Cloth tie-dyeing and drying device and method

By combining the shaking and smoothing components with the drying components, the problem of wrinkles in the fabric during the tie-dyeing process was solved, achieving uniform drying of the fabric and high-quality finished products.

CN121653923APending Publication Date: 2026-03-13MIANYANG GANLION PRINTING & DYEING +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-04
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing fabric tie-dye drying equipment is prone to uneven heating of the fabric surface during the drying process, resulting in wrinkles and affecting product quality.

Method used

The tie-dyed fabric is shaken and straightened using a shaking and straightening component, combined with the even delivery of hot air from the drying component to ensure that the fabric is laid flat and dried evenly.

Benefits of technology

It effectively eliminates wrinkles on the fabric surface, ensures uniform drying, and improves product quality and work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of cloth tie-dyeing processing, particularly relates to a cloth tie-dyeing and drying device and method, and provides the following scheme aiming at the problem that dehydrated cloth has a large number of creases: the cloth tie-dyeing and drying device comprises a machine room, and an observation door is arranged on one side of the machine room; the two shaking and smoothing assemblies are oppositely arranged in the machine bin, and the shaking and smoothing assemblies are used for shaking and spreading the dehydrated tie-dyed cloth and smoothing and straightening the dehydrated tie-dyed cloth. According to the cloth tie-dyeing and drying device and method, the creased and curled tie-dyed cloth is firstly shaken to be scattered in the shaking and smoothing assembly to be flatly laid and stretched, so that primary wrinkle removal is conducted on the tie-dyed cloth, then the surface of the tie-dyed cloth is smoothed and straightened through the two smoothing rods, and wrinkles on the surface of the tie-dyed cloth are eliminated; the problems that in the subsequent drying process, due to wrinkles generated by dehydration, the surface of the cloth is possibly dried unevenly, and the dried cloth is full of the wrinkles are avoided, the product quality is guaranteed, and meanwhile the working efficiency is improved.
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Description

Technical Field

[0001] This invention relates to the field of fabric tie-dyeing technology, and in particular to a fabric tie-dyeing drying device and method. Background Technology

[0002] Tie-dyeing is a traditional handicraft that involves binding, sewing, or folding fabric and then dyeing it to create unique patterns and textures. It is mainly used to create personalized clothing, home decorations, and artworks to enhance aesthetics and artistic expression. Its applications are wide-ranging, covering fashion design, home décor, handicraft production, cultural displays, and festivals.

[0003] When drying the dehydrated tie-dyed fabric, the fabric drying device simply hangs the dehydrated tie-dyed fabric inside the device. During the drying process, the wrinkles on the fabric surface caused by dehydration may lead to uneven drying, and the dried fabric will be full of wrinkles, affecting product quality. Summary of the Invention

[0004] This invention discloses a fabric tie-dye drying device and method, aiming to solve the technical problems in the prior art where existing drying devices simply hang the dehydrated tie-dye fabric to dry, which easily causes wrinkles in the fabric during drying, resulting in uneven heating, wrinkled finished products, and affecting quality.

[0005] The present invention provides a fabric tie-dye drying device, comprising: The cabin has an observation door on one side; Shaking and straightening components: Two shaking and straightening components are arranged opposite each other inside the machine compartment. The shaking and straightening components are used to shake and straighten the dehydrated tie-dyed fabric. The drying unit, located inside the machine compartment, is used to dry the tie-dyed fabric.

[0006] In a preferred embodiment, the shaking and smoothing component includes: Two rotating shafts are connected to the corresponding rotating holes on the upper side of the machine compartment via bearings. The movement of the two rotating shafts inside the machine compartment is fixedly connected to the groove plates. The outer wall of one end of the two rotating shafts on the upper side of the machine compartment is provided with the same uniform transmission belt. A rotary motor is fixedly connected to the upper side of the machine compartment, and the drive end of the rotary motor is connected to one end of one of the rotating shafts via a coupling; Two actuating shafts are connected to the upper side of the mounting slot plate via bearings.

[0007] In a preferred embodiment, the shaking and smoothing component further includes: Two toggle plates are fixedly connected to the outer wall of the corresponding toggle shaft; A fixed sleeve is fixedly connected to the upper side of the groove plate. One end of the rotating shaft is located inside the fixed sleeve. The outer wall of the fixed sleeve is connected to the rotating shaft through a bearing. The rotating shaft and one of the actuating shafts are provided with the same shaking transmission belt on their outer walls. The brake gear is sleeved on the outer wall of the fixed sleeve, and the lower side of the brake gear is fixedly connected to the upper side of the rotating sleeve shaft. The driven gear is fixedly connected to the outer wall of another actuating shaft, and the driven gear meshes with the brake gear.

[0008] In a preferred embodiment, the shaking and smoothing component further includes: The shaking motor is fixedly connected to the upper side of the set slot plate, and the drive end of the shaking motor is connected to one end of one of the actuating shafts through a coupling. Two fixing plates are fixedly connected to the lower side of the groove plate, and two fixing rods are fixedly connected at equal intervals on opposite sides of the two fixing plates.

[0009] In a preferred embodiment, the shaking and smoothing component further includes: The shaking plate has two fixed rods slidingly connected to its outer wall. Two contact plates are fixedly connected to the upper side of the shaking plate. The two contact plates slide inside the corresponding sliding groove holes of the groove plate. A set of shaking springs is provided, with multiple shaking springs sleeved on the outer wall of the corresponding fixed rod. One end of each shaking spring is fixedly connected to the corresponding fixed plate, and the other end of each shaking spring is fixedly connected to the shaking plate.

[0010] In a preferred embodiment, the shaking and smoothing component further includes: The rotating plates are spread out and multiple spreading plates are fixedly connected to the outer walls of both ends of the shaking plate. The two spreading plates located at the same end of the shaking plate are connected to the same spreading plate through bearings. Clamping plates, two clamping plates are set opposite to each other on the underside of the shaking plate. One clamping plate is fixedly connected to the underside of the shaking plate, and the other clamping plate is slidably connected to the sliding groove opened on the underside of the shaking plate. Inclined blocks are fixedly connected to both ends of the two clamping plates, and the two inclined blocks on the same side are set opposite to each other. A set of limiting rods are fixedly connected at equal intervals to one side of one of the clamping plates. Another clamping plate is fitted onto the outer wall of the set of limiting rods. Each of the outer walls of the set of limiting rods is fitted with a compression spring. One end of each compression spring is fixedly connected to the inner wall of one end of the corresponding set of limiting rods. The other end of each compression spring is fixedly connected to the outer wall of another clamping plate.

[0011] In a preferred embodiment, the shaking and smoothing component further includes: The rotating base is fixedly connected to the inner wall of the lower end of the machine compartment, and a rotating plate is connected to the upper side of the rotating base through a bearing; Connecting plates, multiple connecting plates are respectively set on the outer wall of the groove plate and the rotating plate at equal intervals. Two sets of opposite connecting plates are respectively fixedly connected to two sliding rods on one side. Two sets of opposite connecting plates are respectively connected to two lead screws on one side through bearings. The upper outer wall of the two lead screws is provided with the same smoothing transmission belt. The straightening motor is fixedly connected to the upper side of one of the connecting plates, and the drive end of the straightening motor is connected to one end of one of the lead screws through a coupling.

[0012] In a preferred embodiment, the shaking and smoothing component further includes: Two sliding plates are respectively sleeved on the outer walls of the corresponding lead screw and sliding rod. Two straightening telescopic rods are respectively set on the opposite sides of the two sliding plates. The telescopic ends of the two straightening telescopic rods located on the same sliding plate pass through the sliding plate and are connected to the same U-shaped slide groove plate. A U-shaped setting plate is slidably connected inside the U-shaped slide groove plate. One end of multiple straightening springs is fixedly connected at equal intervals on the side of the U-shaped setting plate near the U-shaped slide groove plate. The other ends of the multiple straightening springs are fixedly connected to the U-shaped slide groove plate. Straightening rods are connected inside the U-shaped setting plate through bearings.

[0013] In a preferred embodiment, the drying assembly includes: The limiting air pipes are inserted at equal intervals into the corresponding fixing holes on the outer wall of the machine compartment. The outer wall of one end of the multiple limiting air pipes inside the machine compartment is slidably connected to the same drying chamber. A uniform air plate is fixedly connected to one side of the drying chamber. Multiple uniform air holes are opened at equal intervals on one side of the uniform air plate. Spacing telescopic rods: Multiple spacing telescopic rods are installed on one side of the machine compartment, and the telescopic ends of the multiple spacing telescopic rods pass through the outer wall of the machine compartment and are fixedly connected to the drying chamber; The dryer is located on the upper side of the machine compartment. One end of the air supply pipe is located on one side of the dryer, and the other end of the air supply pipe is connected to the air distribution pipe. The multiple air outlets of the air distribution pipe are respectively connected to the interior of the corresponding limiting air pipe.

[0014] A method of using a fabric tie-dye drying device, comprising the following steps: Step 1: When drying the tie-dyed fabric, the staff first fix one end of the dehydrated tie-dyed fabric inside the shaking and smoothing component using two clamps. Step 2: First, shake the wrinkled and curled tie-dye fabric with the shaking and smoothing component to make it flat and smooth, thus performing the initial wrinkle removal. Then, straighten and smooth the tie-dye fabric with two smoothing rods to eliminate wrinkles. Step 3: The tie-dyed fabric is dried using the drying assembly. The rotation of the shaking and smoothing assembly can also help to dry the fabric more thoroughly, improve the uniformity of drying, and ensure product quality.

[0015] As can be seen from the above, the fabric tie-dye drying device provided by the present invention utilizes a shaking and smoothing component to first shake and smooth the wrinkled and curled tie-dye fabric so that it is laid flat and stretched out, thereby performing initial wrinkle removal on the tie-dye fabric. Subsequently, two smoothing rods are used to smooth and straighten the surface of the tie-dye fabric, thereby eliminating the wrinkles on its surface. This avoids the possibility that wrinkles caused by dehydration on the fabric surface during the subsequent drying process may lead to uneven drying and a fabric full of wrinkles after drying, thus ensuring product quality while improving work efficiency. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of a fabric tie-dye drying device proposed in this invention; Figure 2 This is a schematic diagram of the internal structure of a fabric tie-dye drying device proposed in this invention; Figure 3 This is a schematic diagram of the overall structure of the shaking and smoothing component of a fabric tie-dye drying device proposed in this invention; Figure 4 This is an exploded structural diagram of the shaking and smoothing component of a fabric tie-dye drying device proposed in this invention; Figure 5 This is an exploded structural diagram of the shaking and smoothing component in a fabric tie-dye drying device proposed in this invention; Figure 6 This is an exploded structural diagram of the U-shaped chute plate of the shaking and smoothing component of a fabric tie-dye drying device proposed in this invention; Figure 7 This is a schematic diagram of the overall structure of the drying component of a fabric tie-dye drying device proposed in this invention; In the diagram: 1. Observation door; 2. Shaking and smoothing assembly; 201. Rotary motor; 202. Evenly drying transmission belt; 203. Rotating shaft; 204. Brake gear; 205. Setting groove plate; 206. Sliding rod; 207. Rotating shaft chassis; 208. Rotating plate; 209. Connecting plate; 210. Smoothing telescopic rod; 211. Sliding plate; 212. Lead screw; 213. Smoothing transmission belt; 214. Smoothing motor; 215. Fixed sleeve; 216. Shaking transmission belt; 217. Shaking motor; 218. Fixed plate; 219. Rotating sleeve shaft; 220. Actuating plate; 221. Driven gear 222. Wheel; 223. Actuating shaft; 224. Shaking spring; 225. Spreading plate; 226. Fixing rod; 227. Compression spring; 228. Shaking plate; 229. Contact plate; 230. Inclined block; 231. Clamping plate; 232. Limiting rod; 233. Straightening rod; 234. U-shaped sliding plate; 235. U-shaped setting plate; 236. Straightening spring; 3. Drying assembly; 301. Dryer; 302. Spacing telescopic rod; 303. Air supply pipe; 304. Air distribution pipe; 305. Limiting air pipe; 306. Drying chamber; 307. Air distribution plate; 4. Machine compartment. Detailed Implementation

[0017] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0018] The fabric tie-dye drying device disclosed in this invention is mainly used for tie-dye fabrics that have been simply hung and dehydrated by existing drying devices. During the drying process, the fabric is prone to wrinkles, resulting in uneven heating and finished products covered with wrinkles, which affects the quality.

[0019] Reference Figure 1 and Figure 2 A fabric tie-dye drying device, comprising: The aircraft compartment 4 has an observation door 1 on one side; Shaking and straightening component 2: Two shaking and straightening components 2 are arranged opposite each other inside the machine compartment 4. The shaking and straightening components 2 are used to shake and straighten the dehydrated tie-dyed fabric. The drying component 3 is located inside the machine compartment 4 and is used to dry the tie-dyed fabric.

[0020] Reference Figures 1-6 In a preferred embodiment, the shaking and smoothing component 2 includes: Two rotating shafts 203 are respectively connected to the corresponding rotating holes on the upper side of the machine compartment 4 via bearings. The movement of the two rotating shafts 203 inside the machine compartment 4 is respectively fixedly connected to the grooved plate 205. The same uniform transmission belt 202 is provided on the outer wall of one end of the two rotating shafts 203 on the upper side of the machine compartment 4. A rotary motor 201 is fixedly connected to the upper side of the machine compartment 4, and the drive end of the rotary motor 201 is connected to one end of one of the rotary shafts 203 via a coupling. Two actuating shafts 222 are connected to the upper side of the mounting slot plate 205 via bearings.

[0021] In this invention, the shaking and smoothing component 2 further includes: Two toggle plates 220 are fixedly connected to the outer wall of the corresponding toggle shaft 222; A fixed sleeve 215 is fixedly connected to the upper side of the groove plate 205. One end of the rotating shaft 203 is located inside the fixed sleeve 215. The outer wall of the fixed sleeve 215 is connected to the rotating sleeve shaft 219 through a bearing. The rotating sleeve shaft 219 and the outer wall of one of the actuating shafts 222 are provided with the same shaking transmission belt 216. Brake gear 204 is sleeved on the outer wall of fixed sleeve 215, and the lower side of brake gear 204 is fixedly connected to the upper side of rotating sleeve shaft 219. Driven gear 221 is fixedly connected to the outer wall of another actuating shaft 222, and driven gear 221 meshes with brake gear 204.

[0022] In this invention, the shaking and smoothing component 2 further includes: The shaking motor 217 is fixedly connected to the upper side of the setting slot plate 205, and the drive end of the shaking motor 217 is connected to one end of one of the actuating shafts 222 through a coupling. Two fixing plates 218 are fixedly connected to the lower side of the groove plate 205, and two fixing rods 226 are fixedly connected at equal intervals on opposite sides of the two fixing plates 218.

[0023] In this invention, the shaking and smoothing component 2 further includes: The shaking plate 228 is slidably connected to the outer wall of two fixed rods 226. Two contact plates 229 are fixedly connected to the upper side of the shaking plate 228. The two contact plates 229 slide in the corresponding sliding groove holes of the groove plate 205. Shaking spring 223, multiple shaking springs 223 are sleeved on the outer wall of the corresponding fixed rod 226, one end of the multiple shaking springs 223 is fixedly connected to the corresponding fixed plate 218, and the other end of the multiple shaking springs 223 is fixedly connected to the shaking plate 228.

[0024] In this invention, the shaking and smoothing component 2 further includes: Spreading rotating plates 225, multiple spreading rotating plates 225 are respectively fixedly connected to the outer walls of both ends of the shaking plate 228, and the interiors of two spreading rotating plates 225 located at the same end of the shaking plate 228 are connected to the same spreading plate 224 through bearings; Clamping plate 231, two clamping plates 231 are arranged opposite to each other on the lower side of the shaking plate 228, one clamping plate 231 is fixedly connected to the lower side of the shaking plate 228, and the other clamping plate 231 is slidably connected to the sliding groove correspondingly opened on the lower side of the shaking plate 228. Inclined blocks 230 are fixedly connected to both ends of the two clamping plates 231 respectively, and the two inclined blocks 230 located on the same side are arranged opposite to each other. Limiting rods 232 are fixedly connected at equal intervals to one side of one clamping plate 231. Another clamping plate 231 is sleeved on the outer wall of the multiple limiting rods 232. Compression springs 227 are respectively sleeved on the outer wall of the multiple limiting rods 232. One end of the multiple compression springs 227 is fixedly connected to the inner wall of one end of the corresponding limiting rod 232, and the other end of the multiple compression springs 227 is fixedly connected to the outer wall of another clamping plate 231.

[0025] In this invention, the shaking and smoothing component 2 further includes: The rotating base 207 is fixedly connected to the lower inner wall of the machine compartment 4, and the upper side of the rotating base 207 is connected to the rotating plate 208 through the bearing; Connecting plates 209, multiple connecting plates 209 are respectively set at equal intervals on the outer wall of the groove plate 205 and the rotating plate 208. Two sets of opposite connecting plates 209 are respectively fixedly connected to two sliding rods 206 on one side. Two sets of opposite connecting plates 209 are respectively connected to two lead screws 212 on one side through bearings. The upper outer wall of the two lead screws 212 is provided with the same smoothing transmission belt 213. The straightening motor 214 is fixedly connected to the upper side of one of the connecting plates 209, and the drive end of the straightening motor 214 is connected to one end of one of the lead screws 212 through a coupling.

[0026] In this invention, the shaking and smoothing component 2 further includes: Two sliding plates 211 are respectively sleeved on the outer walls of the corresponding lead screw 212 and sliding rod 206. Two straightening telescopic rods 210 are respectively provided on the opposite sides of the two sliding plates 211. The telescopic ends of the two straightening telescopic rods 210 located on the same sliding plate 211 pass through the sliding plate 211 and are connected to the same U-shaped slide plate 234. A U-shaped setting plate 235 is slidably connected inside the U-shaped slide plate 234. One end of a plurality of straightening springs 236 is fixedly connected at equal intervals on the side of the U-shaped setting plate 235 near the U-shaped slide plate 234. The other end of the plurality of straightening springs 236 is fixedly connected to the U-shaped slide plate 234. A straightening rod 233 is connected inside the U-shaped setting plate 235 through a bearing.

[0027] During the drying process, the shaking motor 217 rotates one of the actuating shafts 222. Then, through the action of the shaking transmission belt 216, the brake gear 204, and the driven gear 221, both actuating shafts 222 rotate simultaneously and in opposite directions. This causes the two actuating plates 220 to intermittently press and actuate the corresponding contact plates 229, causing the contact plates 229 to slide along the groove holes of the grooved plate 205. Under this action, the shaking plate 228 drives the two clamping plates 231 and the tie-dyed fabric on them to slide along the fixed rod 226. Due to the intermittent actuation of the actuating plate 220 and the action of the shaking springs 223 on both sides of the shaking plate 228, the actuating plate 220 slides back and forth along the fixed rod 226, thus shaking and spreading the tie-dyed fabric to make it flat and smooth, thereby performing the initial wrinkle removal effect. To improve the wrinkle-removing effect during subsequent straightening, the straightening motor 214, in conjunction with the straightening transmission belt 213, rotates the two lead screws 212, causing the two sliding plates 211 to move along the corresponding sliding rods 206. Simultaneously, multiple straightening telescopic rods 210 cause the two straightening rods 233 to press against both sides of the tie-dyed fabric. As they move, the two straightening rods 233 straighten and smooth the surface of the tie-dyed fabric, thereby eliminating wrinkles on its surface. This prevents uneven drying and wrinkles caused by dehydration during the subsequent drying process, ensuring product quality while improving work efficiency. Furthermore, because the straightening rods 233 make rolling contact with the fabric surface and are supported by multiple straightening springs 236, the wrinkle-removing effect is ensured while preventing the fabric from falling off due to friction.

[0028] Reference Figure 1 , Figure 2 and Figure 7 In a preferred embodiment, the drying assembly 3 includes: A limiting air pipe 305 is inserted at equal intervals into the corresponding fixing holes on the outer wall of the machine compartment 4. The outer wall of one end of the multiple limiting air pipes 305 inside the machine compartment 4 is slidably connected to the same drying chamber 306. A uniform air plate 307 is fixedly connected to one side of the drying chamber 306. A plurality of uniform air holes are opened at equal intervals on one side of the uniform air plate 307. Spacing telescopic rods 302, multiple spacing telescopic rods 302 are arranged on one side of the machine compartment 4, and the telescopic ends of the multiple spacing telescopic rods 302 pass through the outer wall of the machine compartment 4 and are fixedly connected to the drying chamber 306; Dryer 301 is located on the upper side of machine compartment 4. One end of air supply pipe 303 is provided on one side of dryer 301, and the other end of air supply pipe 303 is connected to air distribution pipe 304. Multiple air outlets of air distribution pipe 304 are respectively connected to the interior of corresponding limiting air pipe 305.

[0029] During the drying process, the hot air generated by the dryer 301 is transported to the interior of the air distribution pipe 304 through the air supply pipe 303, and then transported to the interior of the drying chamber 306 through multiple limiting air pipes 305 via the air distribution pipe 304. The hot air is then evenly transported to the fabric surface through the air distribution plate 307. During this process, the distance between the drying chamber 306 and the fabric can be adjusted by multiple spacing telescopic rods 302, thereby adapting to the drying of fabrics of different thicknesses.

[0030] A method of using a fabric tie-dye drying device, comprising the following steps: Step 1: When drying the tie-dyed fabric, the worker first fixes one end of the dehydrated tie-dyed fabric inside the shaking and smoothing component 2 using two clamps 231 (during this process, the two opening plates 224 are first rotated to pry open the corresponding two inclined blocks 230, so that one of the sliding clamps 231 moves against the action of the compression spring 227, thereby opening the two clamps 231. Then, one end of the dehydrated tie-dyed fabric is placed between the two clamps 231, and then the opening plate 224 is rotated again to move away from the corresponding two inclined blocks 230, so that the two clamps 231 clamp one end of the tie-dyed fabric). Step 2: The wrinkled and curled tie-dyed fabric is first shaken and smoothed out by the shaking and smoothing component 2, thus performing the initial wrinkle removal. (During this process, the shaking motor 217 then rotates one of the actuating shafts 222. Subsequently, through the action of the shaking transmission belt 216, the brake gear 204, and the driven gear 221, the two actuating shafts 222 rotate simultaneously and in opposite directions, causing the two actuating plates 220 to intermittently press and actuate the corresponding contact plates 229.) This causes the contact plate 229 to slide along the groove hole of the groove plate 205. Under this action, the shaking plate 228 drives the two clamping plates 231 and the tie-dyed fabric on them to slide along the fixed rod 226. Due to the intermittent agitation of the agitator plate 220 and the action of the shaking springs 223 on both sides of the shaking plate 228, the agitator plate 220 slides back and forth along the fixed rod 226, thereby shaking the tie-dyed fabric to make it flat and smooth, thus performing the initial wrinkle removal. (This improves the wrinkle-removing effect during subsequent straightening.) Then, the tie-dyed fabric is straightened and smoothed using two straightening rods 233, thereby eliminating wrinkles. (During this process, the straightening motor 214, combined with the straightening transmission belt 213, causes the two screws 212 to rotate, thereby moving the two sliding plates 211 along the corresponding sliding rods 206. Simultaneously, multiple straightening telescopic rods 210 cause the two straightening rods 233 to simultaneously press the two sides of the tie-dyed fabric, while following the movement...) Two straightening rods 233 straighten and smooth the surface of the tie-dyed fabric, eliminating wrinkles and preventing uneven drying and wrinkled fabric after drying due to dehydration. This ensures product quality and improves work efficiency. Furthermore, because the straightening rods 233 roll in contact with the fabric surface and multiple straightening springs 236 ensure wrinkle removal while preventing fabric from slipping due to friction. Step 3: The tie-dyed fabric is dried using the drying assembly 3. (During this process, the hot air generated by the dryer 301 is transported to the interior of the air distribution pipe 304 through the air supply pipe 303, and then transported to the interior of the drying chamber 306 through multiple limiting air pipes 305 via the air distribution pipe 304. The hot air is then evenly transported to the fabric surface by the air distribution plate 307. During this process, the distance between the drying chamber 306 and the fabric can be adjusted by multiple spacing telescopic rods 302 to accommodate fabrics of different thicknesses.) At the same time, the rotation of the shaking and smoothing assembly 2 can make the tie-dyed fabric more thoroughly dried, improve the uniformity of drying, and ensure product quality. (During this process, the rotation motor 201, combined with the uniform drying transmission belt 202, causes the two rotating shafts 203 to drive the two shaking and smoothing assemblies 2 to make the fabric rotate, thereby making the tie-dyed fabric more thoroughly dried, improving the uniformity of drying, and ensuring product quality.)

[0031] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A fabric tie-dye drying device, characterized in that, include: The cabin (4) has an observation door (1) on one side. Shaking and straightening components (2): Two shaking and straightening components (2) are arranged opposite to each other inside the machine compartment (4). The shaking and straightening components (2) are used to shake and straighten the dehydrated tie-dyed fabric. The drying component (3) is located inside the machine compartment (4) and is used to dry the tie-dyed fabric.

2. The fabric tie-dye drying device according to claim 1, characterized in that, The shaking and smoothing component (2) includes: Two rotating shafts (203) are respectively connected to the rotating holes opened on the upper side of the machine compartment (4) by bearings. The two rotating shafts (203) are respectively fixedly connected to the groove plate (205) for movement inside the machine compartment (4). The same uniform transmission belt (202) is provided on the outer wall of one end of the two rotating shafts (203) on the upper side of the machine compartment (4). A rotary motor (201) is fixedly connected to the upper side of the machine compartment (4), and the drive end of the rotary motor (201) is connected to one end of one of the rotating shafts (203) through a coupling; Two actuating shafts (222) are connected to the upper side of the mounting slot plate (205) via bearings.

3. The fabric tie-dye drying device according to claim 2, characterized in that, The shaking and smoothing component (2) also includes: A toggle plate (220), two toggle plates (220) are respectively fixedly connected to the outer wall of the corresponding toggle shaft (222); A fixed sleeve (215) is fixedly connected to the upper side of the groove plate (205). One end of the rotating shaft (203) is located inside the fixed sleeve (215). The outer wall of the fixed sleeve (215) is connected to the rotating sleeve shaft (219) through a bearing. The rotating sleeve shaft (219) and one of the actuating shafts (222) are provided with the same shaking transmission belt (216). Brake gear (204) is sleeved on the outer wall of fixed sleeve (215), and the lower side of brake gear (204) is fixedly connected to the upper side of rotating sleeve shaft (219); Driven gear (221) is fixedly connected to the outer wall of another actuating shaft (222), and driven gear (221) meshes with brake gear (204).

4. The fabric tie-dye drying device according to claim 3, characterized in that, The shaking and smoothing component (2) also includes: The shaking motor (217) is fixedly connected to the upper side of the setting slot plate (205), and the driving end of the shaking motor (217) is connected to one end of one of the actuating shafts (222) through a coupling; Fixed plates (218) are fixedly connected to the lower side of the groove plate (205) and two fixed rods (226) are fixedly connected at equal intervals on opposite sides of the two fixed plates (218).

5. A fabric tie-dye drying device according to claim 4, characterized in that, The shaking and smoothing component (2) also includes: The shaking plate (228) is slidably connected to the outer wall of two fixed rods (226). Two contact plates (229) are fixedly connected to the upper side of the shaking plate (228). The two contact plates (229) slide in the corresponding sliding groove holes of the groove plate (205); Shaking spring (223), multiple shaking springs (223) are sleeved on the outer wall of the corresponding fixed rod (226), one end of the multiple shaking springs (223) is fixedly connected to the corresponding fixed plate (218), and the other end of the multiple shaking springs (223) is fixedly connected to the shaking plate (228).

6. A fabric tie-dye drying device according to claim 5, characterized in that, The shaking and smoothing component (2) also includes: Spreading rotating plates (225) are fixedly connected to the outer walls of both ends of the shaking plate (228). The interiors of two spreading rotating plates (225) located at the same end of the shaking plate (228) are connected to the same spreading plate (224) through bearings. Clamping plate (231), two clamping plates (231) are arranged opposite to each other on the lower side of the shaking plate (228), one clamping plate (231) is fixedly connected to the lower side of the shaking plate (228), and the other clamping plate (231) is slidably connected to the sliding groove correspondingly opened on the lower side of the shaking plate (228). Two inclined blocks (230) are fixedly connected to the two ends of the two clamping plates (231), and the two inclined blocks (230) located on the same side are arranged opposite to each other; Limiting rods (232) are fixedly connected at equal intervals to one side of one clamping plate (231). Another clamping plate (231) is sleeved on the outer wall of the multiple limiting rods (232). Compression springs (227) are respectively sleeved on the outer wall of the multiple limiting rods (232). One end of the multiple compression springs (227) is fixedly connected to the inner wall of one end of the corresponding limiting rod (232), and the other end of the multiple compression springs (227) is fixedly connected to the outer wall of another clamping plate (231).

7. A fabric tie-dye drying device according to claim 6, characterized in that, The shaking and smoothing component (2) also includes: A rotating base (207) is fixedly connected to the lower inner wall of the machine compartment (4), and a rotating plate (208) is connected to the upper side of the rotating base (207) via a bearing. Connecting plates (209) are provided at equal intervals on the outer walls of the groove plate (205) and the rotating plate (208). Two sets of opposite connecting plates (209) are fixedly connected to two sliding rods (206) on opposite sides. Two sets of opposite connecting plates (209) are connected to two lead screws (212) on opposite sides via bearings. The upper outer walls of the two lead screws (212) are provided with the same straightening transmission belt (213). The straightening motor (214) is fixedly connected to the upper side of one of the connecting plates (209), and the drive end of the straightening motor (214) is connected to one end of one of the lead screws (212) through a coupling.

8. A fabric tie-dye drying device according to claim 7, characterized in that, The shaking and smoothing component (2) also includes: Sliding plates (211) are respectively sleeved on the outer walls of the corresponding lead screw (212) and sliding rod (206). Two straightening telescopic rods (210) are respectively provided on the opposite sides of the two sliding plates (211). The telescopic ends of the two straightening telescopic rods (210) located on the same sliding plate (211) pass through the sliding plate (211) and are connected to the same U-shaped slide plate (234). A U-shaped setting plate (235) is slidably connected inside the U-shaped slide plate (234). One end of a plurality of straightening springs (236) is fixedly connected at equal intervals on the side of the U-shaped setting plate (235) close to the U-shaped slide plate (234). The other end of the plurality of straightening springs (236) is fixedly connected to the U-shaped slide plate (234). A straightening rod (233) is connected inside the U-shaped setting plate (235) through a bearing.

9. A fabric tie-dye drying device according to claim 1, characterized in that, The drying assembly (3) includes: A limiting air pipe (305) is inserted at equal intervals into the corresponding fixing holes on the outer wall of the machine compartment (4). The outer wall of one end of the multiple limiting air pipes (305) inside the machine compartment (4) is slidably connected to the same drying chamber (306). A uniform air plate (307) is fixedly connected to one side of the drying chamber (306). A plurality of uniform air holes are opened at equal intervals on one side of the uniform air plate (307). Spacing telescopic rods (302) are provided on one side of the machine compartment (4), and the telescopic ends of the multiple spacing telescopic rods (302) pass through the outer wall of the machine compartment (4) and are fixedly connected to the drying chamber (306); The dryer (301) is located on the upper side of the machine compartment (4). One end of the air supply pipe (303) is provided on one side of the dryer (301), and the other end of the air supply pipe (303) is connected to the air distribution pipe (304). Multiple air outlets of the air distribution pipe (304) are respectively connected to the interior of the corresponding limiting air pipe (305).

10. A method of using a fabric tie-dye drying device, comprising using a fabric tie-dye drying device as described in claim 9, characterized in that, Includes the following steps: Step 1: When drying the tie-dyed fabric, the staff first fix one end of the dehydrated tie-dyed fabric inside the shaking and smoothing component (2) using two clamps (231); Step 2: First, shake the wrinkled tie-dyed fabric with the shaking and smoothing component (2) to make it flat and smooth, thereby removing the wrinkles for the first time. Then, straighten and smooth the tie-dyed fabric with two smoothing rods (233) to eliminate the wrinkles. Step 3: The tie-dyed fabric is dried by the drying component (3). At the same time, the tie-dyed fabric can be dried more thoroughly by the rotation of the shaking and smoothing component (2), which improves the uniformity of drying and ensures product quality.