Spraying equipment for textile products
By introducing an adjustment structure and a buffer guide component into the spraying equipment for textile products, the problem of limited equipment spacing adjustment has been solved, enabling flexible and precise adjustment of the spacing between the driven roller, the driving roller, and the cleaning roller, thereby improving the adaptability and production efficiency of the equipment.
Patent Information
- Application Number
- CN202520210643.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-10
AI Technical Summary
Existing textile line spraying equipment is limited by the thread hole spacing when adjusting the distance between the driven roller, the driving roller, and the cleaning roller, resulting in low equipment adaptability and production efficiency.
An adjustable structure is adopted, including a driver, a connecting frame, and a buffer guide assembly. The drive roller and the cleaning roller are connected by a belt and pulley to achieve flexible adjustment of the gap. Components such as sliding blocks, dampers, and limit grooves are used to improve the stability and accuracy of the adjustment.
It enables flexible and precise adjustment of the distance between the driven roller, the driving roller, and the cleaning roller, improving the adaptability and production efficiency of the equipment. It is suitable for textile yarns of different sizes without the need to replace rollers or adjust the equipment structure.
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Figure CN223793362U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of textile equipment technology, and in particular relates to a spraying device for textile products. Background Technology
[0002] Modern electrostatic nanofiber web forming technology is used to produce textiles for clothing, industrial use, and decoration. Therefore, modern textiles refer to a multi-scale structural processing technology for fibers or fiber assemblies. During the production of textile yarns, they need to be sprayed with color to give them bright colors, so that they can be put into subsequent use and increase sales. Corresponding textile yarn spraying equipment is required for spraying.
[0003] The patent with publication number CN218132687U discloses a textile thread surface spraying device, which includes a base plate. Two vertical plates are fixedly connected to one side of the base plate. Two first through holes are opened on one side of each of the two vertical plates, and a first cleaning roller is rotatably connected inside the two first through holes.
[0004] The aforementioned patent uses the cooperation of a connecting plate and a cylindrical rod to drive the second cleaning roller and the driven roller to adjust the spacing between the cleaning rollers and the spacing between the active roller and the driven roller for lines of different sizes. It is fixed by screws and multiple threaded holes. Although the spacing can be adjusted, the adjustment distance is affected by the spacing of the threaded holes and cannot be adjusted arbitrarily, so it needs to be improved. Utility Model Content
[0005] The purpose of this application is to provide a spraying device for textile products that can solve the above-mentioned problems.
[0006] The purpose of this application is to provide a spraying device for textile products, including: a frame, a guide structure, a cleaning structure and a spraying structure disposed on the frame, the guide structure including an active roller and a driven roller disposed on one side of the frame, the cleaning structure including a first cleaning roller and a second cleaning roller disposed on the other side of the frame, and the spraying structure disposed in the frame and used to spray dye onto textile yarns.
[0007] Also includes:
[0008] An adjustment structure, mounted on the frame, is used to adjust the distance between the driven roller and the driving roller, as well as between the first cleaning roller and the second cleaning roller;
[0009] The adjustment mechanism consists of two sets, which are respectively connected to the driven roller and the second cleaning roller, and the driving roller and the first cleaning roller are connected by a belt and a pulley.
[0010] The above-described textile coating equipment uses a frame as the supporting structure for the entire device. The guiding structure includes a drive roller and a driven roller located on one side of the frame, used to guide the textile yarn through. The cleaning structure includes a first cleaning roller and a second cleaning roller located on the other side of the frame, used to clean the textile yarn before coating. The coating structure is located within the frame and is used to spray dye onto the textile yarn. An adjusting structure, mounted on the frame, is used to adjust the distance between the driven roller and the drive roller, as well as between the first and second cleaning rollers. Two sets of adjusting mechanisms are provided and connected to the driven roller and the second cleaning roller respectively. The drive roller and the first cleaning roller are connected by a belt and pulley to ensure synchronous rotation.
[0011] By adjusting the structural settings, the distance between the driven roller and the driving roller, as well as between the first cleaning roller and the second cleaning roller, can be flexibly adjusted. This adjustment is no longer limited by the spacing of the threaded holes, thus improving the adaptability and flexibility of the equipment. The flexible distance adjustment allows the equipment to be used with textile yarns of different sizes without the need to change rollers of different sizes or adjust the equipment structure, thereby improving production efficiency and convenience.
[0012] Furthermore, the adjustment structure includes:
[0013] The drive is located at the top of the rack;
[0014] A connecting frame, located inside the frame, includes a top plate and extension plates located on both sides of the top plate. Sliding blocks are provided on the extension plates, and sliding grooves adapted to the sliding blocks are provided on the frame.
[0015] The output shaft of the driver is connected to the top of the top plate, and both the first cleaning roller and the driven roller are installed in the connecting frame.
[0016] The drive unit, located at the top of the frame, serves as the power source for moving the connecting frame vertically or horizontally, thereby adjusting the distance between the driven roller and the driving roller, as well as between the first and second cleaning rollers. The connecting frame, situated within the frame, includes a top plate and extension plates on either side of the top plate, forming a framework for mounting and supporting the driven roller and the first cleaning roller. Sliding blocks are provided on the extension plates, adapting to grooves on the frame to ensure smooth movement of the connecting frame, thus adjusting the roller distance. Both the driven roller and the first cleaning roller are mounted within the connecting frame and move with it, thereby adjusting the distance between them and the driving and second cleaning rollers.
[0017] The drive mechanism moves the connecting frame, allowing for precise adjustment of the distance between the driven roller and the driving roller, as well as between the first and second cleaning rollers. This adjustment method is more flexible and accurate than traditional threaded hole adjustment. Furthermore, due to the adjustable structure, this textile coating equipment can be used with textile yarns of different sizes without requiring the replacement of rollers of different sizes or adjustments to the equipment structure, thus improving the equipment's adaptability and flexibility.
[0018] Furthermore: Buffer guide components are provided on both sides of the sliding block to make the adjustment of the driven roller and the second cleaning roller more stable. The buffer guide components include:
[0019] Guide grooves are provided on both sides of the slide groove, and guide grooves are provided inside the guide grooves;
[0020] Combined guide blocks are set on both sides of the sliding block and adapted to the guide groove;
[0021] A top mounting slot is provided at the top of the slide, and a damper is installed inside it;
[0022] The extension end of the damper is connected to the top of the sliding block.
[0023] Guide grooves are located on both sides of the slide groove to provide guidance and limit for the combined guide blocks. Guide slots are located within the guide grooves and fit with the combined guide blocks to ensure the sliding block maintains a stable trajectory during movement. Combined guide blocks are located on both sides of the sliding block and fit with the guide slots. The combined guide blocks increase the contact area between the sliding block and the slide groove, improving sliding stability. They also prevent the sliding block from deflecting or wobbling during movement. A top mounting slot is located at the top of the slide groove to provide a mounting position for the damper. The damper, as a device that generates damping force, slows down the movement speed of the sliding block and increases the smoothness of movement. The telescopic end of the damper connects to the top of the sliding block. When the sliding block moves, the damper generates resistance, thus slowing down the movement speed of the sliding block, making the adjustment process smoother, contributing to more stable spacing adjustment, and achieving more precise adjustment of the spacing between the driven roller and the second cleaning roller.
[0024] Furthermore, the combined guide block includes:
[0025] The connecting block has a ball bearing adapted to the guide groove at one end and is connected to the sliding block at the other end.
[0026] The limiting block also has a ball bearing at one end;
[0027] The top of the limiting block is hinged to the connecting block.
[0028] One end of the connecting block is equipped with a ball bearing that matches the guide groove. The ball bearing rolls within the guide groove, providing smooth guidance for the sliding block. The other end of the connecting block connects to the sliding block, ensuring that the sliding block moves with the connecting block. The limiting block, as another part of the combined guide block, also has a ball bearing at one end. It can also roll on the guide groove or a nearby surface, serving as an auxiliary guide and limiting element. The top of the limiting block is connected to the connecting block via a hinge structure. This connection allows the limiting block and the connecting block to rotate relative to each other within a certain range, thus better adapting to the subsequent limiting groove and achieving a limiting and buffering effect.
[0029] Furthermore, a limiting groove is provided at the bottom of the guide groove. The limiting groove is bent outward and arc-shaped. The limiting block cooperates with the limiting groove through a ball bearing. When the limiting block enters the limiting groove, the included angle between the limiting block and the connecting block becomes smaller.
[0030] The bottom of the guide groove is equipped with a limiting groove, which bends outward and forms an arc, allowing the limiting block to gradually enter the limiting groove during movement. The main function of the limiting groove is to restrict the range of movement of the limiting block. In conjunction with the limiting block, once the limiting block enters the limiting groove, it can change its direction of movement. By moving in the outward arc direction, the vertical force is dispersed in the bending direction, thereby further improving the buffering and adjustment effect. Simultaneously, as the limiting block enters the limiting groove, due to the arc shape of the groove, the limiting block is guided, causing the angle between it and the connecting block to gradually decrease. This change in angle helps increase the stability of the combined guide block, preventing the sliding block from wobbling or deflecting during movement.
[0031] Furthermore, a mounting base is provided on the guide groove, and a tension spring is provided on the mounting base, with the other end of the tension spring connected to the limiting block.
[0032] The mounting base is positioned on the guide groove to provide a mounting point for the tension spring. The other end of the tension spring is connected to the limiting block, forming an elastic connection system. When the limiting block is subjected to external force during movement, the tension spring will undergo tensile deformation, which, in conjunction with the damper, further improves the buffering effect and prevents the limiting block from wobbling during movement.
[0033] The beneficial effects of this application are:
[0034] 1. By adjusting the structure, the distance between the driven roller and the driving roller, as well as between the first cleaning roller and the second cleaning roller, can be flexibly adjusted. This adjustment is no longer limited by the spacing of the threaded holes, thereby improving the adaptability and flexibility of the equipment.
[0035] 2. Through the cooperation of the limiting groove and the limiting block, when the limiting block enters the limiting groove, it can change the direction of movement. By moving in the outward arc bending direction, the vertical force can be dispersed in the bending direction, thereby further improving the buffering and adjustment effect.
[0036] 3. By setting a tension spring, the two ends of the tension spring are connected to the mounting base and the limiting block, thus forming an elastic connection system. When the limiting block is subjected to external force during movement, the tension spring will undergo tensile deformation, which, together with the damper, further improves the buffering effect and can also prevent the limiting block from shaking during movement. Attached Figure Description
[0037] Figure 1 This is a schematic diagram of the structure of this utility model;
[0038] Figure 2 This is a structural schematic diagram from another perspective of the present invention;
[0039] Figure 3 This is a cross-sectional view of the present invention;
[0040] Figure 4 This is a schematic diagram of the structure of the buffer guidance component of this utility model;
[0041] Figure 5 This is a schematic diagram of the cooperation between the sliding block and the buffer guide component of this utility model.
[0042] The reference numerals in the figure are as follows: 100, frame; 110, guide structure; 111, drive roller; 112, driven roller; 120, cleaning structure; 121, first cleaning roller; 122, second cleaning roller; 130, spraying structure; 200, adjusting structure; 210, driver; 220, connecting frame; 221, top plate; 222, extension plate; 230, sliding block; 240, chute; 300, buffer guide assembly; 310, guide groove; 320, guide slot; 330, combined guide block; 331, connecting block; 332, limiting block; 333, ball bearing; 340, top mounting slot; 350, damper; 360, limiting slot; 370, tension spring. Detailed Implementation
[0043] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.
[0044] The terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and the number of objects is not limited; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0045] The following description, in conjunction with the accompanying drawings, details the spraying equipment for textile products provided in this application through specific embodiments and application scenarios.
[0046] Example 1:
[0047] like Figures 1 to 3 As shown, this application provides a spraying device for textile products, including: a frame 100, a guide structure 110 disposed on the frame 100, a cleaning structure 120 and a spraying structure 130. The guide structure 110 includes a drive roller 111 and a driven roller 112 disposed on one side of the frame 100. The cleaning structure 120 includes a first cleaning roller 121 and a second cleaning roller 122 disposed on the other side of the frame 100. The spraying structure 130 is disposed inside the frame 100 and is used to spray dye onto textile yarns.
[0048] Also includes:
[0049] An adjustment structure 200 is mounted on the frame 100 and is used to adjust the distance between the driven roller 112 and the driving roller 111, as well as between the first cleaning roller 121 and the second cleaning roller 122.
[0050] The adjustment mechanism is provided in two sets, which are respectively connected to the driven roller 112 and the second cleaning roller 122, and the driving roller 111 and the first cleaning roller 121 are connected by a belt and a pulley.
[0051] In some embodiments of this application, such as Figure 1As shown, the above-described textile coating equipment uses a frame 100 as the supporting structure for the entire equipment. The guiding structure 110 includes a drive roller 111 and a driven roller 112 located on one side of the frame 100, used to guide the textile yarn through. The cleaning structure 120 includes a first cleaning roller 121 and a second cleaning roller 122 located on the other side of the frame 100, used to clean the textile yarn before coating. The coating structure 130 is located within the frame 100 and used to coat the textile yarn with dye. An adjusting structure 200, mounted on the frame 100, is used to adjust the distance between the driven roller 112 and the drive roller 111, as well as between the first cleaning roller 121 and the second cleaning roller 122. Two sets of adjusting mechanisms are provided and connected to the driven roller 112 and the second cleaning roller 122 respectively. The drive roller 111 and the first cleaning roller 121 are connected by a belt and a pulley to ensure synchronous rotation.
[0052] By adjusting the configuration of structure 200, the distance between the driven roller 112 and the driving roller 111, as well as between the first cleaning roller 121 and the second cleaning roller 122, can be flexibly adjusted. This adjustment is no longer limited by the spacing of the threaded holes, thus improving the adaptability and flexibility of the equipment. The flexible distance adjustment allows the equipment to be used with textile yarns of different sizes without the need to replace rollers of different sizes or adjust the equipment structure, thereby improving production efficiency and convenience.
[0053] Example 2:
[0054] This application provides a spraying device for textile products. In addition to the above-mentioned technical features, the spraying device for textile products in this application also includes the following technical features.
[0055] like Figures 3 to 5 As shown, the adjustment structure 200 includes:
[0056] Drive 210 is located at the top of rack 100;
[0057] The connecting frame 220 is disposed within the frame 100 and includes a top plate 221 and extension plates 222 located on both sides of the top plate 221. A sliding block 230 is provided on the extension plate 222, and a sliding groove 240 adapted to the sliding block 230 is provided on the frame 100.
[0058] The output shaft of the driver 210 is connected to the top of the top plate 221, and the first cleaning roller 121 and the driven roller 112 are both installed in the connecting frame 220.
[0059] In this embodiment, the driver 210 is disposed on the top of the frame 100 as a power source to drive the connecting frame 220 to move up and down or left and right, thereby adjusting the distance between the driven roller 112 and the driving roller 111, as well as the first cleaning roller 121 and the second cleaning roller 122. The connecting frame 220 is disposed within the frame 100 and includes a top plate 221 and extension plates 222 located on both sides of the top plate 221, forming a frame for mounting and supporting the driven roller 112 and the first cleaning roller 121. Sliding blocks 230 are provided on the extension plates 222, which are adapted to the sliding grooves 240 on the frame 100 to ensure that the connecting frame 220 can move smoothly on the frame 100, thereby achieving the adjustment of the roller distance. The driven roller 112 and the first cleaning roller 121 are both mounted within the connecting frame 220 and move with the connecting frame 220, thereby achieving the adjustment of the distance between them and the driving roller 111 and the second cleaning roller 122.
[0060] By moving the connecting frame 220 via the driver 210, precise adjustment of the distance between the driven roller 112 and the driving roller 111, as well as between the first cleaning roller 121 and the second cleaning roller 122, can be achieved. This adjustment method is more flexible and accurate than traditional threaded hole adjustment. Furthermore, due to the presence of the adjustment structure 200, this textile spraying equipment can be adapted to textile yarns of different sizes without the need to change rollers of different sizes or adjust the equipment structure, thereby improving the adaptability and flexibility of the equipment.
[0061] Example 3:
[0062] This application provides a spraying device for textile products. In addition to the above-mentioned technical features, the spraying device for textile products in this application also includes the following technical features.
[0063] like Figures 3 to 5 As shown, buffer guide assemblies 300 are provided on both sides of the sliding block 230 to make the adjustment of the driven roller 112 and the second cleaning roller 122 more stable. The buffer guide assembly 300 includes:
[0064] Guide grooves 310 are provided on both sides of slide groove 240, and guide grooves 320 are provided inside guide grooves 310;
[0065] The combined guide block 330 is disposed on both sides of the sliding block 230 and is adapted to the guide groove 320;
[0066] A top mounting groove 340 is provided at the top of the slide 240, and a damper 350 is provided inside it.
[0067] The telescopic end of the damper 350 is connected to the top of the sliding block 230.
[0068] In this embodiment, guide grooves 310 are disposed on both sides of the slide groove 240 to provide guidance and limiting for the combined guide block 330. Guide grooves 320 are disposed within the guide grooves 310 and are adapted to the combined guide block 330 to ensure that the sliding block 230 maintains a stable trajectory during movement. The combined guide blocks 330 are disposed on both sides of the sliding block 230 and are adapted to the guide grooves 320. The placement of the combined guide blocks 330 increases the contact area between the sliding block 230 and the slide groove 240, improving sliding stability. Simultaneously, it also prevents the sliding block 230 from deflecting or wobbling during movement. A top mounting groove 340 is disposed at the top of the slide groove 240 to provide an installation position for the damper 350. The damper 350, as a device capable of generating damping force, is used to slow down the movement speed of the sliding block 230 and increase the smoothness of movement. The telescopic end of the damper 350 is connected to the top of the sliding block 230. When the sliding block 230 moves, the damper 350 will generate a certain resistance to it, thereby slowing down the movement speed of the sliding block 230, making the adjustment process smoother, which helps to make the spacing adjustment more stable and achieve more precise adjustment of the spacing between the driven roller 112 and the second cleaning roller 122.
[0069] Furthermore, the combined boot block 330 includes:
[0070] The connecting block 331 has a ball 333 at one end that is adapted to the guide groove 320, and the other end is connected to the sliding block 230.
[0071] The limiting block 332 is also provided with a ball bearing 333 at one end;
[0072] The top of the limiting block 332 is hinged to the connecting block 331.
[0073] One end of the connecting block 331 is provided with a ball bearing 333 adapted to the guide groove 320. The ball bearing 333 can roll within the guide groove 320, providing a smooth guiding effect for the sliding block 230. The other end of the connecting block 331 is connected to the sliding block 230, ensuring that the sliding block 230 can move with the movement of the connecting block 331. The limiting block 332, as another part of the combined guide block 330, is also provided with a ball bearing 333 at one end. It can also roll on or near the guide groove 320, playing a role in auxiliary guidance and limiting. The top of the limiting block 332 is connected to the connecting block 331 through a hinge structure. This connection method allows the limiting block 332 and the connecting block 331 to rotate relative to each other within a certain range, thereby adapting to the subsequent limiting groove 360 and better achieving the limiting and buffering effect.
[0074] Example 4:
[0075] This application provides a spraying device for textile products. In addition to the above-mentioned technical features, the spraying device for textile products in this application also includes the following technical features.
[0076] like Figure 4 and Figure 5 As shown, a limiting groove 360 is provided at the bottom of the guide groove 320. The limiting groove 360 is bent outward and arc-shaped. The limiting block 332 cooperates with the limiting groove 360 through the ball bearing 333. When the limiting block 332 enters the limiting groove 360, the included angle between the limiting block 332 and the connecting block 331 becomes smaller.
[0077] In this embodiment, a limiting groove 360 is provided at the bottom of the guide groove 320. The limiting groove 360 bends outward and is arc-shaped, allowing the limiting block 332 to gradually enter the limiting groove 360 during movement. The main function of the limiting groove 360 is to restrict the movement range of the limiting block 332. By cooperating with the limiting block 332, the limiting block 332 can change its direction of movement after entering the limiting groove 360. By moving in the outward arc-shaped bending direction, the vertical force can be dispersed in the bending direction, thereby further improving the buffering and adjustment effect. At the same time, after the limiting block 332 enters the limiting groove 360, due to the arc-shaped setting of the limiting groove 360, the limiting block 332 will be guided to a certain extent, causing the included angle between it and the connecting block 331 to gradually decrease. This change in included angle helps to increase the stability of the combined guide block 330 and prevent the sliding block 230 from shaking or deflecting during movement.
[0078] Furthermore, a mounting base is provided on the guide groove 310, and a tension spring 370 is provided on the mounting base. The other end of the tension spring 370 is connected to the limiting block 332.
[0079] In some embodiments of this application, a mounting base is disposed on a guide groove 310 to provide a mounting point for the tension spring 370. The other end of the tension spring 370 is connected to the limiting block 332, thereby forming an elastic connection system. When the limiting block 332 is subjected to external force during movement, the tension spring 370 will undergo tensile deformation, which, in conjunction with the damper 350, further improves the buffering effect and also prevents the limiting block 332 from swaying during movement.
[0080] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, it should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may also include performing functions substantially simultaneously or in the reverse order, depending on the functions involved. For example, the described methods may be performed in a different order than described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples. The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.
Claims
1. A spraying device for textile products, comprising: The frame (100), the guide structure (110), the cleaning structure (120) and the spraying structure (130) are disposed on the frame (100). The guide structure (110) includes a drive roller (111) and a driven roller (112) disposed on one side of the frame (100). The cleaning structure (120) includes a first cleaning roller (121) and a second cleaning roller (122) disposed on the other side of the frame (100). The spraying structure (130) is disposed in the frame (100) and is used to spray dye onto textile yarns. Its characteristic is that it further includes: An adjustment structure (200) is provided on the frame (100) for adjusting the distance between the driven roller (112) and the driving roller (111), as well as between the first cleaning roller (121) and the second cleaning roller (122); The adjustment mechanism is provided in two sets, which are respectively connected to the driven roller (112) and the second cleaning roller (122), and the driving roller (111) and the first cleaning roller (121) are connected by a belt and a pulley.
2. The spraying equipment for textile products according to claim 1, characterized in that: The adjustment structure (200) includes: A drive (210) is located on top of a rack (100); A connecting frame (220) is provided inside the frame (100), including a top plate (221) and extension plates (222) located on both sides of the top plate (221). A sliding block (230) is provided on the extension plate (222), and a sliding groove (240) adapted to the sliding block (230) is provided on the frame (100). The output shaft of the driver (210) is connected to the top of the top plate (221), and the first cleaning roller (121) and the driven roller (112) are both installed in the connecting frame (220).
3. The spraying equipment for textile products according to claim 2, characterized in that: The sliding block (230) is provided with buffer guide components (300) on both sides to make the adjustment of the driven roller (112) and the second cleaning roller (122) more stable. The buffer guide components (300) include: A guide groove (310) is provided on both sides of the slide groove (240), and a guide groove (320) is provided inside the guide groove (310); A combined guide block (330) is disposed on both sides of the sliding block (230) and adapted to the guide groove (320); A top mounting groove (340) is provided on the top of the slide groove (240), and a damper (350) is provided inside it; The telescopic end of the damper (350) is connected to the top of the sliding block (230).
4. The spraying equipment for textile products according to claim 3, characterized in that: The combined guide block (330) includes: The connecting block (331) has a ball (333) at one end that is adapted to the guide groove (320), and the other end is connected to the sliding block (230); The limiting block (332) also has a ball bearing (333) at one end; The top of the limiting block (332) is hinged to the connecting block (331).
5. The spraying equipment for textile products according to claim 4, characterized in that: The bottom of the guide groove (320) is provided with a limiting groove (360). The limiting groove (360) bends outward and is arc-shaped. The limiting block (332) cooperates with the limiting groove (360) through a ball (333). When the limiting block (332) enters the limiting groove (360), the included angle between the limiting block (332) and the connecting block (331) becomes smaller.
6. The spraying equipment for textile products according to claim 5, characterized in that: A mounting base is provided on the guide groove (310), and a tension spring (370) is provided on the mounting base. The other end of the tension spring (370) is connected to the limiting block (332).
Citation Information
Patent Citations
Textile line surface spraying equipment for textiles
CN218132687U