to a rotating shaft (403) through a coupling. The outer wall of the rotating shaft (403) meshes with a conveyor belt (404). The top of the conveyor belt (404) is provided with a placement box (405). The top of the placement box (405) is provided with a placement groove. The main body of the clothes (5) is located inside the placement groove at the top of the placement box (405). Two fixing boxes (406) are fixed to the top of the placement box (405) by bolts. An extrusion rod (407) is sleeved inside the fixing box (406). One side of the extrusion rod (407) penetrates into the inside of the production table (1). The other side of the extrusion rod (407) is fixed with an extrusion plate (408) by welding. A moving block (409) is fixed to the outer wall of the extrusion rod (407) by welding. A spring (410) fixedly connected to the inner wall of the fixing box (406) is arranged at the bottom of the moving block (409). Two moving blocks (409) are arranged on the outer wall of the fixing box (406). The two moving blocks (409) are symmetrically distributed at both ends of the extrusion rod (407). A sliding groove matching the moving track of the moving block (409) is arranged inside the fixing box (406). An inverted trapezoidal through groove sleeving the extrusion rod (407) is arranged on one side where the two production tables (1) are close to each other.

2. The manufacturing device of the clothing with hot compress and fumigation physiotherapy functions according to claim 1, characterized in that, The binding mechanism (4) further includes a fixing frame fixed to the top of the fixing frame (2) by bolts. An electric telescopic rod (411) is fixed to one side of the fixing frame by bolts. The output end of the electric telescopic rod (411) penetrates below the fixing frame (2). A moving plate (412) is arranged at the output end of the electric telescopic rod (411). A second motor (413) is fixed to one side of the moving plate (412) by bolts. The output end of the second motor (413) is connected to a first threaded rod (414) through a coupling. One side of the first threaded rod (414) penetrates into the inside of the moving plate (412). A sliding block (415) is threadedly connected to the outer wall of the first threaded rod (414). A cross bar (416) is fixed to the bottom of the sliding block (415) by bolts. A third motor (417) is fixed to one end of the cross bar (416) by bolts. The output end of the third motor (417) is connected to a second threaded rod (418) through a coupling. One end of the second threaded rod (418) penetrates into the inside of the cross bar (416). A binding component (419) is threadedly connected to the outer wall of the second threaded rod (418). The binding component (419) penetrates outside the cross bar (416).

3. The manufacturing device of the clothing with hot compress and steam physiotherapy functions according to claim 1, characterized in that, The rotating shaft (403) is rotatably connected to the inner wall of the production table (1) through a bearing. The rotating rod (402) is rotatably connected to the inner wall of the production table (1) through a bearing.

4. The manufacturing device of the clothing with hot compress and fumigation physiotherapy functions according to claim 1, characterized in that, The extrusion rod (407) is cylindrical, and a moving groove matching the moving track of the extrusion rod (407) is arranged inside the fixed box (406).

5. The manufacturing device of the clothing with hot compress and fumigation physiotherapy functions according to claim 2, characterized in that, A moving through hole matching the moving track of the output end of the electric telescopic rod (411) is arranged inside the fixed frame (2), and the first threaded rod (414) is rotationally connected to the inner wall of the moving plate (412) through a bearing. A first limiting groove matching the moving track of the sliding block (415) is arranged at the bottom end of the moving plate (412).

6. The manufacturing device of the clothing with hot compress and fumigation physiotherapy functions according to claim 2, characterized in that, The second threaded rod (418) is rotationally connected to the inner wall of the cross bar (416) through a bearing. A second limiting groove matching the moving track of the binding assembly (419) is arranged on one side of the cross bar (416).

Citation Information

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