Biomass functional shapewear and manufacturing method thereof

By using a conveying and recycling mechanism and a cutting and tensioning anti-wrinkle mechanism, the problem of inconvenient fabric conveying and recycling is solved, achieving stable fabric conveying and precise cutting, adapting to fabrics of different thicknesses, and improving cutting efficiency and effect.

CN119750289BActive Publication Date: 2025-11-07FOSHAN WHALE SHANGTON SOFTWARE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411983999.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-07
Estimated Expiration
2044-12-31

AI Technical Summary

Technical Problem

Existing devices for cutting underwear fabrics suffer from inconvenient fabric transport and recycling, poor securing, resulting in loosening and wrinkles, which affect the cutting effect.

Method used

The system employs a conveying and recycling mechanism and a cutting and tensioning anti-wrinkle mechanism. Through components such as clamping rollers, conveyor belts, tension springs, return springs, and electric push rods, it achieves the traction, conveying, and fixing of the fabric to prevent loosening and wrinkles. The cutting position is adjusted by a drive motor and an adjusting rod to ensure precise cutting.

Benefits of technology

It improves the convenience and stability of fabric conveying and recycling, prevents loosening and wrinkles, ensures cutting results, adapts to fabrics of different thicknesses, and improves cutting accuracy and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of functional shapewear of biomass and its manufacturing method, it is related to underwear manufacturing technical field, including the following steps, S1, according to requirement selection suitable cloth, and cloth roll is placed in the placement frame on bottom plate, and make cloth one end pass between clamp roller and first conveying belt, facilitate tension spring push slide bar, sliding block and clamp roller move, clamp cloth, S2, start rotating motor, drive first conveying belt rotation, the application structure scientific and reasonable, it is safe and convenient to use, set up conveying and recovery mechanism, by tension spring push slide bar and sliding block in top frame inside sliding, adjust the distance between clamp roller and first conveying belt, it is convenient to clamp and fix different thickness cloth, improve adaptability, by the transmission of transmission gear, it is convenient rotating motor drive rotary drum and first conveying belt rotation, simultaneously utilize the cooperation of transmission wheel and elastic gear belt, synchronous drive clamp roller reverse rotation, cloth is pulled and conveyed.
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Description

TECHNICAL FIELD

[0001] The present application relates to underwear manufacturing technical field, specifically to a kind of biomass functional shapewear and its manufacturing method. BACKGROUND

[0002] Shapewear is a kind of underwear, and the stretch elasticity of shapewear is good, which has the effects of body modification, hip lifting, flat abdomen and chest lifting, and can modify and reshape body curve, and in the production process of underwear, suitable fiber cloth needs to be cut into underwear patterns first, and then sewn up;

[0003] However, the existing device is not convenient for conveying and separately recycling the cut cloth, reduces efficiency, and the fixing effect of the cloth is poor during conveying, so that the cloth is prone to looseness and wrinkles during conveying and cutting, which affects the cutting effect, so it is necessary to provide a kind of biomass functional shapewear and its manufacturing method to overcome the defects in the prior art. SUMMARY

[0004] The present application provides a kind of biomass functional shapewear and its manufacturing method, which can effectively solve the problem of inconvenient conveying and separately recycling the cut cloth, reducing efficiency, and the fixing effect of the cloth is poor during conveying, so that the cloth is prone to looseness and wrinkles during conveying and cutting, which affects the cutting effect.

[0005] To achieve the above purpose, the present application provides the following technical scheme: a kind of biomass functional shapewear and its manufacturing method, comprising the following steps:

[0006] S1, select suitable cloth according to requirements, and place the cloth roll on the placing rack on the bottom plate, and make one end of the cloth pass between the clamp roller and the first conveying belt, so that the tension spring pushes the sliding rod, the sliding block and the clamp roller to move, and clamps the cloth;

[0007] S2, start the rotary motor to drive the first conveying belt to rotate, stop the rotary motor when the cloth is conveyed to the position below the gantry, push the concave plate and the pressure roller down through the reset spring to fix the cloth, then start the electric push rod and the cutting machine to cut out the shapewear shape meeting the size;

[0008] S3, the cooperation of driving motor, adjusting rod, translation plate, electric telescopic rod and push block changes the cutting position, which is convenient for cutting the required shapewear cloth shape.

[0009] S4, when the cloth under the gantry is cut, the rotating motor is restarted to convey the cloth, and the second conveying belt is matched to roll up the cut cloth, and the cut underwear shape falls into the collecting box;

[0010] S5, the cut front piece and the crotch of the underwear are aligned and sewn together, and the side seams are also aligned and sewn, completing the production of the underwear.

[0011] Compared with the prior art, the present application has the advantages that the structure is scientific and reasonable, and the use is safe and convenient:

[0012] 1. The conveying and recycling mechanism is provided, the tension spring pushes the sliding rod and the sliding block to slide in the top frame, the distance between the clamping roller and the first conveying belt is adjusted, different thicknesses of cloth are clamped and fixed, the adaptability is improved, the transmission gear is driven, the rotating motor drives the rotating drum and the first conveying belt to rotate, the clamping roller is driven to rotate in the opposite direction through the cooperation of the transmission wheel and the elastic gear belt, the traction conveying effect of the cloth is improved, and the power is conveniently transmitted because the elastic gear belt has ductility and still adheres to the transmission wheel when the clamping roller moves.

[0013] In addition, the top rod is rotated to push the movable block, the baffle, the rotating rod and the second conveying belt to rise, and is matched with the first conveying belt to convey the cut cloth, and the cloth cut into the shape of underwear falls into the collecting box, the automaticity is increased, the traction motor is started together with the rotating motor, so that in the process of conveying the cloth by the rotating motor, the traction motor and the transmission gear ring are matched to drive the winding rod to rotate, the cut cloth is wound, and the convenience of recycling is improved.

[0014] 2. The cutting and tensioning anti-wrinkle mechanism is provided, the lifting plate and the guide roller are moved by rotating the screw rod, the guide roller is matched with the first conveying belt to clamp different thicknesses of cloth, and the cloth is moved, the connecting block and the tensioning roller are moved by the supporting spring to tension the cloth, the cloth is prevented from loosening and wrinkling during conveying, and the effect of subsequent cutting is ensured.

[0015] In addition, when cutting, the concave plate and the pressure roller are lowered by the reset spring to press and fix the cloth, the stability of the cloth is further improved, the cloth is prevented from shaking during cutting, the cutting precision is improved, the cloth is cut by the electric push rod and the cutting machine, and the cooperation of the driving motor, the adjusting rod and the translation plate, the electric telescopic rod and the push block changes the position of the longitudinal and transverse cutting, improves the adaptability, conveniently cuts the appropriate underwear cloth shape according to the need, and improves the convenience.

[0016] 3、Set the underwear body, left waist, right waist, magic tape, elastic band and mesh cloth, through the elastic band to improve the fit of the underwear body and the body, so as to prevent the phenomenon of loose falling when wearing, at the same time, through the cooperation of left waist, right waist and magic tape, it is convenient to shape the waist, and the left waist and the right waist can be separated, improve the convenience of wearing, in addition, through the mesh cloth, the ventilation performance of the underwear is improved.

[0017] In summary, through the conveying and recycling mechanism and the cutting and tightening wrinkle prevention mechanism, it is convenient to pull and convey the cloth, and in the process of conveying, the tightness and stability of the cloth are ensured, the phenomenon of loosening and wrinkling is prevented, the cutting effect is ensured, and the shape of the underwear cloth required by cutting is convenient, the adaptability is improved, in addition, it is also convenient to roll up the cut cloth, and the cut cloth shape is stored centrally, which is convenient for subsequent underwear processing. BRIEF DESCRIPTION OF DRAWINGS

[0018] The accompanying drawings are included to provide a further understanding of the application, and constitute a part of the specification, together with the embodiments of the application, to explain the application, and do not constitute a limitation on the application.

[0019] In the drawings:

[0020] Figure 1 is the flow chart of the underwear making method of the application;

[0021] Figure 2 is the installation structure schematic diagram of the collecting box of the application;

[0022] Figure 3 is the structure schematic diagram of the conveying and recycling mechanism of the application;

[0023] Figure 4 is the installation structure schematic diagram of the roll rod of the application;

[0024] Figure 5 is the installation structure schematic diagram of the second conveying belt of the application;

[0025] Figure 6 is the structure schematic diagram of the cutting and tightening wrinkle prevention mechanism of the application;

[0026] Figure 7 is the installation structure schematic diagram of the mesh cloth of the application.

[0027] Reference numerals in the drawings: 1, bottom plate; 2, conveying frame;

[0028] 3. Conveying and recycling mechanism; 301. Placement rack; 302. Partition plate; 303. Winding rod; 304. Traction motor; 305. Transmission gear ring; 306. Rotary drum; 307. First conveyor belt; 308. Top frame; 309. Slide rod; 310. Slider; 311. Clamping roller; 312. Tension spring; 313. Transmission rod; 314. Transmission gear; 315. Transmission wheel; 316. Elastic gear belt; 317. Rotary motor; 318. Base frame; 319. Top rod; 320. Movable block; 321. Baffle plate; 322. Rotating rod; 323. Second conveyor belt; 324. Collection box;

[0029] 4. Cutting and tensioning anti-wrinkle mechanism; 401. Frame; 402. Electric telescopic rod; 403. Push block; 404. Gantry frame; 405. Groove; 406. Adjusting rod; 407. Translation plate; 408. Electric push rod; 409. Cutting machine; 410. Protrusion; 411. Pressure rod; 412. Concave plate; 413. Return spring; 414. Pressure roller; 415. Drive motor; 416. Screw; 417. Lifting plate; 418. Guide roller; 419. Vertical rod; 420. Connecting block; 421. Tensioning roller; 422. Support spring;

[0030] 5. Main body of the underwear; 6. Left waistband; 7. Right waistband; 8. Velcro; 9. Elastic band; 10. Mesh fabric. Detailed Implementation

[0031] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0032] Example: Figure 1 As shown, the present invention provides a technical solution, a method for manufacturing biomass functional shaping underwear, comprising the following steps:

[0033] S1. Select a suitable fabric according to the requirements, place the fabric roll on the placement rack 301 on the base plate 1, and let one end of the fabric pass between the clamping roller 311 and the first conveyor belt 307, so that the tension spring 312 can push the slide bar 309, the slider 310 and the clamping roller 311 to move and clamp the fabric.

[0034] S2. Start the rotary motor 317 to drive the first conveyor belt 307 to rotate. When the fabric is conveyed to the bottom of the gantry 404, stop the rotary motor 317. The return spring 413 pushes the concave plate 412 and pressure roller 414 down to fix the fabric. Then start the electric push rod 408 and the cutting machine 409 to cut out the underwear shape that meets the size.

[0035] S3, the cooperation of the driving motor 415, the adjusting rod 406, the translation plate 407, the electric telescopic rod 402 and the push block 403 changes the position of the cutting, which facilitates cutting the required underwear cloth shape;

[0036] S4, when the cloth under the gantry 404 is cut, the rotating motor 317 is restarted to convey the cloth, and the second conveying belt 323 is used to wind the cut cloth, and the cut underwear shape falls into the collecting box 324;

[0037] S5, the cut underwear front and back are aligned and sewn together, and the side seams are also aligned and sewn, completing the production of the underwear;

[0038] As shown in Figures 2-6 A biomass functional shapewear manufacturing device, a conveying frame 2 is connected to the top end of the bottom plate 1 through bolts, a conveying and recycling mechanism 3 is arranged at one end of the conveying frame 2, the conveying and recycling mechanism 3 comprises a placing frame 301, a partition plate 302, a winding rod 303, a traction motor 304, a transmission gear ring 305, a rotating drum 306, a first conveying belt 307, a top frame 308, a sliding rod 309, a sliding block 310, a clamping roller 311, a tension spring 312, a transmission rod 313, a transmission gear 314, a transmission wheel 315, an elastic gear belt 316, a rotating motor 317, a bottom frame 318, a top rod 319, a movable block 320, a baffle 321, a rotating rod 322, a second conveying belt 323 and a collecting box 324.

[0039] The placing frame 301 is connected to the top end of the bottom plate 1 on one side of the conveying frame 2 through bolts, the winding rod 303 is movably installed at one end of the placing frame 301, the partition plates 302 are sleeved on the outer sides of both ends of the winding rod 303 through threads, the traction motor 304 is connected to the bottom of the winding rod 303 on one end of the placing frame 301 through the mounting plate, the transmission gear rings 305 are fixedly sleeved on the outer sides of the traction motor 304 output shaft and one winding rod 303, in order to facilitate the winding and recycling of the cloth, the clamping groove is formed in the top end of the placing frame 301, the placing groove is obliquely formed in one end of the placing frame 301, the winding rod 303 is movably connected in the placing groove, and the two transmission gear rings 305 are meshed with each other.

[0040] The inner wall of the conveying frame 2 is symmetrically connected with rotary drums 306, and the outer side of each rotary drum 306 is fixedly sleeved with a first conveying belt 307. The top end of the conveying frame 2 is symmetrically connected with top frames 308 on one side, and the top end of each top frame 308 is movably connected with a sliding rod 309. The bottom end of each sliding rod 309 is movably connected with a sliding block 310 at the inner position of the top frame 308, and the outer side of each sliding block 310 is movably connected with a clamping roller 311. The outer side of the sliding block 310 and the inner wall of the top frame 308 are movably connected with a tension spring 312 at the position corresponding to the outer side of the sliding rod 309. The inner wall of the placing frame 301 is movably connected with a transmission rod 313, and the outer side of the transmission rod 313 and the rotary shaft of one rotary drum 306 are symmetrically fixedly sleeved with a transmission gear 314 at the positions corresponding to the two sides of the conveying frame 2. In order to facilitate the transmission of power, the two ends of the sliding block 310 are movably connected with the inner wall of the top frame 308, the outer side of the clamping roller 311 is uniformly provided with anti-skid lines, the two transmission gears 314 on the same side are meshed with each other, the outer side of the transmission rod 313 is fixedly sleeved with a transmission wheel 315 at both ends, and the outer side of the two transmission wheels 315 on the same side is sleeved with an elastic gear belt 316. One end of the placing frame 301 is connected with a rotary motor 317 through a mounting plate at the position corresponding to one side of the transmission rod 313. In order to facilitate the conveying of cloth, the inner wall of the transmission wheel 315 and the outer side of the elastic gear belt 316 are uniformly provided with tooth grooves, and the two ends of the transmission rod 313 penetrate through the two ends of the placing frame 301. One end of the transmission rod 313 is movably connected with the output shaft of the rotary motor 317. The traction motor 304 and the rotary motor 317 are powered by an external power supply, and the traction motor 304 and the rotary motor 317 are controlled by a control switch.

[0041] The bottom end of the conveying frame 2 is symmetrically connected with a bottom frame 318 through bolts, and the bottom end of the bottom frame 318 is connected with a top rod 319 through threads. The top end of the top rod 319 is movably connected with a movable block 320 at the position corresponding to the inner position of the bottom frame 318, and one end of each of the three movable blocks 320 on the same side is connected with a baffle 321 through a bolt. A rotary rod 322 is movably connected between the two baffles 321, and the outer side of the rotary rod 322 is fixedly sleeved with a second conveying belt 323. The top end of the bottom plate 1 is movably connected with a collecting box 324 at the position corresponding to the other side of the conveying frame 2. In order to facilitate the movement of the baffle 321, the bottom end of the top rod 319 is movably connected with a knob, and the two ends of the movable block 320 are movably connected with the inner wall of the bottom frame 318. The outer diameter of the second conveying belt 323 is greater than the height of the baffle 321.

[0042] The cutting and tensioning wrinkle prevention mechanism 4 is arranged at the middle position of the top end of the conveying frame 2, and comprises a frame 401, an electric telescopic rod 402, a push block 403, a gantry 404, a groove 405, an adjusting rod 406, a translation plate 407, an electric push rod 408, a cutting machine 409, a protruding block 410, a pressing rod 411, a concave plate 412, a reset spring 413, a compression roller 414, a driving motor 415, a screw rod 416, a lifting plate 417, a guide roller 418, a vertical rod 419, a connecting block 420, a tensioning roller 421 and a supporting spring 422.

[0043] The frame 401 is arranged at the middle position of the two ends of the conveying frame 2 through bolt connection, the electric telescopic rod 402 is arranged at the inner wall of the frame 401 through bolt connection, the push block 403 is arranged at the one end of the electric telescopic rod 402 through bolt connection, the gantry 404 is arranged at the top end of the push block 403 through clamping, the groove 405 is arranged at the top end of the gantry 404, the adjusting rod 406 is rotatably arranged in the groove 405, the translation plate 407 is arranged at the outer side of the adjusting rod 406 through threaded sleeve, the electric push rod 408 is arranged at the bottom end of the translation plate 407 through bolt connection, the cutting machine 409 is arranged at the bottom end of the electric push rod 408 through bolt connection, the protruding block 410 is symmetrically arranged at the two ends of the gantry 404 through clamping, the pressing rod 411 is movably arranged in the protruding block 410, the concave plate 412 is arranged at the bottom end of the two pressing rods 411 through clamping, the reset spring 413 is arranged between the concave plate 412 and the protruding block 410, the compression roller 414 is rotatably arranged in the concave plate 412, the driving motor 415 is arranged at the one end of the gantry 404 through bolt connection, in order to facilitate the adjustment of the cutting position, the rectangular groove is arranged at the top end of the frame 401, the translation plate 407 is slidably connected with the inner wall of the groove 405, the driving motor 415, the cutting machine 409, the electric push rod 408 and the electric telescopic rod 402 are powered by an external power supply, and the cutting machine 409 is a laser cutting machine.

[0044] At the top of the conveyor frame 2, screws 416 are symmetrically and equidistantly connected to one side of the gantry frame 404. Lifting plates 417 are threadedly connected to the outer sides of the two screws 416 on the same side. Guide rollers 418 are symmetrically and rotatably connected between the two lifting plates 417. Vertical rods 419 are snapped into the middle of the top of each of the two lifting plates 417. Connecting blocks 420 are movably sleeved on the outer sides of each of the two vertical rods 419. Tensioning rollers 421 are rotatably connected between the two connecting blocks 420. Supporting springs 422 are snapped into the outer sides of the vertical rods 419 between the connecting blocks 420 and the lifting plates 417. To facilitate the movement of the lifting plates 417, a knob is snapped into the top of the screws 416, and a baffle is snapped into the top of the vertical rods 419. Anti-slip textures are provided on the outer sides of the two guide rollers 418. The lengths of the two guide rollers 418 and the tensioning roller 421 are equal to the width of the first conveyor belt 307.

[0045] like Figure 7 As shown, a biomass functional shaping underwear includes an underwear body 5, a left waistband 6 connected to one side of the top of the underwear body 5, and a right waistband 7 connected to the other side of the top of the underwear body 5. One end of the left waistband 6 and one end of the right waistband 7 are sewn together. Velcro closures 8 are attached to the inner wall of the left waistband 6 and the outer side of the right waistband 7. Elastic bands 9 are provided at the bottom of the underwear body 5, the top of the left waistband 6 and the right waistband 7, and the connection points between the underwear body 5 and the left waistband 6 and the right waistband 7. Mesh fabric 10 is attached to the opposite ends of the left waistband 6 and the right waistband 7 and both ends of the underwear body 5.

[0046] The working principle and usage process of this invention are as follows: First, the roll of bio-fiber fabric is placed on the placement frame 301. Then, one end of the fabric is passed between the clamping roller 311 and the first conveyor belt 307. Then, the rotary motor 317 is controlled to rotate, and the power is transmitted through the cooperation of the transmission gear 314, which drives the rotating drum 306 and the first conveyor belt 307 to rotate. At the same time, the power is transmitted synchronously through the cooperation of the transmission wheel 315 and the elastic gear belt 316, which drives the clamping roller 311 to rotate. This facilitates the cooperation between the clamping roller 311 and the first conveyor belt 307 to pull and transport the fabric, so that the fabric is transported evenly along the conveyor frame 2.

[0047] In addition, by utilizing the extension and retraction characteristics of the tension spring 312, the slide bar 309 and the slider 310 are pushed to slide inside the top frame 308. The distance between the clamping roller 311 and the first conveyor belt 307 is adjusted according to the thickness of the fabric to clamp the fabric.

[0048] Then, rotating the screw rod 416 moves the lifting plate 417 and the guide roller 418, so that the guide roller 418 cooperates with the first conveying belt 307 to clamp the cloth of different thicknesses and assist the movement of the cloth, and at the same time, the cloth is wound around the top end of the tensioning roller 421, so that in the process of conveying, the supporting spring 422 is extended and retracted to push the connecting block 420 and the tensioning roller 421 to move and tighten the cloth;

[0049] Then, after the cloth passes through the gantry 404, the rotation of the rotating motor 317 is stopped, and the retraction of the reset spring 413 pushes the concave plate 412 and the pressing roller 414 to descend and press the cloth, and then the electric push rod 408 is started to push the cutting machine 409 to descend and cut the cloth, and at the same time, the driving motor 415 drives the adjusting rod 406 to rotate to push the sliding plate 407 to slide in the groove 405, so as to change the position of the longitudinal cutting, and then the electric telescopic rod 402 pushes the push block 403 and the gantry 404 to slide in the frame 401, so as to change the position of the transverse cutting, which facilitates cutting the internal cloth shape as needed.

[0050] Then, when the cloth below the gantry 404 is cut, the rotating motor 317 is restarted to convey the cloth by the first conveying belt 307, and when the cloth is conveyed to the end of the conveying frame 2, one end of the cloth is bent and placed on the second conveying belt 323, and then the top rod 319 is rotated to push the movable block 320, the baffle 321, the rotating rod 322 and the second conveying belt 323 to rise, so as to cooperate with the first conveying belt 307 to convey the cut cloth, and the cloth cut into the shape of underwear falls into the collecting box 324 during the bending process, improving the convenience.

[0051] Finally, when the cut cloth is conveyed to the vicinity of the placing frame 301, one end of the cloth is fixed on the winding rod 303, and then the traction motor 304 is started together with the rotating motor 317, so that in the process of conveying the cloth by the rotating motor 317, the winding rod 303 is rotated by the cooperation of the traction motor 304 and the transmission gear ring 305 to wind the cut cloth, improving the convenience of recycling, and after winding is completed, the winding rod 303 is taken off from the placing frame 301, and the partition plate 302 is rotated to remove the obstruction of the cloth roll, facilitating taking the cloth roll off the winding rod 303.

[0052] Finally, it should be noted that the above only describes the preferred examples of the present application, and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art will appreciate that modifications can be made to the technical solutions described in the foregoing embodiments, or some of the technical features thereof can be replaced equivalently, without departing from the spirit and principle of the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A method of making a functional shapewear garment from biomass, the method comprising: It comprises the following steps: ​ S1, according to the requirements of the selection of suitable cloth, and cloth roll is placed in the bottom plate on the rack, and make cloth one end through the clamp roll and the first conveying belt, facilitate tension spring push the slide bar, slide block and clamp roll, clamp the cloth; S2, start the rotary motor, drive the first conveying belt rotation, when the cloth is conveyed to the gantry below, stop the rotary motor, through the reset spring push down the concave plate and the pressure roller, fixed on the cloth, and then start the electric push rod and cutting machine, cut out the size of the underwear shape; S3, the cooperation of the drive motor, adjusting rod, translation plate, electric telescopic rod, push block, change the position of the cutting, facilitate cutting out the required underwear cloth shape; S4, when the cloth below the gantry is cut, restart the rotary motor to convey the cloth, at the same time, through the cooperation of the second conveying belt, the cut cloth is wound, and the cut underwear shape falls into the collecting box; S5, the cut underwear front and back is sewn together, and the side seam is also sewn together, completing the production of underwear; The top end of the bottom plate is connected with a conveying frame through bolts, one end of the conveying frame is provided with a conveying and recycling mechanism, and the conveying and recycling mechanism comprises a rack; The top end of the bottom plate is connected with a rack through bolts, one end of the rack is movably installed with a winding rod, the outer sides of both ends of the winding rod are connected with a baffle through threads, one end of the rack is connected with a traction motor through a mounting plate, and the outer side of the output shaft of the traction motor and the outer side of one winding rod are fixedly connected with a transmission gear ring; The inner wall of the conveying frame is symmetrically connected with a rotating drum, and the outer sides of both rotating drums are fixedly connected with a first conveying belt, one side of the top end of the conveying frame is symmetrically connected with a top frame, the top ends of both top frames are movably connected with slide rods, the bottom ends of both slide rods are connected with slide blocks, and the slide blocks are movably connected with a clamp roll between them, the outer sides of the slide blocks and the top frame are connected with tension springs, the inner wall of the rack is movably connected with a transmission rod, the outer side of the transmission rod and the outer side of the rotating shaft of one rotating drum are symmetrically connected with a transmission gear on both sides of the conveying frame, the outer sides of both transmission rods and the outer sides of both rotating shafts of the clamp roll are fixedly connected with transmission wheels, and the outer sides of both transmission wheels on the same side are connected with an elastic gear belt, one side of the rack is connected with a rotary motor through a mounting plate; The bottom end of the conveying frame is connected with a bottom frame through bolts, the bottom end of the bottom frame is connected with a top rod through threads, the top end of the top rod is movably connected with a movable block at the inner position of the bottom frame, the ends of the three movable blocks on the same side are connected with baffles through bolts, a rotating rod is movably connected between the two baffles, the outer side of the rotating rod is fixedly connected with a second conveying belt, and the other side of the top end of the conveying frame is connected with a collecting box.

2. The method of claim 1, wherein the functional shapewear is made of a bio- material. The top end of the rack is provided with a clamping groove, and the one end of the rack is provided with a clamping groove.

3. The method of claim 1, wherein the functional shapewear is made of a bio- material. The two ends of the sliding block are slidably connected with the inner wall of the top frame, the outer side of the clamping roller is uniformly provided with anti-skid lines, and the two transmission gears on the same side are meshed with each other.

4. The method of claim 1, wherein the functional shapewear is made of a bio- material. The inner wall of the two transmission wheels and the outer side of the elastic gear belt are equally provided with tooth grooves, the two ends of the transmission rod penetrate through the two ends of the rack, one end of the transmission rod is clamped with one end of the output shaft of the rotary motor, the traction motor and the rotary motor are powered by an external power supply, and the traction motor and the rotary motor are controlled by a control switch.

5. The method of claim 1, wherein the functional shapewear is made of a bio- material. The bottom end of the top rod is clamped with a knob, the two ends of the movable block are slidably connected with the inner wall of the bottom frame, and the outer diameter of the second conveying belt is greater than the height of the baffle.

6. The method of claim 1, wherein the functional shapewear is made of a bio- material. The top end of the conveying frame is provided with a cutting and tightening wrinkle prevention mechanism, and the cutting and tightening wrinkle prevention mechanism comprises a frame. The middle positions of the two ends of the conveying frame are both connected with frames through bolts, the inner walls of the two frames are both connected with electric telescopic rods through bolts at one side positions, the one ends of the two electric telescopic rods are both connected with push blocks through bolts at corresponding inner positions of the frames, the top ends of the two push blocks are both clamped with gantry frames, the top end of the gantry frame is provided with a groove, the inside of the groove is rotatably connected with an adjusting rod, the outside of the adjusting rod is sleeved with a translation plate through threads at a corresponding inner position of the groove, the bottom end of the translation plate is symmetrically connected with electric push rods through bolts, the bottom ends of the two electric push rods are both connected with cutting machines through bolts, the two ends of the gantry frame are both symmetrically clamped with protrusions, the inside of the protrusion is movably connected with a pressing rod, and the bottom ends of the two pressing rods on the same side are both clamped with concave plates, the corresponding outer positions of the pressing rods between the concave plates and the protrusions are both clamped with return springs, the inside of the concave plate is rotatably connected with a pressing roller, and the one side position of the gantry frame corresponding to the one side position of the adjusting rod is connected with a driving motor through a bolt. The top end of the conveying frame is provided with a cutting and tightening wrinkle prevention mechanism, and the cutting and tightening wrinkle prevention mechanism comprises a frame.

7. The method for manufacturing a biomass functional shaping underwear according to claim 6, characterized in that: The top end of the frame is provided with a rectangular groove at a position corresponding to the outer side of the gantry frame, the outer side of the translation plate is slidably connected with the inner wall of the groove, the driving motor, the cutting machine, the electric push rod and the electric telescopic rod are all powered by an external power supply, and the cutting machine is a laser cutting.

8. The method of claim 6, wherein the functional shapewear is made of a bio- material. The top end of the screw rod is clamped with a knob, the top end of the vertical rod is clamped with a baffle, the outer sides of the two guide rollers are provided with anti-skid lines, and the lengths of the two guide rollers and the length of the tightening roller are equal to the width of the first conveying belt. The top end of the screw rod is clamped with a knob, the top end of the vertical rod is clamped with a baffle, the outer sides of the two guide rollers are provided with anti-skid lines, and the lengths of the two guide rollers and the length of the tightening roller are equal to the width of the first conveying belt.

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