Textile worktable for costume design

By designing a textile workbench with a waste collection system and intelligent control, the problem of waste accumulation on the workbench was solved, enabling automatic cleaning and wiping, and improving production efficiency and environmental cleanliness.

CN119405146BActive Publication Date: 2025-10-24SUZHOU UNIV
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Patent Information

Application Number
CN202411556813.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-10-24
Estimated Expiration
2044-11-04

AI Technical Summary

Technical Problem

Existing textile workbenches used in garment design often have residual powder, thread ends, textile fragments, and other waste materials on their surfaces after use, which affects production quality and efficiency. Cleaning is also time-consuming and labor-intensive, and can easily lead to a dirty and messy working environment.

Method used

A textile operating table was designed, comprising a textile operating table body, a waste collection system, an intelligent controller, and various other mechanisms. Through a recessed displacement mechanism, a pressure control mechanism, and a stabilizing structure, the tabletop can be automatically lowered and waste can be collected in a concentrated manner. Combined with a toggle mechanism and a calibration mechanism, automatic cleaning and wiping can be achieved.

Benefits of technology

It enables automatic collection and cleaning of waste materials, reducing the time and labor required for manual cleaning, improving production efficiency and the cleanliness of the working environment, and ensuring the quality of clothing.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a textile operation table for clothing design, which comprises a textile operation table body, wherein the textile operation table body comprises a textile operation table surface, the top end of the textile operation table surface is open, a waste collecting hopper is fixedly and communicatively connected to the bottom surface of the textile operation table surface, and the bottom end of the waste collecting hopper is fixedly and communicatively connected with a waste collecting pipe; a downward pulling force can be applied to the stable structure through the pressure control mechanism, the pulling force triggers the stable structure on one hand, so that the stable structure removes the restriction on the bearing table top, and on the other hand, the pulling force applies a downward pulling force to the concave displacement mechanism, drives the bearing table top to move downward, so that the top surface of the bearing table top is lower than the top surface of the textile operation table surface, and it is ensured that no waste falls to the ground during the process of cleaning and wiping the top surface of the bearing table top; the textile operation table body can be used for collecting waste in a concentrated manner, so that no waste scatters on the ground, the working environment is improved, and the practicability of the textile operation table for clothing design is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of clothing, more particularly, to a textile operation table for clothing design. BACKGROUND

[0002] Clothing is a kind of clothes made by textile design, material selection, line drawing, cutting, sewing and other processes. It is a necessity in people's life and plays a role in covering and decorating. There are many processes in the whole production process of clothing that need to be completed on the textile operation table for clothing design, such as line drawing, re-trimming of cut cloth, repairing, etc.

[0003] The existing textile operation table for clothing design will have a lot of powder, thread ends, textile blocks and other waste materials left on the table after use. The accumulation of these waste materials on the table will have a bad impact on the related processes in the clothing design and production, reducing the quality of the clothing. Moreover, it is time-consuming and laborious to clean and wipe the waste materials on the table manually, which reduces the production efficiency. At the same time, the waste materials on the table are easy to fall to the ground during manual cleaning, resulting in a dirty and messy working environment. Therefore, there is an urgent need to design a textile operation table for clothing design. SUMMARY

[0004] 1. Technical problem to be solved

[0005] In view of the problem in the prior art that the existing textile operation table for clothing design will have a lot of powder, thread ends, textile blocks and other waste materials left on the table after use, which will have a bad impact on the related processes in the clothing design and production, reducing the quality of the clothing, and it is time-consuming and laborious to clean and wipe the waste materials on the table manually, which reduces the production efficiency, and at the same time, the waste materials on the table are easy to fall to the ground during manual cleaning, resulting in a dirty and messy working environment, the purpose of the present application is to provide a textile operation table for clothing design, which can well solve the problems raised in the background art.

[0006] 2. Technical solution

[0007] To solve the above problems, the present application adopts the following technical solution.

[0008] The utility model provides a kind of textile operation platform for costume design, including textile operation platform main body, the textile operation platform main body includes textile operation platform face, the top of textile operation platform face is open, and the bottom of textile operation platform face is fixedly connected with waste collecting hopper, the bottom of waste collecting hopper is fixedly connected with waste collecting pipe, the bottom of waste collecting hopper is fixedly connected with high supporting leg, waste collecting tank is equipped below waste collecting pipe, intelligent controller is installed in the inside of textile operation platform face, recess displacement mechanism is equipped in the inside of textile operation platform face, the recess displacement mechanism includes force bearing positioning plate, the front and rear ends of force bearing positioning plate are fixedly connected on the inner wall of textile operation platform face, and intelligent controller is installed on the top of force bearing positioning plate, and the top of force bearing positioning plate is equipped with pressure control mechanism, the pressure control mechanism includes pressure control box, and pressure control box is fixedly installed on the top of force bearing positioning plate, and the top of force bearing positioning plate is equipped with stable structure, the stable structure includes force bearing guide wheel, and force bearing guide wheel is fixedly installed on the top of force bearing positioning plate, and the bottom of force bearing positioning plate is equipped with force storage mechanism, the force storage mechanism includes servo drive motor, and servo drive motor is fixedly installed on the bottom of force bearing positioning plate, and the inside of textile operation platform face is equipped with dialing mechanism, the dialing mechanism includes dialing sliding slot, the number of dialing sliding slot is two, and the front and rear of textile operation platform inner cavity are respectively equipped with two dialing sliding slots, and the left and right ends of force bearing positioning plate are equipped with calibration mechanism, the calibration mechanism includes lower calibration sliding hole, and lower calibration sliding hole is opened on the end face of force bearing positioning plate.

[0009] Preferably, the recess displacement mechanism further includes a guide telescopic rod, the bottom end of the guide telescopic rod is fixedly connected to the top surface of the force bearing positioning plate, the top end of the guide telescopic rod is fixedly connected with a bearing flat plate, a bearing spring is movably sleeved outside the guide telescopic rod, the top surface of the force bearing positioning plate is in transmission connection with the bearing flat plate through the bearing spring, a bearing tabletop is installed on the top surface of the bearing flat plate, the bottom surface of the bearing tabletop is in sliding connection with the top surface of the bearing flat plate, the top surface of the bearing tabletop is flush with the top surface of the textile operation platform, the front and rear surfaces of the bearing tabletop are respectively in sliding connection with the front and rear surfaces of the textile operation platform inner cavity, a T-shaped sliding slot is opened on the bottom surface of the bearing tabletop, a T-shaped sliding bar is slidably inserted into the T-shaped sliding slot, the bottom end of the T-shaped sliding bar passes through the bottom of the T-shaped sliding slot and is fixedly connected to the top surface of the bearing flat plate, a rolling steel ball is movably embedded on the top surface of the T-shaped sliding bar, and the rolling steel ball is in contact connection with the top surface of the T-shaped sliding slot inner cavity.

[0010] Preferably, the pressure control mechanism further comprises a rotating vertical shaft, the bottom end of the rotating vertical shaft is movably sleeved on the bottom surface of the inner cavity of the pressure control box, the top end of the rotating vertical shaft is movably sleeved on the top surface of the inner cavity of the pressure control box, the outside of the rotating vertical shaft is fixedly sleeved with an amplification gear and a drive gear, the pressure control mechanism further comprises a transmission short shaft, the bottom end of the transmission short shaft is movably sleeved on the bottom surface of the inner cavity of the pressure control box, the top end of the transmission short shaft is fixedly connected with a winding reel, the top surface of the winding reel is fixedly connected with a transmission gear located at the middle part, the transmission gear is engaged with the amplification gear, a through hole is formed on the surface of the pressure control box, a sliding square bar is movably inserted into the through hole, one end of the sliding square bar extends to the outside of the textile operation table top, the sliding square bar is movably inserted into the textile operation table top, the other end of the sliding square bar extends to the inside of the pressure control box, a sliding hole cavity is formed on the right side surface of the sliding square bar, a guide slide rod is slidably inserted into the sliding hole cavity, the right end of the guide slide rod is fixedly connected to the inner wall of the pressure control box, a return spring is movably sleeved on the outside of the guide slide rod, the sliding square bar is in transmission connection with the inner wall of the pressure control box through the return spring, a drive rack is fixedly connected to the side surface of the sliding square bar, the drive rack is engaged with the drive gear.

[0011] Preferably, the stable structure further comprises a stable cylinder, the number of the stable cylinder is two, the two stable cylinders are fixedly installed on the bottom surface of the bearing flat plate, the two stable cylinders are respectively located at the front and rear ends of the bearing flat plate, a stable piston is in transmission connection with the inner wall of the stable cylinder through a stable spring, the stable piston is slidably inserted into the inside of the stable cylinder, a stable bolt is fixedly connected to the other surface of the stable piston, the other end of the stable bolt extends to the outside of the stable cylinder, the stable structure further comprises a bearing recess, the number of the bearing recess is two, the two bearing recesses are respectively formed on the front and rear surfaces of the inner cavity of the textile operation table top, the end of the stable bolt is movably inserted into the inside of the bearing recess, a stable lead wire is connected between the two stable cylinders, the stable lead wire is movably inserted into the stable cylinder, the end of the stable lead wire extends to the inside of the stable cylinder and is fixedly connected to the surface of the stable piston, a stable ring is movably sleeved on the outside of the stable lead wire between the two stable cylinders, a stable pull wire is movably inserted into the inside of the stable ring, the right end of the stable pull wire is fixedly connected to the top surface of the bearing positioning plate, the other end of the stable pull wire extends to the inside of the pressure control box and is wound on the outside of the winding reel.

[0012] Preferably, the force storage mechanism further comprises a torsion sensor mounted on the output shaft of the servo drive motor, and the other end of the torsion sensor is mounted with a force storage cross shaft, and the outside of the force storage cross shaft is sleeved with a force storage gear, and the force storage mechanism further comprises two force storage long rods, which are respectively located on the left and right sides of the force storage gear, and the front and rear ends of the force storage long rods are movably sleeved on the front and rear surfaces of the textile operation table inner cavity and below the force bearing positioning plate, and the outside of the force storage long rods is movably sleeved with a movable gear, which can rotate on the outside of the force storage long rods and cannot move along the axial direction of the force storage long rods, and the inside of the movable gear is provided with a fixed disc cavity, and the inside of the fixed disc cavity is provided with an energy storage spring, which is movably sleeved on the outside of the force storage long rods, and one end of the energy storage spring is fixedly connected to the surface of the force storage long rods, and the other end of the energy storage spring is fixedly connected to the inner wall of the fixed disc cavity, and the outside of the force storage long rods is fixedly sleeved with two traction line wheels, which are respectively located on the front and rear sides of the movable gear, and the outside of the traction line wheels is wound with a force storage pull wire.

[0013] Preferably, the dial mechanism further comprises a dial slide plate, and the dial slide plate is slidably inserted into the inside of the dial sliding groove, and the other end of the dial slide plate is fixedly connected with a dial sliding plate, and the dial sliding plate is slidably connected with the inner wall of the textile operation table surface, and the bottom surface of the dial sliding plate is fixedly installed with a dial bar brush, and the dial mechanism further comprises two press switches, which are respectively fixedly installed on the left and right sides of the same dial sliding groove inner cavity, and the press switches are matched with the dial slide plate, and the dial mechanism further comprises wire holes, and four wire holes are respectively formed on the left and right side surfaces of the textile operation table surface, and wire shafts are fixedly inserted into the inner walls of the wire holes, and the outside of the wire shafts is movably sleeved with a first wire wheel and a second wire wheel, and the end of the force storage pull wire on the left side of the force storage cross shaft is wound around the corresponding second wire wheel and is fixedly connected to the left end surface of the dial slide plate, and the end of the force storage pull wire on the right side of the force storage cross shaft is wound around the corresponding second wire wheel and is fixedly connected to the right end surface of the dial slide plate, and the dial mechanism further comprises four material guiding inclined plates, two of which are located on the left end of the textile operation table surface, and the left ends of the two material guiding inclined plates are fixedly connected to the left side surface of the textile operation table inner cavity, and the other two material guiding inclined plates are located on the right end of the textile operation table surface, and the right ends of the two material guiding inclined plates are fixedly connected to the right side surface of the textile operation table inner cavity, and the top ends of the two material guiding inclined plates are fixedly connected to the back of the textile operation table inner cavity, and the top ends of the other two material guiding inclined plates are fixedly connected to the front of the textile operation table inner cavity.

[0014] Preferably, the calibration mechanism further comprises a calibration slide column, the calibration slide column is slidingly inserted into the lower calibration slide hole, the bottom end of the calibration slide column is fixedly connected with a lower disc box, the top surface of the lower disc box is slidingly connected with the bottom surface of the force positioning plate, a power vertical shaft is movably sleeved on the bottom surface of the inner cavity of the lower disc box, a power line wheel is fixedly sleeved on the outer portion of the power vertical shaft, a calibration lead is wound on the outer portion of the power line wheel, the other end of the calibration lead extends to the outside of the lower disc box, passes through the first wire guide wheel and is fixedly connected to the end surface of the pulling slide, the top end of the calibration slide column is fixedly connected with an upper disc box, the top end of the power vertical shaft extends to the inside of the upper disc box through the calibration slide column and is movably sleeved on the top surface of the inner cavity of the upper disc box, a coiled spring is arranged in the inside of the upper disc box and movably sleeved on the outer portion of the power vertical shaft, one end of the coiled spring is fixedly connected to the surface of the power vertical shaft, the other end of the coiled spring is fixedly connected to the inner wall of the upper disc box, a linkage telescopic rod is fixedly connected to the top surface of the upper disc box, and the calibration mechanism further comprises an upper calibration slide hole, the upper calibration slide hole is arranged on the end surface of the bearing flat plate, and the top end of the linkage telescopic rod passes through the upper calibration slide hole and is fixedly connected to the bottom surface of the bearing desktop.

[0015] 3. Beneficial effects

[0016] Compared with the prior art, the application has the following advantages:

[0017] 1. The recess displacement mechanism can move the bearing desktop downward, the pressure control mechanism can enlarge the manual action, so that the staff can trigger the cleaning and wiping work with smaller action, the stable structure can limit the bearing desktop, so that the bearing desktop is fixed to facilitate the staff to perform the related process on the top surface of the bearing desktop, the pressure control mechanism can exert a downward pulling force on the stable structure, which triggers the stable structure and releases the limitation of the stable structure on the bearing desktop, and on the other hand, the downward pulling force is exerted on the recess displacement mechanism to drive the bearing desktop to move downward, so that the top surface of the bearing desktop is lower than the top surface of the textile operation table, ensuring that no waste falls to the ground during the process of cleaning and wiping the top surface of the bearing desktop, the textile operation table body can concentrate the waste collection, and no waste is scattered on the ground, which helps to improve the working environment and improve the practicality of the garment design textile operation table.

[0018] 2, the dial mechanism is released by moving downwardly bearing table top, the dial mechanism is pulled by force storage mechanism after being released, the dial mechanism can slide from the top surface of the bearing table top, the waste on the top surface of the bearing table top is cleaned and wiped, the operation is simple and convenient, time and labor are saved, the worker only needs to press the pressure control mechanism once to complete the work of cleaning and wiping the waste on the top surface of the bearing table top, the waste on the top surface of the bearing table top can be cleaned and wiped in time, the related process is not affected, the garment quality is improved, the production speed is increased, the relative positions between the bearing table top and the dial sliding plate are exchanged through the calibration mechanism, the waste on the top surface of the bearing table top is cleaned and wiped in two directions, the dial strip brush is not reset intentionally, time is saved, the production efficiency is higher, and the practicality of the textile operation table for garment design is improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a structural schematic diagram of the application;

[0020] Figure 2 It is a structural schematic diagram of the application Figure 1 It is a structural schematic diagram of the application

[0021] Figure 3 It is a structural schematic diagram of the application Figure 2 It is a structural schematic diagram of the application

[0022] Figure 4 It is a structural schematic diagram of the application Figure 3 It is a structural schematic diagram of the application

[0023] Figure 5 It is a structural schematic diagram of the application Figure 2 It is a structural schematic diagram of the application

[0024] Figure 6 It is a structural schematic diagram of the application Figure 5 It is a structural schematic diagram of the application

[0025] Figure 7 It is a structural schematic diagram of the application Figure 6 It is a structural schematic diagram of the application

[0026] Figure 8 It is a structural schematic diagram of the application Figure 2 It is a structural schematic diagram of the application

[0027] Figure 9 It is a structural schematic diagram of the application Figure 2 It is a structural schematic diagram of the application

[0028] Figure 10 It is a structural schematic diagram of the application Figure 2 It is a structural schematic diagram of the application

[0029] Figure 11 schematic diagram of the internal structure of the present application Figure 10 schematic diagram of the internal structure of the present application

[0030] Figure 12 schematic diagram of the internal structure of the present application Figure 11 schematic diagram of the internal structure of the present application

[0031] Figure 13 schematic diagram of the internal structure of the present application Figure 2 schematic diagram of the internal structure of the present application

[0032] Figure 14 schematic diagram of the internal structure of the present application Figure 13 schematic diagram of the internal structure of the present application

[0033] Explanation of the reference numerals in the drawings:

[0034] 1, textile operation table main body; 11, textile operation table top; 12, waste collection hopper; 13, waste collection pipe; 14, heightening support leg; 15, waste collection box; 16, intelligent controller; 2, recess displacement mechanism; 21, force bearing positioning plate; 22, guide telescopic rod; 23, bearing flat plate; 24, bearing spring; 25, bearing table top; 26, T-shaped sliding groove; 27, T-shaped sliding bar; 28, rolling steel ball; 3, pressure control mechanism; 301, pressure control box; 302, rotating vertical shaft; 303, amplification gear; 304, drive gear; 305, transmission short shaft; 306, winding wire wheel; 307, transmission gear; 308, through hole; 309, shifting square bar; 310, shifting cavity; 311, guide sliding rod; 312, reset spring; 313, drive rack; 4, stabilizing structure; 41, stabilizing cylinder; 42, stabilizing spring; 43, stabilizing piston; 44, stabilizing bolt; 45, socket recess; 46, stabilizing lead; 47, stabilizing ring; 48, stabilizing pull wire; 49, force bearing guide wheel; 5, force storage mechanism; 50, force storage pull wire; 51, servo drive motor; 52, torsion inductor; 53, force storage horizontal shaft; 54, force storage gear; 55, force storage long rod; 56, movable gear; 57, fixed disc cavity; 58, energy storage mainspring; 59, traction wire wheel; 6, actuating mechanism; 601, actuating sliding groove; 602, actuating sliding sheet; 603, actuating sliding plate; 604, actuating bar brush; 605, press switch; 606, lead hole; 607, lead shaft; 608, first lead wheel; 609, second lead wheel; 610, material guiding inclined plate; 7, calibration mechanism; 701, lower calibration sliding hole; 702, calibration sliding column; 703, lower disc box; 704, power vertical shaft; 705, power wire wheel; 706, calibration lead; 707, upper disc box; 708, winding mainspring; 709, linkage telescopic rod; 710, upper calibration sliding hole. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application; obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the protection scope of the present application.

[0036] A textile operation table for clothing design comprises a textile operation table body 1, please refer to Figures 1-2 , the textile operation table body 1 comprises a textile operation table surface 11, the top end of the textile operation table surface 11 is open, a waste collecting hopper 12 is fixedly communicated on the bottom surface of the textile operation table surface 11, the bottom end of the waste collecting hopper 12 is fixedly communicated with a waste collecting pipe 13, a supporting leg 14 is fixedly connected on the bottom surface of the waste collecting hopper 12, a waste collecting box 15 is arranged below the waste collecting pipe 13, an intelligent controller 16 is installed in the textile operation table surface 11, a recess displacement mechanism 2 is arranged in the textile operation table surface 11, the recess displacement mechanism 2 comprises a force bearing positioning plate 21, the front and rear ends of the force bearing positioning plate 21 are fixedly connected to the inner wall of the textile operation table surface 11, the intelligent controller 16 is installed on the top surface of the force bearing positioning plate 21, a pressure control mechanism 3 is arranged on the top surface of the force bearing positioning plate 21, please refer to Figures 5-6 , the pressure control mechanism 3 comprises a pressure control box 301, the pressure control box 301 is fixedly installed on the top surface of the force bearing positioning plate 21, a stable structure 4 is arranged on the top surface of the force bearing positioning plate 21, the stable structure 4 comprises a force bearing guide wheel 49, the force bearing guide wheel 49 is fixedly installed on the top surface of the force bearing positioning plate 21, a force storage mechanism 5 is arranged on the bottom surface of the force bearing positioning plate 21, please refer to Figures 10-11 , the force storage mechanism 5 comprises a servo drive motor 51, the servo drive motor 51 is fixedly installed on the bottom surface of the force bearing positioning plate 21, a dialing mechanism 6 is arranged in the textile operation table surface 11, please refer to Figures 3-4 , the dialing mechanism 6 comprises dialing sliding grooves 601, the number of the dialing sliding grooves 601 is two, the two dialing sliding grooves 601 are respectively arranged on the front and rear surfaces of the inner cavity of the textile operation table surface 11, a calibration mechanism 7 is arranged on the left and right ends of the force bearing positioning plate 21, please refer to Figures 13-14 , the calibration mechanism 7 comprises a lower calibration sliding hole 701, the lower calibration sliding hole 701 is arranged on the end surface of the force bearing positioning plate 21.

[0037] Please refer to Figure 2 and Figure 9The recess displacement mechanism 2 further comprises a guide telescopic rod 22, the bottom end of the guide telescopic rod 22 is fixedly connected to the top surface of the force-bearing positioning plate 21, the top end of the guide telescopic rod 22 is fixedly connected with a bearing flat plate 23, the outside of the guide telescopic rod 22 is movably sleeved with a bearing spring 24, the top surface of the force-bearing positioning plate 21 is drivingly connected with the bearing flat plate 23 through the bearing spring 24, the top surface of the bearing flat plate 23 is installed with a bearing tabletop 25, the bottom surface of the bearing tabletop 25 is slidingly connected with the top surface of the bearing flat plate 23, the top surface of the bearing tabletop 25 is flush with the top surface of the textile operation tabletop 11, the front and rear surfaces of the bearing tabletop 25 are respectively slidingly connected with the front and rear surfaces of the inner cavity of the textile operation tabletop 11, so that the bearing tabletop 25 can move downward, for reducing the position height of the bearing tabletop 25 inside the textile operation tabletop 11, to provide necessary conditions for cleaning and wiping work, the bottom surface of the bearing tabletop 25 is provided with a T-shaped sliding groove 26, a T-shaped sliding strip 27 is slidingly inserted into the T-shaped sliding groove 26, the bottom end of the T-shaped sliding strip 27 penetrates out of the bottom of the T-shaped sliding groove 26 and is fixedly connected to the top surface of the bearing flat plate 23, a rolling steel ball 28 is movably embedded on the top surface of the T-shaped sliding strip 27, the rolling steel ball 28 is in contact connection with the top surface of the inner cavity of the T-shaped sliding groove 26, so that the bearing tabletop 25 can move left and right on the top surface of the bearing flat plate 23, for changing the position of the bearing tabletop 25 in the transverse direction, to change the waste falling position, to reduce the cleaning and wiping stroke and to increase the cleaning and wiping speed.

[0038] Please refer to Figures 5-6The pressure control mechanism 3 further comprises a rotating vertical shaft 302, the bottom end of the rotating vertical shaft 302 is movably sleeved on the bottom surface of the inner cavity of the pressure control box 301, the top end of the rotating vertical shaft 302 is movably sleeved on the top surface of the inner cavity of the pressure control box 301, the outside of the rotating vertical shaft 302 is fixedly sleeved with a magnifying gear 303 and a driving gear 304, the pressure control mechanism 3 further comprises a transmission short shaft 305, the bottom end of the transmission short shaft 305 is movably sleeved on the bottom surface of the inner cavity of the pressure control box 301, the top end of the transmission short shaft 305 is fixedly connected with a winding wire wheel 306, the top surface of the winding wire wheel 306 is fixedly connected with a transmission gear 307 located at the middle part, the transmission gear 307 is engaged with the magnifying gear 303, a through hole 308 is formed on the surface of the pressure control box 301, a sliding square bar 309 is movably inserted into the inside of the through hole 308, one end of the sliding square bar 309 extends to the outside of the textile operation table top 11, the sliding square bar 309 is movably inserted into the textile operation table top 11, the other end of the sliding square bar 309 extends to the inside of the pressure control box 301, a sliding hole cavity 310 is formed on the right side surface of the sliding square bar 309, a guide sliding rod 311 is slidably inserted into the inside of the sliding hole cavity 310, the right end of the guide sliding rod 311 is fixedly connected to the inner wall of the pressure control box 301, a return spring 312 is movably sleeved on the outside of the guide sliding rod 311, the sliding square bar 309 is drivingly connected with the inner wall of the pressure control box 301 through the return spring 312, a driving rack 313 is fixedly connected to the side surface of the sliding square bar 309, the driving rack 313 is engaged with the driving gear 304, which plays a magnifying action, so that the staff can complete the cleaning and wiping work with smaller action amplitude, which is more time-saving and labor-saving.

[0039] Please refer to Figure 2 and Figure 8The stable structure 4 further comprises two stable cylinders 41 fixedly installed on the bottom surface of the bearing flat plate 23, and the two stable cylinders 41 are respectively located at the front and rear ends of the bearing flat plate 23. The inner wall of the stable cylinder 41 is drivingly connected with a stable piston 43 through a stable spring 42. The stable piston 43 is slidingly inserted into the interior of the stable cylinder 41. The other surface of the stable piston 43 is fixedly connected with a stable bolt 44, and the other end of the stable bolt 44 extends to the outside of the stable cylinder 41. The stable structure 4 further comprises two bearing recesses 45 respectively formed on the front and rear surfaces of the interior of the textile operation table top 11. The end of the stable bolt 44 is movably inserted into the interior of the bearing recess 45, so as to stably support the bearing table top 25, and the bearing table top 25 has stable bearing capacity, so that the process in the clothing design production can be smoothly performed on the bearing table top 25. The two stable cylinders 41 are connected with a stable lead wire 46 movably inserted into the stable cylinder 41. The end of the stable lead wire 46 extends to the interior of the stable cylinder 41 and is fixedly connected to the surface of the stable piston 43. The exterior of the stable lead wire 46 movably sleeves a stable ring 47 between the two stable cylinders 41. The interior of the stable ring 47 movably penetrates a stable pull wire 48. The right end of the stable pull wire 48 is fixedly connected to the top surface of the bearing positioning plate 21. The other end of the stable pull wire 48 passes through the bearing guide wheel 49 and extends to the interior of the pressure control box 301 and is wound on the exterior of the winding wire wheel 306, so as to apply a downward pulling force to the bearing table top 25, and the bearing table top 25 can be moved downward, thereby providing necessary conditions for cleaning and wiping work.

[0040] Please refer to Figures 10-12The power storage mechanism 5 further comprises a torsion sensor 52 installed on the output shaft of the servo drive motor 51, the other end of the torsion sensor 52 is installed with a power storage cross shaft 53, the outside of the power storage cross shaft 53 is sleeved with a power storage gear 54, the power storage mechanism 5 further comprises two power storage long rods 55, the two power storage long rods 55 are respectively located on the left and right sides of the power storage gear 54, the front and rear ends of the power storage long rods 55 are respectively movably sleeved on the front and rear surfaces of the inner cavity of the textile operation table top 11 and are located below the force bearing positioning plate 21, the outside of the power storage long rods 55 is movably sleeved with a movable gear 56, the movable gear 56 is engaged with the power storage gear 54, the movable gear 56 can rotate on the outside of the power storage long rods 55 and cannot move along the axial direction of the power storage long rods 55, the inside of the movable gear 56 is provided with a fixed disc cavity 57, the inside of the fixed disc cavity 57 is provided with an energy storage spring 58, the energy storage spring 58 is movably sleeved on the outside of the power storage long rods 55, one end of the energy storage spring 58 is fixedly connected to the surface of the power storage long rods 55, the other end of the energy storage spring 58 is fixedly connected to the inner wall of the fixed disc cavity 57, the outside of the power storage long rods 55 is fixedly sleeved with two traction line wheels 59, the two traction line wheels 59 are respectively located on the front and rear sides of the movable gear 56, the outside of the traction line wheels 59 is wound with a power storage pull wire 50, which is used to apply a pre-tension in two directions to the dialing mechanism 6, so that the dialing mechanism 6 can complete the cleaning and wiping work in two directions, reduce the stroke of the cleaning and wiping work, shorten the time consumption, and help to increase the production speed.

[0041] Please refer to Figures 2-4The dialing mechanism 6 further comprises a dialing slide 602 which is slidingly inserted into the interior of the dialing slide groove 601, and the other end of the dialing slide 602 is fixedly connected with a dialing slide plate 603 which is slidingly connected with the inner wall of the textile operation table top 11, and the bottom surface of the dialing slide plate 603 is fixedly installed with a dialing strip-shaped brush 604, and the dialing mechanism 6 further comprises two press switches 605 which are respectively fixedly installed on the left and right side surfaces of the inner cavity of the same dialing slide groove 601, and the press switches 605 are matched with the dialing slide 602, and the dialing mechanism 6 further comprises wire holes 606 which are provided on the left and right side surfaces of the textile operation table top 11, and the inner wall of the wire hole 606 is fixedly inserted with a wire shaft 607, and the outer portion of the wire shaft 607 is movably sleeved with a first wire wheel 608 and a second wire wheel 609, and the end portion of the left side force storage pull wire 50 of the force storage horizontal shaft 53 is wound around the corresponding second wire wheel 609 and is fixedly connected on the left end surface of the dialing slide 602, and the end portion of the right side force storage pull wire 50 of the force storage horizontal shaft 53 is wound around the corresponding second wire wheel 609 and is fixedly connected on the right end surface of the dialing slide 602, so as to complete the work of cleaning and wiping the waste on the top surface of the bearing table top 25, and the dialing mechanism 6 further comprises four material guiding inclined plates 610, two of which are located at the left end of the textile operation table top 11, and the left end of the two material guiding inclined plates 610 is fixedly connected on the left side surface of the inner cavity of the textile operation table top 11, and the other two are located at the right end of the textile operation table top 11, and the right end of the two material guiding inclined plates 610 is fixedly connected on the right side surface of the inner cavity of the textile operation table top 11, and the top end of the two material guiding inclined plates 610 is fixedly connected on the back of the inner cavity of the textile operation table top 11, and the top end of the other two material guiding inclined plates 610 is fixedly connected on the front of the inner cavity of the textile operation table top 11, so as to guide the waste and make the waste not to fall on the force storage pull wire 50 and the calibration lead 706.

[0042] Please refer to Figures 13-14The calibration mechanism 7 further comprises a calibration slide column 702 which is slidingly inserted into the lower calibration slide hole 701, the bottom end of the calibration slide column 702 is fixedly connected with a lower disc box 703, the top surface of the lower disc box 703 is slidingly connected with the bottom surface of the force bearing positioning plate 21, a power vertical shaft 704 is movably sleeved on the bottom surface of the inner cavity of the lower disc box 703, the outer portion of the power vertical shaft 704 is fixedly sleeved with a power line wheel 705, the outer portion of the power line wheel 705 is wound with a calibration lead 706, the other end of the calibration lead 706 extends to the outside of the lower disc box 703, passes through the first wire wheel 608 and is fixedly connected with the end surface of the dialing slide 602, the top end of the calibration slide column 702 is fixedly connected with an upper disc box 707, the top end of the power vertical shaft 704 extends to the inside of the upper disc box 707 through the calibration slide column 702 and is movably sleeved on the top surface of the inner cavity of the upper disc box 707, the inside of the upper disc box 707 is provided with a wound spring 708 which is movably sleeved on the outer portion of the power vertical shaft 704, one end of the wound spring 708 is fixedly connected with the surface of the power vertical shaft 704, the other end of the wound spring 708 is fixedly connected with the inner wall of the upper disc box 707, the top surface of the upper disc box 707 is fixedly connected with a linkage telescopic rod 709, the calibration mechanism 7 further comprises an upper calibration slide hole 710 which is opened on the end surface of the bearing flat plate 23, the top end of the linkage telescopic rod 709 passes through the upper calibration slide hole 710 and is fixedly connected with the bottom surface of the bearing table top 25, is used for applying a transverse force to the bearing table top 25, makes the relative positions of the bearing table top 25 and the dialing slide plate 603 interchanged, so as to realize the purpose of cleaning and wiping the waste on the top surface of the bearing table top 25 in two directions, and saves time.

[0043] Working principle:

[0044] Firstly press the shift square 309, then the shift square 309 shifts right with the driving rack 313, at the same time the shift square 309 extrudes the return spring 312, the return spring 312 shortens elastically, the elastic potential energy increases, then the driving rack 313 rotates the rotating vertical shaft 302 under the meshing of the driving rack 313 and the driving gear 304, after that the rotating vertical shaft 302 rotates the winding wheel 306 through the meshing of the amplification gear 303 and the transmission gear 307, then the steady pull wire 48 winds outside the winding wheel 306, after that the steady pull wire 48 pulls the steady lead wire 46 through the steady ring 47, then the steady lead wire 46 bends downward and pulls the steady piston 43, after that the steady piston 43 moves inside the steady cylinder 41 with the steady bolt 44, then the steady bolt 44 pulls out from the inside of the socket groove 45, the steady cylinder 41 is released, after that the steady lead wire 46 exerts downward pulling force on the steady cylinder 41, then the steady cylinder 41 moves downward with the bearing plate 23, then the bearing plate 23 extrudes the bearing spring 24, after that the bearing spring 24 shortens elastically, the elastic potential energy increases, then the bearing plate 23 moves downward with the bearing table 25 through the insertion of the T-shaped slide 27 and the T-shaped slide groove 26, then the bearing table 25 slides downward on the inner wall of the textile operation table 11, at the same time the bearing table 25 slides downward on the right end face of the shift slide plate 603, after that the bearing table 25 slides off the right end face of the shift slide plate 603, the shift slide plate 603 is released, then the movable gear 56 is fixed under the meshing of the movable gear 56 and the force storage gear 54, then the energy storage spring 58 on the right side of the force storage gear 54 exerts torsion on the force storage long rod 55, after that the force storage long rod 55 rotates counterclockwise with the corresponding traction line wheel 59 under the action of the torsion, then the corresponding energy storage pull wire 50 winds outside the traction line wheel 59 and pulls the shift slide plate 602 to move right, then the shift slide plate 602 moves right with the shift slide plate 603 and the shift bar brush 604, after that the press switch 605 on the left end of the textile operation table 11 is separated from the shift slide plate 602, then the press switch 605 resets automatically, then the left end of the bearing table 25 contacts with the shift bar brush 604 and exerts a pushing force on it, after that the shift bar brush 604 deforms elastically and slides onto the top surface of the bearing table 25, at this time the shift square 309 can be released, the shift square 309 resets under the elasticity of the return spring 312, the shift bar brush 604 blocks the bearing table 25 from moving upward, then the shift bar brush 604 slides right on the top surface of the bearing table 25 and pushes the waste on the top surface of the bearing table 25 right, at the same time the shift slide plate 602 pulls the energy storage pull wire 50 and the calibration lead wire 706 on the left side face of the shift slide plate 602, then the energy storage pull wire 50 is released from outside the traction line wheel 59 on the left side of the force storage gear 54, after that the traction line wheel 59 rotates counterclockwise with the force storage long rod 55 on the left side of the force storage gear 54, then the torsion potential energy of the energy storage spring 58 on the left side of the force storage gear 54 increases,Simultaneously, the calibration lead 706 at the left end of the force-bearing positioning plate 21 is released from the outside of the power line wheel 705 and drives it to rotate, then the power line wheel 705 rotates under the drive of the calibration lead 706 and does work on the wound spring 708 through the power vertical shaft 704, after that the potential energy of the torsion force of the wound spring 708 increases, at the same time, the calibration lead 706 at the right end of the force-bearing positioning plate 21 is relaxed, the corresponding wound spring 708 rotates with the corresponding power vertical shaft 704 under the action of the torsion force, then the power vertical shaft 704 rotates with the corresponding power line wheel 705, then the calibration lead 706 at the right end of the force-bearing positioning plate 21 winds to the outside of the power line wheel 705, after that the calibration lead 706 at the left end of the force-bearing positioning plate 21 is completely released from the outside of the corresponding power line wheel 705, after that the sliding plate 603 continues to move to the right, then the calibration lead 706 at the left end of the force-bearing positioning plate 21 pulls the load table top 25 to move to the left through the power line wheel 705, the power vertical shaft 704, the upper disc box 707, and the linkage telescopic rod 709, at the same time, the load table top 25 moves to the left with the other calibration mechanism 7, then the left end face of the load table top 25 contacts with the left end face of the inner cavity of the textile operation table top 11, the right end face of the load table top 25 and the right side face of the inner cavity of the textile operation table top 11 form a discharging port, after that the strip-shaped brush 604 pushes the waste on the top surface of the load table top 25 to fall from the discharging port and passes through the waste collecting hopper 12 and the waste collecting pipe 13 under the guidance of the corresponding material guiding inclined plate 610 and falls into the inside of the waste collecting box 15, then the sliding plate 603 moves to the right side of the load table top 25 and overlaps each other, then the load table top 25 moves upward under the action of the elastic force of the load spring 24, then the load table top 25 moves upward with the stable structure 4, then the end face of the stable dowel pin 44 slides along the inner wall of the textile operation table top 11 under the action of the elastic force of the stable spring 42, then the stable dowel pin 44 aligns with the socket recess 45, after that the stable dowel pin 44 is inserted into the socket recess 45 under the action of the elastic force of the stable spring 42, then the load table top 25 is fixed, at this time the top surface of the load table top 25 is flush with the top surface of the textile operation table top 11, at this time the load table top 25 blocks the sliding plate 603, realizes transposition, then the right end face of the sliding plate 603 contacts with the right side face of the inner cavity of the textile operation table top 11, the sliding sheet 602 triggers the pressing switch 605 at the right end of the sliding slot 601, after that the intelligent controller 16 controls the servo drive motor 51 to run, then the servo drive motor 51 rotates with the force storage horizontal shaft 53 through the torsion force inductor 52, then the force storage horizontal shaft 53 rotates counterclockwise with the force storage gear 54, after that the force storage gear 54 does work on the energy storage spring 58 through the meshing action between it and the movable gear 56, then the potential energy of the torsion force of the energy storage spring 58 on the right side of the force storage gear 54 further decreases, the potential energy of the torsion force of the energy storage spring 58 on the left side of the force storage gear 54 increases, then the torsion force inductor 52 monitors the torsion force value between the servo drive motor 51 and the force storage horizontal shaft 53 in real time, when the torsion force value reaches the preset value in the intelligent controller 16,The intelligent controller 16 controls the servo drive motor 51 to stop, and then works on the top surface of the bearing table 25. After the work is completed, the pressurized bar 309 is pressed, and then the traction line wheel 59 on the left side of the force storage gear 54 pulls the force storage pull line 50 on the left side of the sliding plate 602 under the action of the torsion force of the corresponding force storage spring 58. Then, the above principle is used to clean and wipe the waste, so that the bearing table 25 and the sliding plate 603 are exchanged again. Then, the press switch 605 on the left side of the sliding groove 601 is triggered. Then, the intelligent controller 16 controls the servo drive motor 51 to run in reverse. Then, the force storage gear 54 rotates clockwise. Then, the torsion potential energy of the force storage spring 58 on the left side of the force storage gear 54 decreases, and the torsion potential energy of the other force storage spring 58 increases, so that the next cleaning and wiping of the waste is prepared.

[0045] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can make equivalent replacements or changes within the technical range disclosed by the present application according to the technical solution and improvement concept of the present application, which should be covered within the protection scope of the present application.

Claims

1. A textile work station for fashion design, comprising a textile work station body (1), characterized in that: The textile operation platform body (1) includes a textile operation platform (11), the top of the textile operation platform (11) is open, the bottom of the textile operation platform (11) is fixedly connected with a waste collecting hopper (12), the bottom of the waste collecting hopper (12) is fixedly connected with a waste collecting pipe (13), the bottom of the waste collecting hopper (12) is fixedly connected with a supporting leg (14), the lower part of the waste collecting pipe (13) is provided with a waste collecting box (15), the inside of the textile operation platform (11) is provided with an intelligent controller (16), the inside of the textile operation platform (11) is provided with a recess displacement mechanism (2), the recess displacement mechanism (2) includes a force bearing positioning plate (21), the front and rear ends of the force bearing positioning plate (21) are fixedly connected to the inner wall of the textile operation platform (11), the intelligent controller (16) is installed on the top surface of the force bearing positioning plate (21), the top surface of the force bearing positioning plate (21) is provided with a pressure control mechanism (3), the pressure control mechanism (3) includes a pressure control box (301), the pressure control box (301) is fixedly installed on the top surface of the force bearing positioning plate (21), the top surface of the force bearing positioning plate (21) is provided with a stable structure (4), the stable structure (4) includes a force bearing guide wheel (49), the force bearing guide wheel (49) is fixedly installed on the top surface of the force bearing positioning plate (21), the bottom surface of the force bearing positioning plate (21) is provided with a force storage mechanism (5), the force storage mechanism (5) includes a servo drive motor (51), the servo drive motor (51) is fixedly installed on the bottom surface of the force bearing positioning plate (21), the inside of the textile operation platform (11) is provided with a dialing mechanism (6), the dialing mechanism (6) includes a dialing sliding groove (601), the number of the dialing sliding groove (601) is two, the two dialing sliding grooves (601) are respectively arranged on the front and rear surfaces of the inner cavity of the textile operation platform (11), the left and right ends of the force bearing positioning plate (21) are provided with a calibration mechanism (7), the calibration mechanism (7) includes a lower calibration sliding hole (701), the lower calibration sliding hole (701) is arranged on the end surface of the force bearing positioning plate (21).

2. A textile workbench for garment design according to claim 1, characterized in that: The recess displacement mechanism (2) further comprises a guide telescopic rod (22), the bottom end of the guide telescopic rod (22) is fixedly connected to the top surface of the force bearing positioning plate (21), the top end of the guide telescopic rod (22) is fixedly connected with a bearing flat plate (23), the outside of the guide telescopic rod (22) is movably sleeved with a bearing spring (24), the top surface of the force bearing positioning plate (21) is drivingly connected with the bearing flat plate (23) through the bearing spring (24), the top surface of the bearing flat plate (23) is installed with a bearing table top (25), the bottom surface of the bearing table top (25) is slidingly connected with the top surface of the bearing flat plate (23), the top surface of the bearing table top (25) is flush with the top surface of the textile operation table top (11), the front and rear surfaces of the bearing table top (25) are slidingly connected with the front and rear surfaces of the inner cavity of the textile operation table top (11) respectively, the bottom surface of the bearing table top (25) is provided with a T-shaped sliding groove (26), a T-shaped sliding strip (27) is slidingly inserted into the T-shaped sliding groove (26), the bottom end of the T-shaped sliding strip (27) penetrates out of the bottom of the T-shaped sliding groove (26) and is fixedly connected to the top surface of the bearing flat plate (23), a rolling steel ball (28) is movably embedded on the top surface of the T-shaped sliding strip (27), and the rolling steel ball (28) is in contact connection with the top surface of the inner cavity of the T-shaped sliding groove (26).

3. A textile workbench for garment design according to claim 1, characterized in that: The pressure control mechanism (3) further comprises a rotating vertical shaft (302), the bottom end of the rotating vertical shaft (302) is movably sleeved on the bottom surface of the inner cavity of the pressure control box (301), the top end of the rotating vertical shaft (302) is movably sleeved on the top surface of the inner cavity of the pressure control box (301), the outside of the rotating vertical shaft (302) is fixedly sleeved with an amplification gear (303) and a driving gear (304), the pressure control mechanism (3) further comprises a transmission short shaft (305), the bottom end of the transmission short shaft (305) is movably sleeved on the bottom surface of the inner cavity of the pressure control box (301), the top end of the transmission short shaft (305) is fixedly connected with a winding reel (306), the top surface of the winding reel (306) is fixedly connected with a transmission gear (307) located at the middle part, the transmission gear (307) is in mesh with the amplification gear (303), a through hole (308) is formed in the surface of the pressure control box (301), a shifting square bar (309) is movably inserted into the through hole (308), one end of the shifting square bar (309) extends to the outside of the textile operation table top (11), the shifting square bar (309) is movably inserted into the textile operation table top (11), the other end of the shifting square bar (309) extends to the inside of the pressure control box (301), a shifting hole cavity (310) is formed in the right side surface of the shifting square bar (309), a guide sliding rod (311) is slidingly inserted into the shifting hole cavity (310), the right end of the guide sliding rod (311) is fixedly connected to the inner wall of the pressure control box (301), the outside of the guide sliding rod (311) is movably sleeved with a reset spring (312), the shifting square bar (309) is drivingly connected with the inner wall of the pressure control box (301) through the reset spring (312), a driving rack (313) is fixedly connected to the side surface of the shifting square bar (309), and the driving rack (313) is in mesh with the driving gear (304).

4. A textile work station for garment design according to claim 2 or 3, wherein: The stable structure (4) further comprises two stable cylinders (41) fixedly installed on the bottom surface of the bearing flat plate (23), and the two stable cylinders (41) are located at the front and rear ends of the bearing flat plate (23). The inner wall of the stable cylinder (41) is drivingly connected with a stable piston (43) through a stable spring (42). The stable piston (43) is slidingly inserted into the stable cylinder (41). The other surface of the stable piston (43) is fixedly connected with a stable bolt (44), and the other end of the stable bolt (44) extends to the outside of the stable cylinder (41). The stable structure (4) further comprises two receiving grooves (45) respectively formed on the front and rear surfaces of the inner cavity of the textile operation table top (11). The end of the stable bolt (44) is movably inserted into the receiving groove (45). A stable lead wire (46) is connected between the two stable cylinders (41) and movably inserted into the stable cylinder (41). The end of the stable lead wire (46) extends to the inside of the stable cylinder (41) and is fixedly connected to the surface of the stable piston (43). The outside of the stable lead wire (46) movably sleeved with a stable ring (47) located between the two stable cylinders (41). The inside of the stable ring (47) movably penetrates a stable pull wire (48). The right end of the stable pull wire (48) is fixedly connected to the top surface of the bearing positioning plate (21). The other end of the stable pull wire (48) passes through the bearing guide wheel (49) and extends to the inside of the pressure control box (301) and is wound on the outside of the winding wire wheel (306).

5. A textile workbench for garment design according to any one of claims 1 to 3, characterized in that: The force storage mechanism (5) further comprises a torsion sensor (52) installed on the output shaft of the servo drive motor (51), the other end of the torsion sensor (52) is installed with a force storage cross shaft (53), the outside of the force storage cross shaft (53) is sleeved with a force storage gear (54), the force storage mechanism (5) further comprises two force storage long rods (55), the two force storage long rods (55) are respectively located on the left and right sides of the force storage gear (54), the front and rear ends of the force storage long rod (55) are respectively movably sleeved on the front and rear surfaces of the inner cavity of the textile operation table top (11) and are located below the force bearing positioning plate (21), the outside of the force storage long rod (55) is movably sleeved with a movable gear (56), the movable gear (56) can rotate on the outside of the force storage long rod (55) and cannot move along the axis direction of the force storage long rod (55), the movable gear (56) is engaged with the force storage gear (54), the inside of the movable gear (56) is provided with a fixed disc cavity (57), the inside of the fixed disc cavity (57) is provided with an energy storage clock spring (58), the energy storage clock spring (58) is movably sleeved on the outside of the force storage long rod (55), one end of the energy storage clock spring (58) is fixedly connected on the surface of the force storage long rod (55), the other end of the energy storage clock spring (58) is fixedly connected on the inner wall of the fixed disc cavity (57), the outside of the force storage long rod (55) is fixedly sleeved with two traction line wheels (59), the two traction line wheels (59) are respectively located on the front and rear sides of the movable gear (56), the outside of the traction line wheel (59) is wound with a force storage pull wire (50).

6. A textile workbench for garment design according to claim 5, wherein: The dialing mechanism (6) further comprises a dialing slide (602) which is slidingly inserted into the inside of the dialing slide groove (601), one end of the dialing slide (602) is fixedly connected with a dialing slide plate (603), the dialing slide plate (603) is slidingly connected with the inner wall of the textile operation table top (11), the bottom surface of the dialing slide plate (603) is fixedly installed with a dialing strip-shaped brush (604), the dialing mechanism (6) further comprises two press switches (605), the two press switches (605) are respectively fixedly installed on the left and right side surfaces of the inner cavity of the same dialing slide groove (601), the press switch (605) is matched with the dialing slide (602), the dialing mechanism (6) further comprises wire holes (606), four wire holes (606) are formed on the left and right side surfaces of the textile operation table top (11), wire shafts (607) are fixedly inserted into the inner walls of the wire holes (606), first wire wheels (608) and second wire wheels (609) are movably sleeved on the outer parts of the wire shafts (607), the end of the left force storage pull wire (50) of the force storage horizontal shaft (53) is wound around the corresponding second wire wheel (609) and is fixedly connected with the left end surface of the dialing slide (602), the end of the right force storage pull wire (50) of the force storage horizontal shaft (53) is wound around the corresponding second wire wheel (609) and is fixedly connected with the right end surface of the dialing slide (602), the dialing mechanism (6) further comprises four material guiding inclined plates (610), two material guiding inclined plates (610) are located at the left end of the textile operation table top (11), the left ends of the two material guiding inclined plates (610) are fixedly connected with the left side surface of the inner cavity of the textile operation table top (11), the other two material guiding inclined plates (610) are located at the right end of the textile operation table top (11), the right ends of the two material guiding inclined plates (610) are fixedly connected with the right side surface of the inner cavity of the textile operation table top (11), the top ends of the two material guiding inclined plates (610) are fixedly connected with the back of the inner cavity of the textile operation table top (11), the top ends of the other two material guiding inclined plates (610) are fixedly connected with the front of the inner cavity of the textile operation table top (11).

7. A textile work station for garment design according to claim 2 or 6, wherein: The calibration mechanism (7) further comprises a calibration slide column (702) which is slidingly inserted into the lower calibration slide hole (701), the bottom end of the calibration slide column (702) is fixedly connected with a lower disc box (703), the top surface of the lower disc box (703) is slidingly connected with the bottom surface of the force positioning plate (21), a power vertical shaft (704) is movably sleeved on the bottom surface of the inner cavity of the lower disc box (703), a power line wheel (705) is fixedly sleeved on the outside of the power vertical shaft (704), a calibration lead (706) is wound on the outside of the power line wheel (705), the other end of the calibration lead (706) extends to the outside of the lower disc box (703), passes through the first wire wheel (608) and is fixedly connected with the end surface of the pulling slide (602), the top end of the calibration slide column (702) is fixedly connected with an upper disc box (707), the top end of the power vertical shaft (704) extends to the inside of the upper disc box (707) through the calibration slide column (702) and is movably sleeved on the top surface of the inner cavity of the upper disc box (707), a coiled spring (708) is arranged in the inside of the upper disc box (707), the coiled spring (708) is movably sleeved on the outside of the power vertical shaft (704), one end of the coiled spring (708) is fixedly connected with the surface of the power vertical shaft (704), the other end of the coiled spring (708) is fixedly connected with the inner wall of the upper disc box (707), a linkage telescopic rod (709) is fixedly connected with the top surface of the upper disc box (707), the calibration mechanism (7) further comprises an upper calibration slide hole (710) which is arranged on the end surface of the bearing flat plate (23), the top end of the linkage telescopic rod (709) passes through the upper calibration slide hole (710) and is fixedly connected with the bottom surface of the bearing table top (25).

Citation Information

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