Forming device for polyester bamboo fiber fabric with high washing fastness

By setting up a guiding component, a flattening structure, and an electrostatic elimination component in the polyester bamboo fiber fabric forming device, the problem of uneven force on the fabric during the wrinkle removal process is solved, achieving efficient flattening and uniform wrinkle removal of the fabric, and improving the smoothness and quality of the product.

CN224118361UActive Publication Date: 2026-04-14JIAOLU TEXTILE (NANTONG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing polyester bamboo fiber fabric forming devices suffer from uneven force on both sides and the middle of the fabric during the wrinkle removal process, causing it to curl up, affecting the smoothness and wrinkle removal effect of the fabric, and lacking an effective flattening function, making it difficult to completely eliminate wrinkles.

Method used

The forming device is equipped with a guiding component, a flattening structure, and an adjustable limiting component. The fabric is initially flattened and moved by the pushing and scraping component and the flattening component. Combined with the static elimination component to neutralize static electricity, the fabric is ensured to be evenly stressed and flat before wrinkle removal.

Benefits of technology

It significantly improves the smoothness and wrinkle-removing effect of the fabric, reduces residual wrinkles, improves production efficiency and product quality, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a polyester bamboo fiber high washing fastness fabric forming device, and particularly relates to the technical field of textile, the polyester bamboo fiber high washing fastness fabric forming device comprises a processing box, a dredging assembly, a wrinkle removing assembly and an adjustable limiting assembly are sequentially arranged in the processing box from an inlet to an outlet, and the inner surface wall of the processing box is fixedly connected with a bearing plate; the lower end face of the treatment box is fixedly connected with a supporting bottom frame. According to the utility model, the flattening structure is arranged, so that the device has a function of unfolding the fabric, part of wrinkles and curls generated in the rolling or conveying process of the fabric can be preliminarily unfolded before the wrinkles are removed, a foundation is laid for subsequent finer flattening operation, then the two sides of the fabric are shifted, and the flattening efficiency is improved. By means of the operation, the fabric can be stably spread and flattened from the middle to the two sides, the problem that the two sides of the fabric curl up due to uneven stress is greatly solved, and the overall flatness of the fabric is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of textile technology, specifically to a forming device for polyester bamboo fiber high wash fastness fabric. Background Technology

[0002] For polyester bamboo fiber fabrics with multiple excellent properties, the forming process directly affects the performance and appearance of the final product. Currently, surface wrinkles have become a major challenge in the fabric processing. Existing processing methods often fail to efficiently and accurately remove fabric wrinkles, resulting in defects in the appearance of the formed fabric. This not only reduces the product's market competitiveness but also increases the defect rate and production costs. Therefore, forming equipment is needed to effectively remove wrinkles from polyester bamboo fiber fabrics with high wash fastness to ensure the stability of product quality.

[0003] Application No. 202120240313.X discloses a forming device for polyester bamboo fiber elastic high wash fastness fabric, which "includes a base plate and several adjustable support feet symmetrically arranged on the bottom surface of the base plate. A take-up roller is mounted on the upper right surface of the base plate via a second mounting frame. A processing box is provided on the base plate. Several support rollers are symmetrically arranged inside the processing box via a first mounting frame, and a pressure roller is provided above each support roller. A steam box and a heating block are provided on the inner bottom surface of the left part of the processing box, and several steam ports are equidistantly arranged on the upper surface of the steam box. Several dryers are equidistantly arranged on the inner top surface of the right part of the processing box. A support plate is fixedly provided inside the processing box. Several wrinkle-removing rollers are provided on the upper surface of the support plate. The wrinkle-removing rollers are rotatably mounted on the front and rear side walls of the processing box via mounting shafts. A first compression spring is sleeved on the outer wall of the front part of each mounting shaft. A connecting plate is connected to the front end of each mounting shaft. A cam is provided in front of the connecting plate. The end of the cam transmits..." The device is connected to a first drive motor, which is fixedly mounted on the outer wall of the processing box. Although the above-mentioned structure, including a steam box, dryer, and wrinkle-removing roller, achieves the function and effect of wrinkle removal on the fabric to a certain extent, when the fabric enters the processing box, due to the inherent tension of the fabric during winding and conveying, the tension on both sides is not uniform. This results in a significant difference in the force transmission and distribution between the two sides and the middle of the fabric. Under continuous tension, the two sides of the fabric are very likely to curl up towards the middle. However, the device does not have the function of effectively flattening the fabric before wrinkle removal. As a result, the curled fabric cannot evenly bear the heat and pressure during the subsequent wrinkle removal process, which greatly weakens the wrinkle removal effect, seriously affects the quality and appearance flatness of the fabric, and makes it difficult to completely eliminate wrinkles, ultimately affecting the overall quality of the product. In addition, the curled state of the fabric will also cause different degrees of stretching in different parts during the wrinkle removal process, ultimately resulting in inconsistent fabric width. Utility Model Content

[0004] The purpose of this invention is to provide a forming device for polyester bamboo fiber high wash fastness fabric to solve the above-mentioned shortcomings in the technology.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a forming device for polyester bamboo fiber high wash fastness fabric, comprising a processing box, wherein the interior of the processing box is provided with a guiding component, a wrinkle-removing component, and an adjustable limiting component in sequence from the inlet to the outlet, and a receiving plate is fixedly connected to the inner wall of the processing box, and a supporting base is fixedly connected to the lower end face of the processing box, wherein the wrinkle-removing component includes a fixed frame slidably connected to the interior of the processing box, a wrinkle-removing roller rotatably connected inside the fixed frame, and a driving component provided at the upper end of the fixed frame, the driving component consisting of a second driving motor, a reciprocating lead screw, a moving block, and a moving groove, the moving groove being opened at the upper end face of the processing box, and the reciprocating lead screw being rotatably connected to... Inside the moving trough, the moving block is threaded to the outside of the reciprocating screw, and the lower end face of the moving block is fixedly connected to the fixed frame. One end of the reciprocating screw passes through and extends to the outside of the processing box and is connected to the second drive motor. One end of the wrinkle-removing roller is sealed with a connecting pipe head, and the connecting end of the connecting pipe head passes through and extends to the outside of the processing box. The outer wall of the wrinkle-removing roller is evenly provided with multiple through holes for steam overflow. The guiding assembly consists of two fixed frames and two support rollers. One of the fixed frames is fixedly connected to the inside of the processing box, and the other fixed frame is connected to the inside of the processing box through an elastic telescopic rod. The two support rollers are rotatably connected to the inside of the two fixed frames.

[0006] Preferably, the adjustable limiting component includes two limiting side blocks symmetrically slidably connected to the upper surface of the receiving plate. A groove is provided on the upper surface of the receiving plate. A double threaded rod is rotatably connected inside the groove. A slider is threadedly connected to the outside of the double threaded rod. The upper surface of the slider is fixedly connected to the limiting side blocks. A handle is connected to the double threaded rod through and extending to the outside of the processing box.

[0007] Specifically, during processing, one end of the fabric is first inserted through the inlet of the processing box. Then, the fabric passes through two support rollers on the guiding assembly. During this process, the support rollers guide the fabric for smooth transport, ensuring it maintains the correct path within the processing box. Subsequently, the fabric exits from the processing box and wraps around a take-up roller. The take-up roller provides power traction for continuous fabric transport, ensuring a continuous flow of fabric into the processing process. Next, the connecting pipe is connected, and steam enters the wrinkle-removing roller through the connecting pipe. Steam then overflows from the through-hole to heat the fabric. During this process, a second drive motor drives a reciprocating screw to rotate, causing a moving block to move within a moving groove, thereby driving the fixed... The fixed frame reciprocates, causing the wrinkle-removing roller to move back and forth on the fabric. Under the combined action of heat and pressure, it achieves efficient wrinkle removal treatment of the fabric. (After the sprayed steam condenses into water, it drips through the perforator on the receiving plate onto the bottom of the treatment box and is finally discharged through the drain port.) In addition, before wrinkle removal, the handle is held and turned to rotate the double threaded rod, causing the slider to slide in the groove, thereby changing the distance between the two limiting side blocks, which limits the fabric and prevents it from shifting during the conveying process. (After wrinkle removal, the fabric can be cooled by a fan. The cold air blown by the fan quickly removes the heat from the fabric surface, allowing the fabric to cool and set quickly, consolidating the wrinkle removal effect.)

[0008] Preferably, a flattening structure is provided between the guiding component and the wrinkle removal component. The flattening structure includes a pushing and scraping component and a sliding component. The pushing and scraping component is used to push and scrape the middle of the fabric. The sliding component works in conjunction with the pushing and scraping component to move the sides of the fabric. The pushing and scraping component includes two connecting rollers symmetrically rotatably connected inside the processing box. A conveyor belt is sleeved on the outside of the two connecting rollers. A scraper is fixedly connected to the outer wall of the conveyor belt. The sliding component includes a fixed plate fixedly connected to one side of the outer wall of the processing box. A turntable is rotatably connected to the upper end of the fixed plate. A scraper rod is fixedly connected to the lower end face of the turntable, and a first bevel gear is fixedly connected to the upper end face of the turntable.

[0009] Preferably, the leveling assembly further includes a second bevel gear meshing with one side of the first bevel gear. The inner wall of the processing box is symmetrically connected with two pulleys, and a belt is fitted on the outside of the two pulleys. One pulley is fixedly connected to one end of the second bevel gear, and the other pulley is fixedly connected to one end of a connecting roller. The other pulley is connected to a first drive motor at the end away from the connecting roller. The first drive motor is installed on the outer wall of the processing box.

[0010] Through the above technical solution:

[0011] Before wrinkle removal, the connecting roller is first driven by the first drive motor to rotate, which in turn drives the conveyor belt to rotate. This causes the scraper to push and scrape the middle part of the fabric, initially unfolding the wrinkles and curls, laying the foundation for subsequent fine flattening. Then, through the cooperation of the pulley and the belt, the first bevel gear rotates, which in turn drives the second bevel gear to rotate, thereby driving the turntable to rotate. This causes the scraper to rotate, performing a prying operation on both sides of the fabric. This operation can promote the smooth unfolding and flattening of the fabric from the middle to both sides, effectively improving the problem of curling on both sides of the fabric and greatly improving the overall flatness. When wrinkle removal is performed on the flattened fabric, heat and pressure can be applied evenly, significantly enhancing the wrinkle removal effect, ensuring the fabric forming quality, improving the appearance flatness, reducing wrinkle residue, contributing to high-quality production, reducing the difficulty and error probability of subsequent processing steps, improving production efficiency, and reducing costs.

[0012] Preferably, the flattening structure is provided with a static elimination component, which includes a hollow static elimination sleeve fitted outside the scraper, and a groove is provided on the lower end face of the scraper, with a static elimination rod rotatably connected inside the groove.

[0013] Through the above technical solution:

[0014] During the fabric smoothing and unfolding process, the static eliminator and the scraper work together. The instant the scraper contacts the fabric, the static eliminator releases counter-polar ions through its internal ion generator, neutralizing the static electricity generated in the fabric during winding, conveying, and scraping by the scraper. Simultaneously, the hollow static eliminator sleeve, in conjunction with the scraper rod, utilizes its unique hollow structure to release neutralizing ions to both sides of the fabric. This combined operation efficiently and promptly eliminates static electricity, ensuring the smoothness of the fabric during processing and facilitating the even application of heat and pressure in subsequent wrinkle removal processes, thus improving wrinkle removal quality. It also ensures fabric cleanliness, reducing dust adhesion and fabric sticking, minimizing negative impacts on product quality, and improving overall fabric processing quality.

[0015] The technical effects and advantages provided by this utility model in the above technical solution are as follows:

[0016] 1. By setting up a flattening structure, the device can unfold the fabric. Before wrinkle removal, it can initially unfold some of the wrinkles and curls caused by the winding or conveying process, laying the foundation for more precise flattening operations. Then, the two sides of the fabric are turned, which can make the fabric unfold and flatten smoothly from the middle to both sides, greatly improving the problem of curling on both sides of the fabric caused by uneven force, and significantly improving the overall flatness of the fabric. Secondly, with the fabric fully flattened, heat and pressure can be evenly applied to all parts of the fabric in the subsequent wrinkle removal process, thereby significantly enhancing the wrinkle removal effect, ensuring the quality of fabric forming, improving the flatness of the product appearance, reducing wrinkle residue, and providing a solid guarantee for high-quality production. At the same time, it also reduces the processing difficulty and error probability caused by uneven fabric in subsequent processes, improves production efficiency, and reduces production costs.

[0017] 2. By incorporating an electrostatic elimination component, the flattening structure acquires electrostatic elimination capabilities. During the fabric flattening and unfolding process, the electrostatic elimination rod and scraper work together, utilizing a specific internal ion generator to release ions with the opposite polarity to the static electricity on the fabric surface. This neutralizes the static electricity generated in the middle of the fabric during winding, conveying, and scraping. Simultaneously, the hollow electrostatic elimination sleeve, tightly fitted with the scraper, releases neutralizing ions to both sides of the fabric through its unique hollow structure. This timely and efficient elimination of static electricity on the fabric surface not only ensures the flatness of the fabric during processing, allowing heat and pressure to be applied evenly in subsequent wrinkle removal processes, thus improving wrinkle removal quality, but also ensures the cleanliness of the fabric, reducing the negative impact of dust adhesion and fabric sticking on product quality, thereby improving the overall fabric processing quality. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.

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

[0020] Figure 2 This is a cross-sectional schematic diagram of the processing box of this utility model;

[0021] Figure 3 This is an enlarged schematic diagram of the flattened structure of this utility model;

[0022] Figure 4 This is a schematic diagram showing the connection between the flattened structure and the receiving plate of this utility model;

[0023] Figure 5 This is a schematic diagram of the push-scrape assembly of this utility model;

[0024] Figure 6 This is a schematic diagram of the track-mounted component of this utility model;

[0025] Figure 7 This is a schematic diagram of the wrinkle-removing component of this utility model;

[0026] Figure 8 This is a schematic diagram of the adjustable limiting component of this utility model.

[0027] Explanation of reference numerals in the attached figures:

[0028] 1. Processing box; 2. Receiving plate; 3. Guiding component; 4. Wrinkle removal component; 41. Fixing frame; 42. Wrinkle removal roller; 5. Adjustable limiting component; 51. Limiting side block; 52. Slide groove; 53. Double threaded rod; 54. Slider; 55. Handle; 6. Flattening structure; 61. Connecting roller; 62. Conveyor belt; 63. Scraper; 611. Fixing plate; 612. Turntable; 613. Scraper bar; 614. First bevel gear; 615. Second bevel gear; 616. Pulley; 617. Belt; 618. First drive motor; 7. Hollow static elimination sleeve; 8. Groove; 9. Static elimination rod; 10. Drive component; 11. Connecting pipe head; 12. Through hole; 13. Support base frame. Detailed Implementation

[0029] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0030] This utility model provides, for example Figure 1 , Figure 2 and Figure 7 The apparatus shown is for forming a polyester bamboo fiber high wash fastness fabric, comprising:

[0031] The processing box 1 contains, from inlet to outlet, a guiding component 3, a wrinkle-removing component 4, and an adjustable limiting component 5. A receiving plate 2 is fixedly connected to the inner wall of the processing box 1, and a supporting base 13 is fixedly connected to the lower end face of the processing box 1. The wrinkle-removing component 4 includes a fixed frame 41 slidably connected inside the processing box 1. A wrinkle-removing roller 42 is rotatably connected inside the fixed frame 41. A driving component 10 is located at the upper end of the fixed frame 41. The driving component 10 consists of a second driving motor, a reciprocating screw, a moving block, and a moving groove. The moving groove is located on the upper end face of the processing box 1. The reciprocating screw is rotatably connected inside the moving groove, and the moving block is threadedly connected to the reciprocating screw. The reciprocating screw is fixedly connected to the outside of the reciprocating screw and the lower end face of the moving block is fixedly connected to the fixed frame 41. One end of the reciprocating screw passes through and extends to the outside of the processing box 1 and is connected to the second drive motor. One end of the wrinkle-removing roller 42 is sealed with a connecting pipe head 11. The connecting end of the connecting pipe head 11 passes through and extends to the outside of the processing box 1. The outer wall of the wrinkle-removing roller 42 is evenly provided with multiple through holes 12 for steam overflow. The guiding component 3 consists of two fixed frames and two support rollers. One fixed frame is fixedly connected to the inside of the processing box 1, and the other fixed frame is connected to the inside of the processing box 1 through an elastic telescopic rod. The two support rollers are rotatably connected to the inside of the two fixed frames.

[0032] Further, see Figure 8 As shown, the adjustable limiting component 5 includes two limiting side blocks 51 symmetrically slidably connected to the upper end face of the receiving plate 2. The upper end face of the receiving plate 2 is provided with a groove 52. A double threaded rod 53 is rotatably connected inside the groove 52. A slider 54 is threadedly connected to the outside of the double threaded rod 53. The upper end face of the slider 54 is fixedly connected to the limiting side block 51. The double threaded rod 53 passes through and extends to the outside of the processing box 1 and is connected to a handle 55.

[0033] Specifically, during processing, one end of the fabric is first inserted through the inlet of processing box 1. Then, the fabric passes through two support rollers on the guiding assembly 3. During this process, the support rollers guide the fabric for smooth transport, ensuring it maintains the correct path within processing box 1. The fabric then exits from the outlet of processing box 1 and winds onto the take-up roller. The take-up roller provides power traction for continuous fabric transport, ensuring a continuous flow of fabric into the processing process. Next, the connecting pipe 11 is connected, and steam enters the wrinkle-removing roller 42 through the connecting pipe 11. Steam then overflows from the through-hole 12 to heat the fabric. During this process, the second drive motor drives the reciprocating screw to rotate, causing the moving block to move within the moving groove, thereby moving the fixed frame 4. 1. The reciprocating rolling motion of the wrinkle-removing roller 42 on the fabric achieves efficient wrinkle removal under the combined action of heat and pressure. (The sprayed steam condenses into water and drips through the drain plate on the receiving plate 2 to the bottom of the treatment box 1, and is finally discharged through the drain port.) In addition, before wrinkle removal, the handle 55 is held and turned to rotate the double threaded rod 53, causing the slider 54 to slide in the groove 52, thereby changing the distance between the two limiting side blocks 51, which limits the fabric and prevents the fabric from shifting during the conveying process. (After wrinkle removal, the fabric can be cooled by a fan. The cold air blown by the fan quickly removes the heat from the fabric surface, allowing the fabric to cool and set quickly, consolidating the wrinkle removal effect.)

[0034] This utility model provides, for example Figures 1-6 The apparatus shown is a forming device for a polyester bamboo fiber high wash fastness fabric. A flattening structure 6 is provided between the guiding component 3 and the wrinkle removal component 4. The flattening structure 6 includes a pushing and scraping component and a flattening component. The pushing and scraping component is used to push and scrape the middle of the fabric. The flattening component and the pushing and scraping component work together to move the sides of the fabric. The pushing and scraping component includes two connecting rollers 61 symmetrically rotatably connected inside the processing box 1. A conveyor belt 62 is sleeved on the outside of the two connecting rollers 61. A scraper 63 is fixedly connected to the outer wall of the conveyor belt 62. The flattening component includes a fixed plate 611 fixedly connected to one side of the outer wall of the processing box 1. A turntable 612 is rotatably connected to the upper end of the fixed plate 611. A scraper 613 is fixedly connected to the lower end face of the turntable 612, and a first bevel gear 614 is fixedly connected to the upper end face of the turntable 612.

[0035] The leveling assembly also includes a second bevel gear 615 meshing with one side of the first bevel gear 614. Two pulleys 616 are symmetrically connected to the inner wall of the processing box 1. A belt 617 is fitted around the outside of the two pulleys 616. One pulley 616 is fixedly connected to one end of the second bevel gear 615, and the other pulley 616 is fixedly connected to one end of one connecting roller 61. The end of the other pulley 616 away from the connecting roller 61 is connected to a first drive motor 618. The first drive motor 618 is mounted on the outer wall of the processing box 1.

[0036] Through the above technical solution:

[0037] Before wrinkle removal, the connecting roller 61 is driven to rotate by the first drive motor 618, which in turn drives the conveyor belt 62 to rotate. This causes the scraper 63 to push and scrape the middle part of the fabric, initially unfolding the wrinkles and curls, laying the foundation for subsequent fine flattening. Then, through the cooperation of the pulley 616 and the belt 617, the first bevel gear 614 is driven to rotate, which in turn drives the turntable 612 to rotate. This causes the scraper 613 to rotate, performing a prying operation on both sides of the fabric. This operation can make the fabric unfold and flatten smoothly from the middle to both sides, effectively improving the problem of curling on both sides of the fabric and greatly improving the overall flatness. When wrinkle removal is performed on the flattened fabric, heat and pressure can be applied evenly, significantly enhancing the wrinkle removal effect, ensuring the quality of fabric forming, improving the appearance flatness, reducing wrinkle residue, contributing to high-quality production, reducing the difficulty and error probability of subsequent processing steps, improving production efficiency, and reducing costs.

[0038] This utility model provides, for example Figure 5 and Figure 6 The apparatus shown is a forming device for a polyester bamboo fiber high wash fastness fabric. The flattening structure 6 is provided with an antistatic component. The antistatic component includes a hollow antistatic sleeve 7 sleeved on the outside of the scraper 613. The lower end face of the scraper 63 is provided with a groove 8, and an antistatic rod 9 is rotatably connected inside the groove 8.

[0039] Through the above technical solution:

[0040] During the fabric smoothing and unfolding process, the static eliminator 9 and the scraper 63 work together. The instant the scraper 63 contacts the fabric, the static eliminator 9 releases counter-polar ions through its internal ion generator, neutralizing the static electricity generated in the fabric during winding, conveying, and scraping by the scraper 63. Simultaneously, the hollow static eliminator sleeve 7 works in conjunction with the scraper rod 613, utilizing its unique hollow structure to release neutralizing ions to both sides of the fabric. This combined operation efficiently and promptly eliminates static electricity, ensuring the smoothness of the fabric during processing and facilitating the even application of heat and pressure in subsequent wrinkle removal processes, thus improving wrinkle removal quality. It also ensures fabric cleanliness, reducing dust adhesion and fabric sticking, minimizing negative impacts on product quality, and improving overall fabric processing quality.

[0041] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A forming device of a polyester bamboo fiber high washing fastness fabric, characterized in that, Include: The processing box (1), the inside of the processing box (1) is provided with a dredging assembly (3), a wrinkle removing assembly (4) and an adjustable limiting assembly (5) in turn from the inlet to the outlet direction, and the inner surface wall of the processing box (1) is fixedly connected with a receiving plate (2), and the lower end surface of the processing box (1) is fixedly connected with a supporting chassis (13); The flat structure (6) is arranged between the dredging assembly (3) and the wrinkle removing assembly (4), the flat structure (6) comprises a pushing and scraping assembly and a flattening assembly, the pushing and scraping assembly is used for pushing and scraping operation on the middle part of the fabric, and the flattening assembly cooperates with the pushing and scraping assembly to move the two sides of the fabric, the pushing and scraping assembly comprises two connecting rollers (61) which are symmetrically connected to the inside of the processing box (1), the outer part of the two connecting rollers (61) is provided with a conveying belt (62), the outer surface wall of the conveying belt (62) is fixedly connected with a scraper (63), the flattening assembly comprises a fixed plate (611) fixedly connected to one side of the outer surface wall of the processing box (1), the upper end of the fixed plate (611) is rotatably connected with a rotating disc (612), the lower end surface of the rotating disc (612) is fixedly connected with a scraping rod (613), and the upper end surface of the rotating disc (612) is fixedly connected with a first bevel gear (614).

2. The forming device of the polyester bamboo fiber high washing fastness fabric of claim 1, wherein: The flattening assembly further comprises a second bevel gear (615) engaged on one side of the first bevel gear (614), the inner wall of the processing box (1) is symmetrically connected with two belt pulleys (616), the outer part of the two belt pulleys (616) is provided with a belt (617), one end of one of the belt pulleys (616) is fixedly connected with the second bevel gear (615), the other end of the other belt pulley (616) is fixedly connected with one end of one of the connecting rollers (61), and the other end of the other belt pulley (616) away from the connecting roller (61) is connected with a first driving motor (618), and the first driving motor (618) is mounted on the outer surface wall of the processing box (1).

3. The polyester bamboo fiber high washing fastness fabric forming device according to claim 1, characterized in that: The flat structure (6) is provided with an electrostatic elimination assembly, the electrostatic elimination assembly comprises a hollow electrostatic elimination sleeve (7) sleeved on the outer part of the scraping rod (613), the lower end surface of the scraper (63) is provided with an embedding groove (8), and the inner part of the embedding groove (8) is rotatably connected with an electrostatic elimination rod (9).

4. The forming device of the polyester bamboo fiber high washing fastness fabric of claim 1, wherein: The wrinkle removing assembly (4) comprises a fixed frame (41) slidably connected to the inside of the processing box (1), and the inside of the fixed frame (41) is rotatably connected with a wrinkle removing roller (42).

5. The polyester bamboo fiber high washing fastness fabric forming device according to claim 4, characterized in that: One end of the wrinkle removing roller (42) is sealingly connected with a connecting pipe head (11), the connecting end of the connecting pipe head (11) penetrates and extends to the outside of the processing box (1), and a plurality of through holes (12) for steam overflow are uniformly and equidistantly formed on the outer surface wall of the wrinkle removing roller (42).

6. The polyester bamboo fiber high washing fastness fabric forming device according to claim 5, characterized in that: The upper end of the fixed frame (41) is provided with a driving assembly (10), the driving assembly (10) is composed of a second driving motor, a reciprocating screw rod, a moving block and a moving groove, the moving groove is opened in the upper end surface of the processing box (1), the reciprocating screw rod is rotationally connected to the inside of the moving groove, the moving block is threadedly connected to the outside of the reciprocating screw rod, and the lower end surface of the moving block is fixedly connected with the fixed frame (41), and one end of the reciprocating screw rod penetrates and extends to the outside of the processing box (1) and is connected with the second driving motor.

7. The forming device of a polyester bamboo fiber high washing fastness fabric of claim 1, wherein: The adjustable limiting assembly (5) comprises two limiting side blocks (51) symmetrically and slidably connected to the upper end surface of the receiving plate (2), the upper end surface of the receiving plate (2) is provided with a sliding groove (52), the inside of the sliding groove (52) is rotationally connected with a double-threaded rod (53), the outside of the double-threaded rod (53) is threadedly connected with a sliding block (54), the upper end surface of the sliding block (54) is fixedly connected with the limiting side block (51), and the double-threaded rod (53) penetrates and extends to the outside of the processing box (1) and is connected with a handle (55).

8. The forming device of a polyester bamboo fiber high washing fastness fabric of claim 1, wherein: The dredging assembly (3) is composed of two fixed frames and two supporting rollers, one of the fixed frames is fixedly connected to the inside of the processing box (1), the other fixed frame is connected to the inside of the processing box (1) through an elastic telescopic rod, and the two supporting rollers are rotationally connected to the inside of the two fixed frames.

Citation Information

Patent Citations

  • Forming device for polyester bamboo fiber elastic fabric with high washing fastness

    CN214736740U