Processing device for double-layered terry fabric

By designing a chenille double-layer wrinkled fabric processing device, the problems of incomplete fabric cleaning and weak pressing were solved, achieving fabric surface cleaning and rapid cooling, thereby improving production efficiency and fabric quality.

CN224392132UActive Publication Date: 2026-06-23ZHEJIANG RAYLON TEXTILE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG RAYLON TEXTILE TECH CO LTD
Filing Date
2025-08-18
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

If the chenille fabric is not thoroughly cleaned before pressing, the pressing will not be strong and it will easily crack. The high temperature after pressing will affect subsequent processing and will not be able to cool down quickly.

Method used

A processing device for chenille double-layer wrinkled fabric was designed, comprising a cleaning frame, a pressing frame, a glue spraying system, an extrusion component, and a blowing component. The dust on the fabric surface is cleaned by the dust suction component, glue is sprayed by the glue spraying pump, the fabric is pressed by the pressing motor, the extrusion component performs secondary pressing, and the blowing component cools the fabric.

Benefits of technology

It achieves fabric surface cleaning, improves the pressing effect, reduces the risk of cracking, and improves production efficiency and fabric quality.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224392132U_ABST
    Figure CN224392132U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of fabric processing, and disclose a kind of processing device of chenille double-layer wrinkled fabric, including processing frame, the left cleaning frame and right cleaning frame are sequentially equipped in the side of processing frame from front to back, the upper surface of processing frame is equipped with press frame and lower heating plate, press motor, press screw, press plate, upper heating plate.The utility model structure is reasonable, glue in glue tank is extracted by glue pump rotation, fabric surface is sprayed with glue by the glue nozzle under glue pipe, fabric can be well bonded, reduce fabric cracking when using, the upper heating plate under press plate heats up, the lower heating plate on press frame heats up, press motor makes press plate move downward and press the fabric in press frame and press plate, upper heating plate and lower heating plate heat up to make two different fabrics combine quickly, reduce the incomplete combination of part in two fabrics during pressing, which leads to cracking in later period and affects use.
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Description

Technical Field

[0001] This utility model relates to the field of fabric processing technology, specifically to a processing device for chenille double-layer wrinkled fabric. Background Technology

[0002] Chenille fabric is made by twisting together short fibers or filaments of varying fineness and strength. Due to its full, soft feel, thick yet lightweight texture, it is widely used in home textiles and knitwear, becoming a new highlight in product development. Chenille decorative products can be made into sofa covers, bedspreads, blankets, tablecloths, carpets, wall coverings, curtains, and other interior decorations. In some special cases, chenille fabric needs to be combined with other fabrics in production.

[0003] The current chenille fabric processing and production process simply involves pressing chenille fabric with other fabrics. During the pressing process, dust and debris on the fabric can easily affect the pressing effect. The fabric surface cannot be quickly cleaned before pressing to ensure cleanliness. The pressing is only a single process, which can easily lead to cracking in parts of the fabric due to weak bonding. A second pressing is not possible after a single pressing, making it impossible to guarantee reduced cracking during future use. Excessive pressing temperature can affect the progress of other processing steps. Furthermore, the fabric cannot be cooled down quickly after pressing. Therefore, this utility model is proposed to solve the above problems. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this utility model provides a processing device for chenille double-layer wrinkled fabric, which solves the problems of quickly cleaning the fabric surface before pressing to ensure the surface cleanliness of the fabric, the fabric being easily cracked after a single pressing, and quickly cooling the fabric when performing other treatments.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, this utility model provides the following technical solution: a processing device for chenille double-layer wrinkled fabric, comprising a processing frame, with a left cleaning frame and a right cleaning frame arranged sequentially from front to back on one side of the processing frame; a pressing frame is provided on the upper surface of the processing frame; a lower heating plate is inserted into the upper surface of the pressing frame; a pressing motor is inserted into one side of the upper surface of the pressing frame; a pressing screw is sleeved at one end of the pressing motor; and a pressing plate is slidably connected to the inner side of the pressing frame. An upper heating plate is inserted into the lower surface of the plate. A glue pump is inserted into one side of the processing frame. A glue tank is sleeved at one end of the glue pump. A glue spraying base is inserted into the inside of the processing frame. A glue spraying tube is provided on the upper surface of the glue spraying base. A movable frame is installed on one side of the processing frame. An extrusion assembly and a blowing assembly are arranged sequentially from front to back on the upper surface of the movable frame. A dust collection assembly is inserted into one side of the left cleaning frame. A dust collection push rod is inserted into one side of the dust collection assembly. A cleaning brush is inserted into one side of the dust collection push rod.

[0008] Optionally, the extrusion assembly includes a lower shaft seat, an extrusion push rod, an upper shaft seat, a lower roller shaft, and an upper roller shaft. The extrusion push rod is inserted into the top of one side of the lower shaft seat, and one end of the extrusion push rod is inserted into the upper shaft seat. The lower roller shaft is inserted into the interior of the lower shaft seat, and the upper roller shaft is inserted into the interior of the upper shaft seat.

[0009] Optionally, the blower assembly includes a blower frame, a lower blower base, a fixed frame, a lower blower, an upper blower base, an upper blower, a blower motor, and a blower screw. The lower blower base is inserted into one side of the blower frame, and the fixed frame is sleeved onto one side of the lower blower base. The lower blower is inserted into the upper surface of the lower blower base. The upper blower base is slidably connected to one side of the blower frame. The upper blower is inserted into the interior of the upper blower base. The blower motor is inserted into the interior of the fixed frame, and a blower screw is inserted into one end of the blower motor.

[0010] Optionally, a blower slide groove is provided on one side of the blower frame, a fixing slide groove is provided on one side of the fixing frame, a blower slider is provided on the side of the upper blower seat near the blower frame, a fixing slider is provided on the side of the upper blower seat near the fixing frame, a blower slider is slidably connected inside the blower slide groove, a fixing slider is slidably connected inside the fixing slide groove, a blower motor is inserted into the bottom of the fixing slide groove, and a blower lead screw is threaded through the internal thread of the fixing slider.

[0011] Optionally, the vacuuming assembly includes a vacuuming base, an upper vacuuming pipe, a lower vacuuming pipe, a connecting T-connector, and a vacuum pump. The upper vacuuming pipe is inserted into the upper surface of the vacuuming base, the lower vacuuming pipe is inserted into the lower surface of the vacuuming base, a connecting T-connector is inserted into one side of the upper vacuuming pipe, and a vacuum pump is sleeved on one end of the connecting T-connector.

[0012] Optionally, an upper suction hole is provided on one side of the upper suction pipe, and the upper suction hole of the upper suction pipe is connected and fixed to one end of the connecting T-pipe. A lower suction hole is provided on one side of the lower suction pipe, and the lower suction hole of the lower suction pipe is connected and fixed to one end of the connecting T-pipe.

[0013] Optionally, the inner sidewall of the pressing frame is provided with a pressing groove, the two sides of the pressing plate are provided with pressing sliders, the pressing groove is slidably connected to the pressing slider, the pressing slider is threaded through the pressing screw, and the inner bottom of the pressing groove is inserted with a pressing motor.

[0014] Optionally, a connecting pipe is provided on one side of the glue spraying tube, one end of which is connected to a glue pump, and a glue spraying head is installed on the lower surface of the glue spraying tube.

[0015] In summary, the technical effects and advantages of this utility model are as follows:

[0016] 1. This utility model has a reasonable structure. By passing two types of fabric through two separate dust collection components, the cleaning brush cleans the surface of the fabric inside the dust collection components through the dust collection push rod. One end of each of the two connecting T-tubes is connected to the dust collection and cleaning equipment in the factory. When the dust collection and cleaning equipment in the factory is started, the dust and debris are extracted and recycled through the upper and lower dust collection pipes, cleaning the surface of the fabric and reducing the impact of dust and debris on subsequent work and work speed.

[0017] 2. In this utility model, the glue pump draws glue from the glue tank and sprays it onto the fabric surface through the glue spray nozzle under the glue spray pipe, so that the fabric can be well bonded and reduce fabric cracking during use. The upper heating plate under the pressing plate heats up, and the lower heating plate on the pressing frame heats up. The pressing motor moves the pressing plate downward to press and press the fabric passing through the pressing frame and the pressing plate. The heating of the upper and lower heating plates allows the two different fabrics to be combined more quickly, reducing the possibility of incomplete bonding of the two fabrics during the pressing process, which could lead to cracking later and affect the use.

[0018] 3. In this utility model, by passing the fabric through the extrusion assembly, the extrusion push rod drives the upper roller in the upper shaft seat to rise and fall on the lower roller in the lower shaft seat, rolling the fabric that passes through the upper and lower rollers, quickly performing a secondary pressing of the fabric, reducing the risk of the first pressing failing to effectively press the two fabrics together firmly, which could lead to fabric cracking during use. The blower motor moves the upper fan in the upper blower seat within the blower frame and fixed frame to adjust its height. When the two pressed fabrics enter the blower assembly, the upper and lower fans blow air onto the passing fabric, which can quickly cool the fabric and reduce the impact of excessively high fabric temperature on subsequent processing of the fabric. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of this utility model;

[0020] Figure 2 This is a schematic diagram of the processing frame structure of this utility model;

[0021] Figure 3 This is an exploded view of the pressing frame structure of this utility model;

[0022] Figure 4 This is an exploded view of the adhesive spraying base structure of this utility model;

[0023] Figure 5 This is a schematic diagram of the mobile frame structure of this utility model;

[0024] Figure 6 This is a schematic diagram of the lower bearing structure of this utility model;

[0025] Figure 7 This is an exploded view of the blower frame structure of this utility model;

[0026] Figure 8 This is a schematic diagram of the cleaning brush structure of this utility model;

[0027] Figure 9 This is an exploded view of the dust collection seat structure of this utility model.

[0028] In the diagram: 1. Processing frame; 2. Left cleaning frame; 3. Right cleaning frame; 4. Pressing frame; 5. Lower heating plate; 6. Pressing motor; 7. Pressing screw; 8. Pressing plate; 9. Upper heating plate; 10. Glue pump; 11. Glue tank; 12. Glue spraying base; 13. Glue spraying pipe; 14. Moving frame; 15. Extrusion assembly; 151. Lower shaft seat; 152. Extrusion push rod; 153. Upper shaft seat; 154. Lower roller shaft; 155. Upper roller. 16. Shaft; 161. Blower assembly; 162. Lower blower base; 163. Fixing bracket; 164. Lower blower; 165. Upper blower base; 166. Upper blower; 167. Blower motor; 168. Blower lead screw; 17. Dust collection assembly; 171. Dust collection base; 172. Upper dust collection pipe; 173. Lower dust collection pipe; 174. Connecting T-pipe; 175. Dust pump; 18. Dust collection push rod; 19. Cleaning brush. Detailed Implementation

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0030] Example: Reference Figures 1-9 The apparatus shown is for processing chenille double-layer wrinkled fabric, including a processing frame 1. A left cleaning frame 2 and a right cleaning frame 3 are sequentially arranged from front to back on one side of the processing frame 1. A pressing frame 4 is provided on the upper surface of the processing frame 1. A lower heating plate 5 is inserted into the upper surface of the pressing frame 4. A pressing motor 6 is inserted into one side of the upper surface of the pressing frame 4. A pressing screw 7 is sleeved on one end of the pressing motor 6. A pressing plate 8 is slidably connected to the inner side of the pressing frame 4. An upper heating plate 9 is inserted into the lower surface of the pressing plate 8. The processing frame 1... A glue pump 10 is inserted into the side, and a glue tank 11 is sleeved on one end of the glue pump 10. A glue spraying base 12 is inserted into the inside of the processing frame 1. A glue spraying tube 13 is provided on the upper surface of the glue spraying base 12. A movable frame 14 is installed on one side of the processing frame 1. A squeezing component 15 and a blowing component 16 are arranged sequentially from front to back on the upper surface of the movable frame 14. A dust collection component 17 is inserted into one side of the left cleaning frame 2. A dust collection push rod 18 is inserted into one side of the dust collection component 17. A cleaning brush 19 is inserted into one side of the dust collection push rod 18.

[0031] As a preferred embodiment of this example, Figures 2 to 9As shown, a left cleaning frame 2 and a right cleaning frame 3 are arranged sequentially from front to back on one side of the processing frame 1. A pressing frame 4 is provided on the upper surface of the processing frame 1. A lower heating plate 5 is inserted into the upper surface of the pressing frame 4. A pressing motor 6 is inserted into one side of the upper surface of the pressing frame 4. A pressing screw 7 is sleeved on one end of the pressing motor 6. A pressing plate 8 is slidably connected to the inner side of the pressing frame 4. A pressing groove is opened on the inner side wall of the pressing frame 4. Pressing sliders are opened on both sides of the pressing plate 8. A pressing slider is slidably connected inside the pressing groove. The pressing screw 7 passes through the internal thread of the pressing slider. A pressing motor 6 is inserted into the bottom of the pressing groove. An upper heating plate 9 is inserted into the lower surface of the pressing plate 8. A glue pump 10 is inserted into one side of the processing frame 1. A glue tank 11 is sleeved on one end of the glue pump 10. A glue spraying base 12 is inserted inside the frame 1. A glue spraying pipe 13 is provided on the upper surface of the glue spraying base 12. A connecting pipe is provided on one side of the glue spraying pipe 13, and a glue pump 10 is inserted into one end of the connecting pipe. A glue spraying head is installed on the lower surface of the glue spraying pipe 13. A movable frame 14 is installed on one side of the processing frame 1. An extrusion assembly 15 and a blowing assembly 16 are arranged sequentially from front to back on the upper surface of the movable frame 14. The extrusion assembly 15 includes a lower shaft seat 151, an extrusion push rod 152, an upper shaft seat 153, a lower roller 154, and an upper roller 155. An extrusion push rod 152 is inserted into the top of one side of the lower shaft seat 151. One end of the extrusion push rod 152 is inserted into the upper shaft seat 153. The lower roller 154 is inserted inside the lower shaft seat 151, and the upper roller 155 is inserted inside the upper shaft seat 153. A blowing assembly 16 is also installed. Component 16 includes a blower frame 161, a lower blower base 162, a fixing bracket 163, a lower blower 164, an upper blower base 165, an upper blower 166, a blower motor 167, and a blower screw 168. The lower blower base 162 is inserted into one side of the blower frame 161, and the fixing bracket 163 is sleeved onto one side of the lower blower base 162. The lower blower 164 is inserted into the upper surface of the lower blower base 162. The upper blower base 165 is slidably connected to one side of the blower frame 161, and the upper blower 166 is inserted inside the upper blower base 165. The blower motor 167 is inserted inside the fixing bracket 163, and the blower screw 168 is inserted into one end of the blower motor 167. A blower groove is formed on one side of the blower frame 161, and a fixing groove is formed on one side of the fixing bracket 163. The upper blower base 164... A blower slider is provided on the side of the upper blower seat 165 near the blower frame 161, and a fixed slider is provided on the side of the upper blower seat 165 near the fixed frame 163. The blower slider is slidably connected inside the blower slide groove, and the fixed slider is slidably connected inside the fixed slide groove. A blower motor 167 is inserted into the bottom of the fixed slide groove, and a blower screw 168 is threaded through the inside of the fixed slider. A vacuuming assembly 17 is inserted into one side of the left cleaning frame 2. The vacuuming assembly 17 includes a vacuuming seat 171, an upper vacuuming pipe 172, a lower vacuuming pipe 173, a connecting T-connector 174, and a vacuum pump 175. The upper vacuuming pipe 172 is inserted into the upper surface of the vacuuming seat 171, the lower vacuuming pipe 173 is inserted into the lower surface of the vacuuming seat 171, and the connecting T-connector 174 is inserted into one side of the upper vacuuming pipe 172.A vacuum pump 175 is sleeved at one end of the connecting three-way pipe 174. An upper vacuum hole is provided on one side of the upper vacuum pipe 172, and the upper vacuum hole of the upper vacuum pipe 172 is connected and fixed to one end of the connecting three-way pipe 174. A lower vacuum hole is provided on one side of the lower vacuum pipe 173, and the lower vacuum hole of the lower vacuum pipe 173 is connected and fixed to one end of the connecting three-way pipe 174. Two vacuum components 17 are inserted sequentially from top to bottom on one side of the left cleaning frame 2. A vacuum push rod 18 is inserted on one side of each vacuum component 17, and a cleaning brush 19 is inserted on one side of each vacuum push rod 18. There are two symmetrical cleaning brushes 19. During use, two different types of fabric are passed through the cleaning brushes 19 on one side of each of the two vacuum components 17 and into the vacuum component 17, then pushed by the vacuum push rod... 18 drives the cleaning brush 19 to extend and retract, allowing the cleaning brush 19 to clean the fabric surface entering the vacuum assembly 17. This quickly cleans the passing fabric, removing or loosening adhering dust and debris, reducing the impact of dust and debris on subsequent work. It connects to the factory's vacuum cleaning equipment at one end of each of the two connecting T-pipes 174. During use, the fabric passes through the suction holes, and the factory's vacuum cleaning equipment is activated to extract and collect dust and debris through the upper suction pipe 172 and lower suction pipe 173. This cleans the fabric surface, reducing dust and debris that could hinder subsequent work and slow down the process, and preventing dust and debris from falling back into the background. Regarding the fabric, the treated fabric is passed through the glue spraying station 12. The glue pump 10 draws glue from the glue tank 11 and sprays it onto the fabric surface through the spray nozzle under the glue spraying pipe 13. This glue application ensures good adhesion, reduces fabric cracking during use, and speeds up worker production, improving efficiency. Heating is achieved through the upper heating plate 9 under the pressing plate 8 and the lower heating plate 5 on the pressing frame 4. The pressing motor 6 drives the pressing screw 7 to rotate, causing the pressing plate 8 to move downwards and press the fabric passing through the pressing frame 4 and the pressing plate 8. The heating of the upper heating plate 9 and the lower heating plate 5 allows the two different fabrics to bond together effectively. This rapid combination reduces the risk of incomplete bonding between the two fabrics during the initial pressing process, which could lead to cracking and affect usability later. After pressing the fabrics together, they pass through the upper roller 155 and lower roller 154 within the extrusion assembly 15. The extrusion pusher 152 drives the upper roller 155 in the upper shaft seat 153 to rise and fall on the lower roller 154 in the lower shaft seat 151, adjusting the distance between them. This rapid adjustment of the distance allows for quick rolling of the fabric passing through the rollers, enabling a second pressing process. This reduces the risk of incomplete bonding during the first pressing, which could lead to fabric cracking during use.The blower motor 167 drives the blower screw 168 to rotate, causing the upper blower 166 inside the upper blower base 165 to move up and down within the blower frame 161 and the fixed frame 163 to adjust its height. When the two types of pressed fabric enter the blower assembly 16, the upper blower 166 and the lower blower 164 blow air onto the passing fabric, thereby quickly cooling the fabric and reducing the impact of excessively high fabric temperature on subsequent processing.

[0032] The working principle of this practical application is as follows:

[0033] During use, workers insert two different fabrics into the vacuum assembly 17 through the cleaning brushes 19 on one side. The cleaning brushes 19 are then extended and retracted by the vacuum push rod 18, cleaning the fabric surface inside the vacuum assembly 17. Workers connect one end of each of the two connecting T-pipes 174 to the factory's vacuum cleaning equipment. When in use, the fabric passes through the suction holes, and the factory's vacuum cleaning equipment is activated, using the upper suction pipe 172 and lower suction pipe 173 to extract and collect dust and debris, cleaning the fabric surface and reducing the amount of dust and debris that could hinder subsequent work and affect work speed. The worker passes the treated fabric through the glue spraying station 12. The glue pump 10 draws glue from the glue tank 11 and sprays it onto the fabric surface through the spray nozzle under the glue spray pipe 13, ensuring good adhesion. Heating is achieved by the upper heating plate 9 under the pressing plate 8 and the lower heating plate 5 on the pressing frame 4. The pressing motor 6 drives the pressing screw 7 to rotate, causing the pressing plate 8 to move downwards and press the fabric passing through the pressing frame 4 and the pressing plate 8. The heating by the upper heating plate 9 and the lower heating plate 5 quickly bonds the two different fabrics together. After the worker presses and seals the fabric, it passes through the upper roller 155 and lower roller 154 within the extrusion assembly 15. The extrusion pusher 152 drives the upper roller 155 within the upper shaft seat 153 to rise and fall on the lower roller 154 within the lower shaft seat 151, adjusting the distance between them. This rapid adjustment of the distance allows for a quick secondary pressing of the fabric passing through the rollers, reducing the need for a single pressing step. The inability to effectively bond the two fabrics together properly leads to fabric cracking during use. The blower motor 167 drives the blower screw 168 to rotate, causing the upper blower 166 in the upper blower seat 165 to move up and down within the blower frame 161 and the fixed frame 163 to adjust its height. When the two bonded fabrics pass through the blower assembly 16, the upper blower 166 and the lower blower 164 blow air onto the passing fabric to cool it down, reducing the impact of excessively high fabric temperature on subsequent fabric processing.

[0034] All electrical components mentioned in this article are connected to an external main controller and 220V AC mains power, and the main controller can be a conventional known device such as a computer that can control it.

[0035] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A processing apparatus for chenille double-layer pleated fabric, comprising a processing frame (1), characterized in that: The processing rack (1) has a left cleaning rack (2) and a right cleaning rack (3) arranged sequentially from front to back on one side. A pressing rack (4) is provided on the upper surface of the processing rack (1). A lower heating plate (5) is inserted into the upper surface of the pressing rack (4). A pressing motor (6) is inserted into one side of the upper surface of the pressing rack (4). A pressing screw (7) is sleeved on one end of the pressing motor (6). A pressing plate (8) is slidably connected to the inner side of the pressing rack (4). An upper heating plate (9) is inserted into the lower surface of the pressing plate (8). A glue pump (10) is inserted into one side of the processing rack (1). A glue tank (11) is sleeved on one end of a water pump (10). A glue spraying seat (12) is inserted inside the processing frame (1). A glue spraying tube (13) is provided on the upper surface of the glue spraying seat (12). A movable frame (14) is installed on one side of the processing frame (1). A squeezing assembly (15) and a blowing assembly (16) are arranged sequentially from front to back on the upper surface of the movable frame (14). A dust suction assembly (17) is inserted on one side of the left cleaning frame (2). A dust suction push rod (18) is inserted on one side of the dust suction assembly (17). A cleaning brush (19) is inserted on one side of the dust suction push rod (18).

2. The processing apparatus for a chenille double-layer pleated fabric according to claim 1, characterized in that: The extrusion assembly (15) includes a lower shaft seat (151), an extrusion push rod (152), an upper shaft seat (153), a lower roller shaft (154), and an upper roller shaft (155). The extrusion push rod (152) is inserted into the top of one side of the lower shaft seat (151), and the upper shaft seat (153) is inserted into one end of the extrusion push rod (152). The lower roller shaft (154) is inserted into the interior of the lower shaft seat (151), and the upper roller shaft (155) is inserted into the interior of the upper shaft seat (153).

3. The processing apparatus for a chenille double-layer wrinkled fabric according to claim 1, characterized in that: The blower assembly (16) includes a blower frame (161), a lower blower seat (162), a fixed frame (163), a lower blower (164), an upper blower seat (165), an upper blower (166), a blower motor (167), and a blower screw (168). The lower blower seat (162) is inserted into one side of the blower frame (161), and the fixed frame (163) is sleeved onto one side of the lower blower seat (162). The lower blower (164) is inserted into the upper surface of the lower blower seat (162). The upper blower seat (165) is slidably connected to one side of the blower frame (161). The upper blower (166) is inserted into the interior of the upper blower seat (165). The blower motor (167) is inserted into the interior of the fixed frame (163), and the blower screw (168) is inserted into one end of the blower motor (167).

4. The processing apparatus for a chenille double-layer wrinkled fabric according to claim 3, characterized in that: A blower slide groove is provided on one side of the blower frame (161), a fixing slide groove is provided on one side of the fixing frame (163), a blower slider is provided on the side of the upper blower seat (165) near the blower frame (161), a fixing slider is provided on the side of the upper blower seat (165) near the fixing frame (163), a blower slider is slidably connected inside the blower slide groove, a fixing slider is slidably connected inside the fixing slide groove, a blower motor (167) is inserted into the bottom of the fixing slide groove, and a blower screw (168) is threaded through the inside of the fixing slider.

5. The processing apparatus for a chenille double-layer pleated fabric according to claim 1, characterized in that: The vacuuming assembly (17) includes a vacuuming base (171), an upper vacuuming pipe (172), a lower vacuuming pipe (173), a connecting three-way pipe (174), and a vacuum pump (175). The upper vacuuming pipe (172) is inserted into the upper surface of the vacuuming base (171), and the lower vacuuming pipe (173) is inserted into the lower surface of the vacuuming base (171). A connecting three-way pipe (174) is inserted into one side of the upper vacuuming pipe (172), and a vacuum pump (175) is sleeved at one end of the connecting three-way pipe (174).

6. The processing apparatus for a chenille double-layer pleated fabric according to claim 5, characterized in that: The upper suction pipe (172) has an upper suction hole on one side, and the upper suction hole of the upper suction pipe (172) is connected and fixed to one end of the connecting three-way pipe (174). The lower suction pipe (173) has a lower suction hole on one side, and the lower suction hole of the lower suction pipe (173) is connected and fixed to one end of the connecting three-way pipe (174).

7. The processing apparatus for a chenille double-layer wrinkled fabric according to claim 1, characterized in that: The inner sidewall of the pressing frame (4) is provided with a pressing groove, and the two sides of the pressing plate (8) are provided with pressing sliders. The pressing slider is slidably connected inside the pressing groove. The pressing screw (7) is threaded through the inside of the pressing slider. The pressing motor (6) is inserted into the bottom of the pressing groove.

8. The processing apparatus for a chenille double-layer wrinkled fabric according to claim 1, characterized in that: A connecting pipe is provided on one side of the glue spraying tube (13), and a glue pump (10) is inserted into one end of the connecting pipe. A glue spraying head is installed on the lower surface of the glue spraying tube (13).