Rolling machine for producing automobile interior fabric

By spraying anti-adhesion medium on the coiler and laying anti-mucosal film, the adhesion problem of synthetic leather fabrics during rolling is solved, and an efficient anti-adhesion effect is achieved and the integrity of the material is protected.

CN120397787AActive Publication Date: 2025-08-01SUZHOU FIR TUNG AUTOMATIVE INTERIORS MATERIAL CO LTD
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Patent Information

Application Number
CN202510925555.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-05
Publication Date
2025-08-01
Estimated Expiration
2045-07-05

AI Technical Summary

Technical Problem

The existing rolling machine for the production of automotive interior fabrics is smooth on the surface of the synthetic leather fabric and is affected by temperature, pressure, static electricity and other factors. The bond between the layers becomes tighter during rolling, resulting in problems such as tearing of materials and surface damage during subsequent unrolling.

Method used

The anti-adhesion system is adopted, including spraying anti-adhesion medium and laying anti-mucosal membranes. The anti-adhesion medium is sprayed on the surface of the sheet through the spraying mechanism, and the anti-mucosal membrane is laid on the surface of the sheet through the film laying mechanism to prevent the occurrence of adhesion.

Benefits of technology

Effectively reduce friction on the surface of the sheet, prevent adhesion during rolling, avoid material tear and surface damage, and is suitable for the protection of high-end sheets.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a rolling machine for automobile interior fabric production, and particularly relates to the field of fabric rolling, the rolling machine comprises a rolling mechanism, the input end of the rolling mechanism is provided with a treatment box, the two sides of the treatment box are both provided with conveying mechanisms, the treatment box is internally provided with a treatment mechanism, and the position, corresponding to the treatment mechanism, in the treatment box is provided with an anti-adhesion system; the conveying mechanism conveys the sheets to the processing mechanism, and the sheets are subjected to anti-adhesion treatment through the anti-adhesion system; the processing mechanism comprises a processing seat, lower compression rollers are rotatably mounted on the processing seat, upper compression rollers are arranged above the lower compression rollers, and two groups of the lower compression rollers and two groups of the upper compression rollers are arranged corresponding to the two sides of the processing seat. The anti-adhesion medium is directly sprayed on the surface of the sheet, so that the friction on the surface of the sheet is reduced, the adhesion problem of the sheet during rolling is quickly reduced, the problem that the rolled and adhered sheet cannot be smoothly separated during the subsequent processes of cutting, shaping and the like is avoided, and the problems of material tearing and surface damage are effectively prevented.
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Description

Technical Field

[0001] The present invention relates to the technical field of fabric winding, and more specifically, the present invention relates to a winding machine for producing automotive interior fabrics. Background Art

[0002] Automotive interior fabrics mainly include categories such as leather, fabric, flannelette, synthetic materials, etc. Different materials are selected according to the vehicle model positioning and requirements. Among them, leather fabrics are suitable for parts such as seats, instrument panel wrappings, and door trim panels due to their smooth surface.

[0003] Leather fabrics include natural leather and synthetic leather. When producing synthetic leather fabrics, first, the raw materials are made into thin sheet-shaped synthetic leather fabrics through processes such as extrusion and calendering. Then, the synthetic leather fabrics are wound into rolls for easy transfer or storage. Finally, the synthetic leather fabrics are processed through processes such as cutting and shaping to form automotive interior fabrics.

[0004] Due to the smooth surface of synthetic leather fabrics, fabrics synthesized from different raw materials are affected by factors such as temperature, pressure, and static electricity, and the layers are more closely adhered during winding, resulting in adhesion phenomena. This causes problems such as the inability to smoothly separate during unwinding in subsequent processes such as cutting and shaping, and material tearing and surface damage. Summary of the Invention

[0005] A winding machine for producing automotive interior fabrics provided by the present invention aims to solve the following problems: In the existing winding machine for producing automotive interior fabrics, due to the smooth surface of synthetic leather fabrics and being affected by factors such as temperature, pressure, and static electricity, the layers are more closely adhered during winding, resulting in adhesion phenomena, and problems such as material tearing and surface damage during subsequent unwinding.

[0006] To achieve the above object, the present invention provides the following technical solution: A winding machine for producing automotive interior fabrics includes a winding mechanism. An input end of the winding mechanism is provided with a processing box. Conveying mechanisms are installed on both sides of the processing box. A processing mechanism is installed inside the processing box. An anti-adhesion system is installed inside the processing box at a position corresponding to the processing mechanism. The conveying mechanism conveys the sheet material to the processing mechanism, and the anti-adhesion system performs anti-adhesion treatment on the sheet material. The processing mechanism includes a processing seat. A pressing roller is rotatably installed on the processing seat. An upper pressing roller is arranged above the pressing roller, and two groups of pressing rollers and upper pressing rollers are provided on both sides of the processing seat corresponding to each other. An anti-adhesion treatment space is formed between the two groups of upper pressing rollers. The anti-adhesion system includes a spraying mechanism. The spraying mechanism includes a gas guiding plate. A liquid guiding plate is installed on one side of the gas guiding plate. A medium processing component is installed on a side of the gas guiding plate away from the liquid guiding plate. The gas guiding plate, the liquid guiding plate, and the medium processing component are all arranged corresponding to the anti-adhesion treatment space. The liquid guiding plate sprays an anti-adhesion medium onto the surface of the sheet material in the anti-adhesion treatment space, and the medium processing component spreads the anti-adhesion medium on the surface of the sheet material evenly.

[0007] In a preferred embodiment, the conveying mechanism includes a support frame, on which a support shaft is installed, a guiding wheel is rotatably installed on the support shaft, and a guiding belt is sleeved on the surface of the guiding wheel.

[0008] In a preferred embodiment, mounting grooves are formed at both ends of the processing seat, both ends of the upper pressing roller are respectively installed in the corresponding mounting grooves, the winding mechanism includes a mounting table, a guiding roller is installed on one side of the mounting table close to the processing box, a winding roller is installed on the mounting table, and a driving mechanism is also installed on the mounting table, and the conveying end of the driving mechanism is fixedly connected to one end of the winding roller.

[0009] In a preferred embodiment, the medium processing component includes a blowing cylinder, which is fixedly arranged on the side of the air guide plate away from the liquid guide plate, and the inside of the blowing cylinder is hollow.

[0010] In a preferred embodiment, the medium processing component further includes a cleaning seat, and one of the cleaning seat and the blowing cylinder is installed on the air guide plate, and a roller is rotatably connected to the bottom of the cleaning seat.

[0011] In a preferred embodiment, the anti-adhesion system further includes a film laying mechanism, which includes a main truss, an upper auxiliary truss is installed at one end of the main truss, a fork-shaped seat is installed on the upper auxiliary truss, a film reel is detachably installed on the fork-shaped seat, and the film reel is used for unwinding the anti-adhesion film. A guiding cylinder is rotatably installed at one end of the upper auxiliary truss away from the fork-shaped seat, and a pressing block is rotatably installed at one end of the guiding cylinder.

[0012] In a preferred embodiment, a fixing plate is installed on the main truss, a lower auxiliary truss is fixedly arranged at one end of the main truss away from the upper auxiliary truss, and a film pressing cylinder is rotatably installed on the lower auxiliary truss.

[0013] In a preferred embodiment, the spraying mechanism includes a guiding shaft, a first linear driver is installed on the guiding shaft, a first rotary driver is installed at one end of the guiding shaft, and the first rotary driver is fixed inside the processing box.

[0014] In a preferred embodiment, a mounting seat is installed at the output end of the first linear driver, a second rotary driver is installed on the mounting seat, and the output end of the second rotary driver is fixedly connected to the liquid guide plate.

[0015] In a preferred embodiment, a detection mechanism is installed inside the processing box, the detection mechanism includes a mounting platform, a second linear driver is installed on the mounting platform, a detection box is installed at the output end of the second linear driver, a detection window is formed on one side of the detection box, and detection ports are arranged at both ends of the upper pressing roller.

[0016] The beneficial effects of the present invention are as follows: The present invention reduces the friction on the surface of the sheet by directly spraying an anti-sticking medium onto the sheet surface, quickly reduces the sticking problem of the sheet during winding, avoids the problem that the wound and stuck sheets cannot be smoothly separated during subsequent processes such as cutting and shaping, and effectively prevents material tearing and surface damage problems.

[0017] In the present invention, a blowing cylinder is used to remotely blow and evenly spread the anti-sticking medium on the sheet surface, which is applicable to liquid media with stable fluidity. A roller rolls on the surface of the sheet and is applicable to granular or powdery media.

[0018] In the present invention, an anti-sticking film is laid on the sheet. During winding, the anti-sticking film plays an isolating role, thus avoiding the sticking of the sheet during winding, and can meet the winding work of sheets with high surface requirements, such as high-end sheets whose surfaces are easily affected by the anti-sticking medium. The anti-sticking film can be recycled and reused. Although the cost increases, it can better protect high-end sheets.

[0019] In the present invention, a second linear driver drives the detection box to lift. When the detection box moves to the detection port, visual detection is provided for the vision detection system through the detection window, facilitating the observation of the spraying of the anti-sticking medium on the sheet and the film laying effect by the spraying mechanism and the film laying mechanism. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0021] Figure 2 It is a schematic diagram of the structure of the conveying mechanism of the present invention.

[0022] Figure 3 It is a schematic diagram of the structure of the processing mechanism of the present invention.

[0023] Figure 4 It is a schematic diagram of the side cross-section of the processing box of the present invention.

[0024] Figure 5 It is a schematic diagram of the end structure of the processing mechanism of the present invention.

[0025] Figure 6 It is a schematic diagram of the structure of the spraying mechanism of the present invention.

[0026] Figure 7 It is a schematic diagram of the structure of the cleaning base of the present invention.

[0027] Figure 8 It is a schematic diagram of the structure of the film laying mechanism of the present invention.

[0028] Figure 9 It is a schematic diagram of the structure of the detection mechanism of the present invention.

[0029] Figure 10 It is a schematic diagram of the side structure of the spraying mechanism of the present invention.

[0030] Figure 11 This is a schematic side view of the film laying mechanism of the present invention.

[0031] Figure 12 This is a schematic diagram showing the positions of the spraying mechanism and the film laying mechanism of the present invention.

[0032] Figure 13 This is a schematic diagram of the spraying mechanism of the present invention after adjustment.

[0033] Reference numerals: 1, treatment box; 11, conveying mechanism; 111, support frame; 112, support shaft; 113, guide wheel; 114, guide belt; 12, treatment mechanism; 121, treatment seat; 122, installation groove; 123, lower pressing roller; 124, upper pressing roller; 125, detection port; 2, winding mechanism; 21, guiding roller; 22, winding roller; 23, driving mechanism; 3, spraying mechanism; 31, air guiding plate; 311, air blowing cylinder; 312, cleaning seat; 313, roller; 32, liquid guiding plate; 33, mounting seat; 34, guiding shaft; 35, first linear driver; 36, first rotary driver; 37, second rotary driver; 4, film laying mechanism; 41, main truss; 411, fixing plate; 42, upper sub-truss; 421, fork-shaped seat; 422, film reel; 423, guiding cylinder; 424, edge pressing block; 43, lower sub-truss; 431, film pressing cylinder; 5, detection mechanism; 51, installation platform; 52, second linear driver; 53, detection box; 54, detection window; 6, sheet; 7, anti-adhesive film. Detailed implementation manners

[0034] The following further describes the present application in detail with reference to the accompanying drawings. It is necessary to point out here that the following specific implementation manners are only used to further illustrate the present application and should not be construed as limiting the protection scope of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application according to the above application content.

[0035] Embodiment 1: Refer to the attached description Figures 1 to 7, A coiling machine for producing automotive interior fabrics, including a coiling mechanism 2. The input end of the coiling mechanism 2 is provided with a processing box 1. Conveying mechanisms 11 are installed on both sides of the processing box 1. A processing mechanism 12 is installed inside the processing box 1. An anti-sticking system is installed at a position corresponding to the processing mechanism 12 inside the processing box 1. The conveying mechanism 11 conveys the sheet material 6 to the processing mechanism 12, and the anti-sticking system performs anti-sticking treatment on the sheet material 6. The processing mechanism 12 includes a processing seat 121. A lower pressing roller 123 is rotatably installed on the processing seat 121. An upper pressing roller 124 is arranged above the lower pressing roller 123. And two sets of the lower pressing roller 123 and the upper pressing roller 124 are arranged on both sides of the processing seat 121 respectively. An anti-sticking treatment space is formed between the two sets of upper pressing rollers 124. The anti-sticking system includes a spraying mechanism 3. The spraying mechanism 3 includes a gas guiding plate 31. A liquid guiding plate 32 is installed on one side of the gas guiding plate 31. A medium processing component is installed on the side of the gas guiding plate 31 away from the liquid guiding plate 32. The gas guiding plate 31, the liquid guiding plate 32 and the medium processing component are all arranged corresponding to the anti-sticking treatment space. The liquid guiding plate 32 sprays an anti-sticking medium onto the surface of the sheet material 6 in the anti-sticking treatment space, and the medium processing component spreads the anti-sticking medium on the surface of the sheet material 6 evenly.

[0036] It should be noted that a set of lower pressing roller 123 and a set of upper pressing roller 124 form a pair of conveying rollers. At least two pairs of conveying rollers are arranged on the processing seat 121. The anti-sticking treatment space is the space between the two pairs of conveying rollers. The gas guiding plate 31 and the liquid guiding plate 32 form an L-shaped component. The liquid guiding plate 32 is horizontally arranged. A spray outlet is opened at the bottom of the liquid guiding plate 32. Feeding ports are opened on both the gas guiding plate 31 and the liquid guiding plate 32. The anti-sticking medium includes a solid particle medium and a liquid medium. The solid particle medium can be talcum powder, etc., and the liquid medium can be mineral oil, etc.

[0037] In this embodiment, the implementation scenario is specifically as follows: The processing box 1 and the coiling mechanism 2 are arranged at the terminal of the sheet material 6 forming equipment. The forming equipment of the sheet material 6 includes extrusion, calendering and other devices. The sheet material 6 is conveyed into the processing box 1 through the conveying mechanism 11 on one side, so that the sheet material 6 passes between the lower pressing roller 123 and the upper pressing roller 124. In the scenario of small-batch production or equipment debugging stage, when it is necessary to quickly solve the problem of the sheet material 6 sticking during coiling, the anti-sticking medium is introduced into the liquid guiding plate 32 through the feeding port of the liquid guiding plate 32, and the anti-sticking medium is directly sprayed onto the surface of a certain section of the sheet material 6 located in the anti-sticking treatment space through the spray outlet at the bottom of the liquid guiding plate 32. Then the sheet material 6 is output through the conveying mechanism 11 on the other side, and the processed sheet material 6 is coiled by the coiling mechanism 2. Overall, by directly spraying the anti-sticking medium onto the surface of the sheet material 6, the friction on the surface of the sheet material 6 is reduced, the sticking problem of the sheet material 6 during coiling is quickly reduced, and it is avoided that the coiled and stuck sheet material 6 cannot be separated smoothly during subsequent processes such as cutting and shaping, effectively preventing problems such as material tearing and surface damage.

[0038] Further, the conveying mechanism 11 includes a support frame 111, a support shaft 112 is installed on the support frame 111, a guide wheel 113 is rotatably installed on the support shaft 112, and a guide belt 114 is sleeved on the surface of the guide wheel 113.

[0039] It should be noted that the middle part of the support frame 111 is hollow, at least two groups of support shafts 112 are provided corresponding to both ends of the support frame 111, several groups of guide wheels 113 are arranged along the axial direction of the support shaft 112, and several groups of guide belts 114 are distributed in a mesh shape, which is convenient for preventing the anti-adhesion medium from overflowing and affecting the use of the conveying mechanism 11. For example, in the case of a common flat conveyor belt, the anti-adhesion medium overflows onto the flat conveyor belt and accumulates, forming protrusions at the accumulation point when the sheet material 6 is conveyed, resulting in unevenness of the output sheet material 6 and causing wrinkles when the sheet material 6 is wound into a roll. Therefore, the present invention adopts a hollow conveying method to facilitate the falling of the overflowing anti-adhesion medium.

[0040] Still further, mounting grooves 122 are opened at both ends of the processing seat 121, both ends of the upper pressing roller 124 are respectively installed in the corresponding mounting grooves 122, the winding mechanism 2 includes a mounting table, a guiding roller 21 is installed on one side of the mounting table close to the processing box 1, a winding roller 22 is installed on the mounting table, and a driving mechanism 23 is also installed on the mounting table, and the conveying end of the driving mechanism 23 is fixedly connected to one end of the winding roller 22.

[0041] It should be noted that the height of the upper pressing roller 124 can be adjusted through the mounting grooves 122, the sheet material 6 is wound around the winding roller 22 through the guiding of the guiding roller 21, and the driving mechanism 23 drives the winding roller 22 to rotate for winding.

[0042] Embodiment 2: Refer to the attached drawings of the specification Figure 6 and Figure 7 , the medium processing component includes a blowing cylinder 311, the blowing cylinder 311 is fixedly arranged on the side of the air guide plate 31 away from the liquid guide plate 32, and the inside of the blowing cylinder 311 is hollow.

[0043] Further, the medium processing component further includes a cleaning seat 312, and one of the cleaning seat 312 and the blowing cylinder 311 is installed on the air guide plate 31, and a roller 313 is rotatably connected to the bottom of the cleaning seat 312.

[0044] It should be noted that one of the cleaning seat 312 and the blowing cylinder 311 can be selected to be installed on the air guide plate 31 according to the situation, and the blowing cylinder 311 does not contact the sheet material 6.

[0045] In this embodiment, the implementation scenario is specifically as follows: the blowing cylinder 311 is used to remotely blow and level the anti-adhesion medium on the surface of the sheet material 6, which is suitable for liquid media with stable fluidity, and the roller 313 rolls in contact with the surface of the sheet material 6, which is suitable for granular or powdery media.

[0046] Example 3: Referring to the attached drawings of the specification Figure 5 、 Figures 8 to 13 The anti - adhesion system further includes a film - laying mechanism 4. The film - laying mechanism 4 includes a main truss 41. One end of the main truss 41 is installed with an upper sub - truss 42. A fork - shaped seat 421 is installed on the upper sub - truss 42. A film reel 422 is detachably installed on the fork - shaped seat 421. The film reel 422 is used for unwinding the anti - adhesion film 7. A guide cylinder 423 is rotatably installed at one end of the upper sub - truss 42 away from the fork - shaped seat 421. A pressing edge block 424 is rotatably installed at one end of the guide cylinder 423.

[0047] It should be noted that the film reel 422 is positioned on the fork - shaped seat 421 by bolts, and the anti - adhesion film 7 unwound by the film reel 422 passes by one side of the guide cylinder 423 and the pressing edge block 424.

[0048] Furthermore, a fixing plate 411 is installed on the main truss 41. A lower sub - truss 43 is fixedly provided at one end of the main truss 41 away from the upper sub - truss 42. A film - pressing cylinder 431 is rotatably installed on the lower sub - truss 43.

[0049] It should be noted that the anti - adhesion film 7 winds from one side of the film - pressing cylinder 431 to the bottom, and the bottom of the film - pressing cylinder 431 rolls along the surface of the sheet 6.

[0050] In this embodiment, the implementation scenario is specifically as follows: From the perspective of the attached drawings Figure 11 , it is fixed inside the processing box 1 through the fixing plate 411. The film reel 422 unwinds the anti - adhesion film 7. The anti - adhesion film 7 is guided to one side through the guide cylinder 423. The two pressing edge blocks 424 respectively support both sides of the anti - adhesion film 7 to avoid curling. The anti - adhesion film 7 is pressed on the surface of the sheet 6 through the film - pressing cylinder 431. By laying the anti - adhesion film 7 on the sheet 6, during coiling, the anti - adhesion film 7 plays an isolation role, thus avoiding the adhesion of the sheet 6 during coiling. It can meet the coiling work of the sheet 6 with high surface requirements, such as high - end sheets 6 whose surfaces are easily affected by anti - adhesion media. The anti - adhesion film 7 can be recycled and reused. Although the cost increases, it can better protect the high - end sheet 6.

[0051] Example 4: Referring to the attached drawings of the specification Figures 5 to 13 The spraying mechanism 3 includes a guide shaft 34. A first linear driver 35 is installed on the guide shaft 34. A first rotary driver 36 is installed at one end of the guide shaft 34, and the first rotary driver 36 is fixed inside the processing box 1.

[0052] It should be noted that the first linear driver 35 moves along the axial direction of the guide shaft 34, and the first rotary driver 36 drives the guide shaft 34 to rotate.

[0053] Further, a mounting seat 33 is installed at the output end of the first linear driver 35, a second rotary driver 37 is installed on the mounting seat 33, and the output end of the second rotary driver 37 is fixedly connected to the liquid guide plate 32.

[0054] It should be noted that the first linear driver 35 drives the mounting seat 33 to move axially along the guide shaft 34, and the second rotary driver 37 drives the liquid guide plate 32 to rotate.

[0055] In this embodiment, the implementation scenario is specifically as follows: This embodiment has two implementation manners. Implementation manner one: The spraying mechanism 3 and the film laying mechanism 4 are used simultaneously. The spraying mechanism 3 first sprays the anti-adhesion medium on the surface of the sheet 6, and then the film laying mechanism 4 lays the anti-adhesive film 7 on the surface of the sheet 6, which is applicable to the case where the anti-adhesion medium is a solid particle medium. Implementation manner two: The first rotary driver 36 drives the guide shaft 34 to rotate, so that the spray outlet of the liquid guide plate 32 faces the film laying mechanism 4. Then, the second rotary driver 37 drives the liquid guide plate 32 to rotate 180 degrees to swap the positions of the air guide plate 31 and the liquid guide plate 32. Finally, as shown in the attached Figure 13 figure, the liquid guide plate 32 first sprays the anti-adhesion medium on the surface of the anti-adhesive film 7, which is applicable to liquid media. Then, the anti-adhesion medium on the surface of the anti-adhesive film 7 is spread evenly by the air blowing cylinder 311, or the cleaning seat 312 and the roller 313 are used. By adjusting the position of the mounting seat 33, the roller 313 contacts the surface of the anti-adhesive film 7 to spread the anti-adhesion medium on the surface of the anti-adhesive film 7 evenly. This embodiment is applicable to extreme environments with high humidity and high temperature, or the sheet 6 is made of special materials and has its own viscosity, resulting in the inability to directly spread the anti-adhesion medium evenly on the surface of the sheet 6, and has the strongest anti-adhesion effect in the above embodiments of the present invention.

[0056] Embodiment 5: Referring to the attached drawings of the specification Figure 3 and Figure 9 , a detection mechanism 5 is installed inside the processing box 1. The detection mechanism 5 includes a mounting platform 51. A second linear driver 52 is installed on the mounting platform 51. The output end of the second linear driver 52 is installed with a detection box 53. A detection window 54 is opened on one side of the detection box 53, and detection ports 125 are provided at both ends of the upper pressing roller 124.

[0057] It should be noted that a vision detection system of the prior art is installed inside the detection box 53.

[0058] In this embodiment, the implementation scenario is specifically as follows: The second linear driver 52 drives the detection box 53 to move up and down. When the detection box 53 moves to the detection port 125, visual detection is provided for the vision detection system through the detection window 54, which is convenient for observing the spraying of the anti-adhesion medium on the sheet 6 by the spraying mechanism 3 and the film laying effect of the film laying mechanism 4.

[0059] Working principle: The sheet 6 is conveyed into the processing box 1 by the conveying mechanism 11 on one side, so that the sheet 6 passes between the lower pressing roller 123 and the upper pressing roller 124. The anti-adhesion medium is introduced into the inside of the liquid guide plate 32 through the feeding port of the liquid guide plate 32, and the anti-adhesion medium is directly sprayed onto the surface of a certain section of the sheet 6 located in the anti-adhesion treatment space through the spray outlet at the bottom of the liquid guide plate 32.

[0060] The air blowing cylinder 311 is used to remotely blow and spread the anti-adhesion medium on the surface of the sheet 6, and the roller 313 rolls in contact with the surface of the sheet 6.

[0061] It is fixed inside the processing box 1 through the fixing plate 411. The anti-adhesive film roll 422 unwinds the anti-adhesive film 7, guides the anti-adhesive film 7 to one side through the guiding cylinder 423, and presses the anti-adhesive film 7 onto the surface of the sheet 6 through the film pressing cylinder 431.

[0062] The detection box 53 is driven to lift by the second linear driver 52. When the detection box 53 moves to the detection port 125, visual detection is provided for the visual detection system through the detection window 54, which is convenient for observing the spraying of the anti-adhesion medium and the film laying effect of the spraying mechanism 3 and the film laying mechanism 4 on the sheet 6.

[0063] Then the sheet 6 is output through the conveying mechanism 11 on the other side, and the processed sheet 6 is wound into a roll by the winding mechanism 2.

[0064] The above embodiments only represent several implementation manners of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the patent of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention.

Claims

1. A coiling machine for producing automotive interior fabrics, characterized in that: It includes a winding mechanism (2). A processing box (1) is provided at the input end of the winding mechanism (2). Conveying mechanisms (11) are installed on both sides of the processing box (1). A processing mechanism (12) is installed inside the processing box (1). An anti-adhesion system is installed inside the processing box (1) at a position corresponding to the processing mechanism (12). The conveying mechanism (11) conveys a sheet (6) to the processing mechanism (12), and the anti-adhesion system performs anti-adhesion treatment on the sheet (6). The processing mechanism (12) includes a processing seat (121). A pressing roller (123) is rotatably installed on the processing seat (121). An upper pressing roller (124) is provided above the pressing roller (123). Two sets are arranged on both sides of the processing seat (121) corresponding to the pressing roller (123) and the upper pressing roller (124). An anti-adhesion treatment space is formed between the two sets of upper pressing rollers (124). The anti-adhesion system includes a spraying mechanism (3). The spraying mechanism (3) includes a gas guiding plate (31). A liquid guiding plate (32) is installed on one side of the gas guiding plate (31). A medium processing component is installed on the side of the gas guiding plate (31) away from the liquid guiding plate (32). The gas guiding plate (31), the liquid guiding plate (32) and the medium processing component are all arranged corresponding to the anti-adhesion treatment space. The liquid guiding plate (32) sprays an anti-adhesion medium on the surface of the sheet (6) in the anti-adhesion treatment space, and the medium processing component spreads the anti-adhesion medium on the surface of the sheet (6).

2. The coiling machine for producing automotive interior fabric according to claim 1, wherein: The conveying mechanism (11) includes a support frame (111). A support shaft (112) is installed on the support frame (111). A guiding wheel (113) is rotatably installed on the support shaft (112). A guiding belt (114) is sleeved on the surface of the guiding wheel (113).

3. A coiling machine for producing automotive interior fabrics according to claim 2, characterized in that: Installation grooves (122) are opened at both ends of the processing seat (121). The two ends of the upper pressing roller (124) are respectively installed in the corresponding installation grooves (122). The winding mechanism (2) includes an installation table. A guiding roller (21) is installed on the side of the installation table close to the processing box (1). A winding roller (22) is installed on the installation table. A driving mechanism (23) is also installed on the installation table, and the conveying end of the driving mechanism (23) is fixedly connected to one end of the winding roller (22).

4. A coiling machine for producing automotive interior fabrics according to claim 3, characterized in that: The medium processing component includes a blowing cylinder (311). The blowing cylinder (311) is fixedly provided on the side of the gas guiding plate (31) away from the liquid guiding plate (32). The inside of the blowing cylinder (311) is hollow.

5. A coiling machine for producing automotive interior fabrics according to claim 4, characterized in that: The medium processing component further includes a cleaning seat (312). One of the cleaning seat (312) and the blowing cylinder (311) is installed on the gas guiding plate (31). A roller (313) is rotatably connected to the bottom of the cleaning seat (312).

6. A coiling machine for producing automotive interior fabrics according to claim 5, characterized in that: The anti-sticking system further includes a film laying mechanism (4), and the film laying mechanism (4) includes a main truss (41). One end of the main truss (41) is provided with an upper auxiliary truss (42). A fork-shaped seat (421) is installed on the upper auxiliary truss (42). A film reel (422) is detachably installed on the fork-shaped seat (421). The film reel (422) is used for unwinding the anti-sticking film (7). A guide cylinder (423) is rotatably installed at one end of the upper auxiliary truss (42) away from the fork-shaped seat (421). A pressing edge block (424) is rotatably installed at one end of the guide cylinder (423).

7. A coiling machine for producing automotive interior fabrics according to claim 6, characterized in that: A fixing plate (411) is installed on the main truss (41). A lower auxiliary truss (43) is fixedly provided at one end of the main truss (41) away from the upper auxiliary truss (42). A film pressing cylinder (431) is rotatably installed on the lower auxiliary truss (43).

8. A coiling machine for producing automotive interior fabrics according to claim 7, characterized in that: The spraying mechanism (3) includes a guide shaft (34). A first linear driver (35) is installed on the guide shaft (34). A first rotary driver (36) is installed at one end of the guide shaft (34), and the first rotary driver (36) is fixed inside the processing box (1).

9. The coiling machine for producing automotive interior fabrics according to claim 8, wherein: An installation seat (33) is installed at the output end of the first linear driver (35). A second rotary driver (37) is installed on the installation seat (33), and the output end of the second rotary driver (37) is fixedly connected to the liquid guide plate (32).

10. A coiling machine for producing automotive interior fabrics according to claim 9, characterized in that: A detection mechanism (5) is installed inside the processing box (1). The detection mechanism (5) includes an installation platform (51). A second linear driver (52) is installed on the installation platform (51). A detection box (53) is installed at the output end of the second linear driver (52). A detection window (54) is opened on one side of the detection box (53). Detection ports (125) are provided at both ends of the upper pressing roller (124).

Citation Information

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