Textile after-finishing rotating cage structure
By designing the textile and sorting the cage structure, the textile finishing process is simplified, the cumbersome problem of textile fixation is solved, and the finishing efficiency and stability of the cage are improved.
Patent Information
- Application Number
- CN202422053499.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-22
AI Technical Summary
During the post-tidying process of existing textiles, it is more complicated to fix the textiles on the fixing ring, resulting in low finishing efficiency.
A textile rear-tidy cage structure is designed, including a cylindrical side wall, a front plate and a rear plate. There is an inlet in the center of the front plate, and there is a spindle connecting driving component on the outside of the rear plate. There are multiple cage grout plates inside the cage structure. The finishing is completed by spraying the finishing liquid and rotating it.
The textile finishing process is simplified, the slip phenomenon is avoided, the finishing efficiency is improved, and the stability and torsion resistance of the cage are enhanced.
Smart Images

Figure CN223061247U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of textile post - finishing, and particularly relates to a textile post - finishing rotating cage structure. Background Technique
[0002] Garment post - finishing is an important link in the clothing production process. When carrying out post - finishing, the finishing liquid is filled into a spray bottle and evenly sprayed on the surface of the clothing, and the clothing is kneaded to ensure the uniform distribution of the finishing liquid. With the development of automated equipment, garment production enterprises gradually adopt automated finishing equipment for textile post - finishing, and complete the post - finishing process by spraying the finishing liquid into the interior of the finishing equipment.
[0003] For example, the Chinese patent with the publication number CN208869818U discloses a silk floss sheet softening finishing device. A rotating shaft is arranged inside the finishing device, and a plurality of fixing rings are arranged on the rotating shaft. When finishing textiles, the textiles are fixed on the fixing rings, the finishing liquid is poured in, and the rotating shaft drives the textiles to rotate to play a finishing role. However, in this scheme, before finishing, each textile needs to be fixed on the fixing ring in advance, and this process is rather cumbersome, resulting in a low finishing efficiency of the textiles. Content of the Utility Model
[0004] The purpose of the utility model is to overcome the defects existing in the prior art and provide a textile post - finishing rotating cage structure.
[0005] The utility model provides a textile post - finishing rotating cage structure, which is arranged inside a textile finishing device. The textile finishing is completed by spraying the finishing liquid into the rotating cage structure and cooperating with the rotation of the rotating cage structure. The rotating cage structure includes a cylindrical side wall, a front plate arranged at the front end of the cylindrical side wall, and a rear plate arranged at the rear end of the cylindrical side wall;
[0006] The cylindrical side wall is a cylindrical structure formed by bending a rectangular steel plate. A number of through - holes are evenly arranged on the cylindrical side wall. Both the front plate and the rear plate are circular structures and are respectively fixedly connected to the front end and the rear end of the cylindrical side wall;
[0007] A feed port is arranged at the center of the front plate for placing textiles inside the rotating cage structure. A sealing connection ring is arranged at the feed port for connecting the door plate of the textile finishing device;
[0008] A main shaft is arranged at the center outside the rear plate for connecting the driving component of the textile finishing device to drive the rotation of the rotating cage structure;
[0009] Inside the rotating cage structure, a number of rotating cage paddle plates are arranged circumferentially. The outer side of each rotating cage paddle plate is connected to the cylindrical side wall. The front end of each rotating cage paddle plate is fixedly connected to the front plate through a front end connecting plate. The rear end of each rotating cage paddle plate is connected to the rear plate through a rear end connecting plate.
[0010] As a further solution, a number of front end strengthening plates are arranged on the outer side of the front plate. The front end strengthening plates are arranged in a ring shape on the front plate in sequence, and the connecting line of the end points of the front end strengthening plates is a regular polygon.
[0011] As a further solution, the edge of the front plate is turned outwards to form a mounting edge, and the mounting edge is connected to the cylindrical side wall; there are six front end strengthening plates. One end of each front end strengthening plate abuts against the mounting edge, and the other end of each front end strengthening plate abuts against the central position of the adjacent front end strengthening plate. The connecting line of the end points of each front end strengthening plate is a regular hexagon.
[0012] As a further solution, the rotating cage paddle plate includes a V-shaped plate and a side sealing plate. End sealing plates are fixedly arranged at the top and bottom of the V-shaped plate. The side sealing plate is fixedly connected to the open side of the V-shaped plate to form a triangular prism structure;
[0013] Inside the triangular prism structure, two threaded tie rods are arranged. The middle and ends of the two threaded tie rods are connected through clamping parts. The front end connecting plate, the end sealing plate and the rear end connecting plate have the same structure, which is a triangular structure. Threaded holes corresponding to the threaded tie rods are opened on the triangular structure. Bolts are arranged in the threaded holes of the front end connecting plate and / or the rear end connecting plate. The bolts are threadedly connected to the front end connecting plate and / or the rear end connecting plate, the end sealing plate and the threaded tie rod in sequence.
[0014] As a further solution, the included angle of the V-shaped plate is 45°.
[0015] As a further solution, the rear plate includes a rear plate top plate and a rear plate bottom plate. A reinforcing layer is also arranged between the rear plate top plate and the rear plate bottom plate. The sides of the rear plate top plate and the rear plate bottom plate are connected through a reinforcing flange;
[0016] The reinforcing layer includes six reinforcing channel steels and a reinforcing hexagonal plate. The reinforcing hexagonal plate is a regular hexagonal structure with a mounting hole opened in the center. The six reinforcing channel steels are arranged in a ring shape on the outside of the reinforcing hexagonal plate in sequence, and the six reinforcing channel steels are respectively arranged on the extension lines of the six sides of the regular hexagonal structure; One end of the reinforcing channel steel abuts against the inner wall of the reinforcing flange, and the other end of the reinforcing channel steel abuts against the adjacent reinforcing channel steel; The middle parts of two adjacent reinforcing channel steels are connected through a reinforcing pipe, and the six reinforcing pipes enclose a regular hexagon;
[0017] The rear plate bottom plate is coaxially arranged with the reinforcing hexagonal plate. One end of the main shaft penetrates through the rear plate bottom plate and is fixedly connected to the mounting hole, and the other end of the main shaft is connected to the driving component of the textile finishing equipment.
[0018] Furthermore, a fixing plate is provided at the front end of the rear plate top plate. A V-shaped notch adapted to the rotating cage paddle is formed at the edge of the fixing plate, and the V-shaped notch is clamped with the rotating cage paddle.
[0019] A plurality of linings are arranged in an annular array between the top plate and the fixing plate. One end of the lining is connected to the top plate, and the other end of the lining is connected to the fixing plate.
[0020] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0021] (1) The present utility model forms a rotating cage main body structure through the front plate, the cylindrical side wall, and the rear plate. A feed port is provided on the front plate. When finishing textiles, it is only necessary to put the textiles into the rotating cage structure from the feed port, which simplifies the finishing process. A plurality of rotating cage paddles are arranged circumferentially inside the rotating cage structure. When the rotating cage structure rotates, it can quickly drive the textiles to rotate, avoid slipping, and ensure that the textiles keep rotating along the wall before reaching the highest point. When reaching the highest point, the textiles fall freely (the rotating speed is relatively slow during the textile finishing process, and the centrifugal force is not enough to support the textiles to continuously rotate along the wall), which plays a role in dispersing the textiles.
[0022] (2) A plurality of front-end reinforcing plates are arranged on the outer side of the front plate of the present utility model. One end of the front-end reinforcing plate is fixed to the mounting edge formed by folding the front plate, and the other end abuts against the center position of the adjacent front-end reinforcing plate, forming a regular polygon structure. This design enables each front-end reinforcing plate to play a role of linkage reinforcement. Compared with the conventional isolated reinforcing plates, the front-end reinforcing plate has stronger load-bearing capacity. The rear plate of the present utility model adopts a sandwich reinforcement structure. A reinforcing hexagonal plate is arranged between the rear plate top plate and the rear plate bottom plate, and a regular hexagon structure composed of six reinforcing channel steels is arranged outside the reinforcing hexagonal plate. The main shaft is connected to the center of the reinforcing hexagonal plate, which increases the anti-torsion performance when the rotating shaft rotates.
[0023] (3) A reinforcing plate is further provided at the front end of the rear plate of the present utility model. Each rotating cage paddle is respectively clamped with the V-shaped notch of the reinforcing plate, which improves the stability of the rotating cage rotation. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The following drawings only make schematic explanations and interpretations of the present utility model and are not used to limit the scope of the present utility model, where:
[0025] Figure 1 : Schematic structural diagram of the present utility model;
[0026] Figure 2 : Exploded view of the internal structure of the present utility model;
[0027] Figure 3 : Exploded view of the structure of the rotating cage paddle board;
[0028] Figure 4 : Exploded view of the structure of the rear plate;
[0029] In the figure: 1, cylindrical side wall; 2, front plate; 3, front end reinforcing plate; 4, front end connecting plate; 5, through hole; 6, sealing connection ring; 7, reinforcing flange; 8, rear plate; 9, main shaft; 10, rotating cage paddle board; 11, V-shaped plate; 12, end sealing plate; 13, threaded tie rod; 14, clamping part; 15, side sealing plate; 16, reinforcing plate; 17, inner lining; 18, top plate of the rear plate; 19, bottom plate of the rear plate; 20, reinforcing hexagonal plate; 21, reinforcing channel steel; 22, rear end connecting plate; 23, reinforcing pipe. Specific embodiments
[0030] In order to make the purpose, technical solutions, design methods and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings through specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0031] Such as Figure 1As shown in the figure, the utility model provides a textile finishing rotary cage structure, which is arranged inside a textile finishing device. The textile finishing is completed by spraying finishing liquid into the rotary cage structure and cooperating with the rotation of the rotary cage structure. Among them, the rotary cage structure includes a cylindrical side wall 1, a front plate 2 arranged at the front end of the cylindrical side wall 1, and a rear plate 8 arranged at the rear end of the cylindrical side wall 1; the cylindrical side wall 1 is a cylindrical structure formed by bending a rectangular steel plate. A number of through holes are evenly arranged on the cylindrical side wall 1. The front plate 2 and the rear plate 8 are both circular structures and are respectively fixedly connected to the front end and the rear end of the cylindrical side wall 1; a feed port is provided at the center of the front plate 2 for placing textiles inside the rotary cage structure. A sealing connection ring 6 is arranged at the feed port for connecting the door panel of the textile finishing device; six front-end reinforcing plates 3 are arranged outside the front plate 2. The front-end reinforcing plates 3 are arranged in a ring shape on the front plate 2 in sequence, and the edge of the front plate 2 is folded outward to form a mounting edge, and the mounting edge is connected to the cylindrical side wall 1; one end of each front-end reinforcing plate 3 abuts against the mounting edge, and the other end of each front-end reinforcing plate 3 abuts against the center position of the adjacent front-end reinforcing plate 3. The connecting lines of the end points of each front-end reinforcing plate 3 form a regular hexagon, so that each front-end reinforcing plate 3 plays a role of linkage reinforcement, and the front-end reinforcing plate 3 has stronger load-bearing capacity compared with the conventional isolated reinforcing plate. A main shaft 9 is arranged at the center outside the rear plate 8 for connecting the driving component of the textile finishing device to drive the rotary cage structure to rotate. Specifically, as Figure 4 shown, the rear plate 8 includes a rear plate top plate 18 and a rear plate bottom plate 19. A reinforcing layer is also arranged between the rear plate top plate 18 and the rear plate bottom plate 19. The sides of the rear plate top plate 18 and the rear plate bottom plate 19 are connected by a reinforcing flange 7; the reinforcing layer includes six reinforcing channel steels 21 and a reinforcing hexagonal plate 20. The reinforcing hexagonal plate 20 is a regular hexagonal structure with a mounting hole opened at the center. The six reinforcing channel steels 21 are arranged in a ring shape outside the reinforcing hexagonal plate 20 in sequence, and the six reinforcing channel steels 21 are respectively arranged on the extension lines of the six sides of the regular hexagonal structure; one end of the reinforcing channel steel 21 abuts against the inner wall of the reinforcing flange 7, and the other end of the reinforcing channel steel 21 abuts against the adjacent reinforcing channel steel 21; the middle parts of two adjacent reinforcing channel steels 21 are connected by a reinforcing pipe 23, and the six reinforcing pipes 23 enclose a regular hexagon; the rear plate bottom plate 19 is coaxially arranged with the reinforcing hexagonal plate 20. One end of the main shaft 9 penetrates through the rear plate bottom plate 19 and is fixedly connected to the mounting hole, and the other end of the main shaft 9 is connected to the driving component of the textile finishing device.
[0032] As Figure 2As shown, in order to ensure that when the rotating cage structure rotates, it can quickly drive the textile to rotate, avoid slipping, and quickly disperse the textile to increase its contact area with the finishing liquid, six rotating cage paddles 10 are circumferentially arranged inside the rotating cage structure. The outer side of each rotating cage paddle 10 is connected to the cylindrical side wall 1. The front end of each rotating cage paddle 10 is fixedly connected to the front plate 2 through a front end connecting plate 4. The rear end of each rotating cage paddle 10 is connected to the corresponding reinforcing channel steel 21 through a rear end connecting plate 22. As Figure 3 shown, in this embodiment, the rotating cage paddle 10 includes a V-shaped plate 11 and a side sealing plate 15. End sealing plates 12 are fixedly arranged at both the top and bottom of the V-shaped plate 11. The side sealing plate 15 is fixedly connected to the open side of the V-shaped plate 11 to form a triangular prism structure. Two threaded tie rods 13 are arranged inside the triangular prism structure. The middle and ends of the two threaded tie rods 13 are connected through clamping members 14. The front end connecting plate 4, the end sealing plate 12, and the rear end connecting plate 22 have the same structure, which is a triangular structure, and threaded holes corresponding to the threaded tie rods 13 are opened on the triangular structure. Bolts are arranged in the threaded holes of the front end connecting plate 4 and / or the rear end connecting plate 22. The bolts are threadedly connected to the front end connecting plate 4 and / or the rear end connecting plate 22, the end sealing plate 12, and the threaded tie rod 13 in sequence. Among them, the included angle of the V-shaped plate 11 is 45°. When the main shaft drives the rotating cage structure to rotate, the V-shaped plate 11 can drive the textile to rotate. When it rotates to a certain height, the textile freely falls, and then is driven by another V-shaped plate 22 to be lifted to a certain height. In this way, the textile can be dispersed reciprocally, increasing the contact area between the textile and the finishing liquid. It should be noted that the post-treatment of the textile is a slow process. In order to avoid damaging the textile, the rotation speed of the rotating cage structure is generally low, and the textile will not continuously rotate against the wall due to centrifugal force inside the rotating cage structure.
[0033] Continue to refer to Figure 4 , in order to improve the rotational stability of the rotating cage structure, a fixing plate 16 is further arranged at the front end of the rear plate top plate 18. A V-shaped notch adapted to the rotating cage paddle 10 is opened at the edge of the fixing plate 16. The V-shaped notch is clamped with the rotating cage paddle 10. A plurality of linings 17 are arranged in an annular array between the top plate 18 and the fixing plate 16. One end of the lining 17 is connected to the top plate 18, and the other end of the lining 17 is connected to the fixing plate 16.
[0034] The embodiments of the present utility model have been described above. The above description is exemplary and not exhaustive, and is also not limited to the disclosed embodiments. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, the practical application, or the improvement of the technology in the market, or to enable other ordinary skill in the art to understand the embodiments disclosed herein.
Claims
1. A cage structure for textile post-treatment is arranged inside a textile finishing equipment. The textile finishing is completed by spraying finishing liquid into the cage structure and cooperating with the rotation of the cage structure. It is characterized in that The rotary cage structure includes a cylindrical side wall (1), a front plate (2) provided at the front end of the cylindrical side wall (1), and a rear plate (8) provided at the rear end of the cylindrical side wall (1); The cylindrical side wall (1) is a cylindrical structure formed by bending a rectangular steel plate. A number of through holes are evenly provided on the cylindrical side wall (1). Both the front plate (2) and the rear plate (8) are circular structures and are respectively fixedly connected to the front end and the rear end of the cylindrical side wall (1); A feed port is provided at the center of the front plate (2) for placing textiles inside the rotary cage structure. A sealing connection ring (6) is provided at the feed port for connecting the door panel of the textile finishing equipment; A main shaft (9) is provided at the center outside the rear plate (8) for connecting the driving component of the textile finishing equipment to drive the rotary cage structure to rotate; A number of rotary cage paddle boards (10) are circumferentially arranged inside the rotary cage structure. The outer side of each rotary cage paddle board (10) is connected to the cylindrical side wall (1). The front end of each rotary cage paddle board (10) is fixedly connected to the front plate (2) through a front end connecting plate (4). The rear end of each rotary cage paddle board (10) is connected to the rear plate (8) through a rear end connecting plate (22).
2. The textile post-treatment rotating cage structure according to claim 1, characterized in that, A number of front end reinforcing plates (3) are provided on the outer side of the front plate (2). The front end reinforcing plates (3) are sequentially arranged in a ring on the front plate (2), and the connecting lines of the end points of the front end reinforcing plates (3) are regular polygons.
3. The textile post-treatment rotary cage structure according to claim 2, characterized in that, The edge of the front plate (2) is turned outwards to form a mounting edge, and the mounting edge is connected to the cylindrical side wall (1); Six front end reinforcing plates (3) are provided. One end of each front end reinforcing plate (3) abuts against the mounting edge, and the other end of each front end reinforcing plate (3) abuts against the center position of the adjacent front end reinforcing plate (3). The connecting lines of the end points of each front end reinforcing plate (3) are regular hexagons.
4. A textile finishing rotating cage structure according to claim 1, characterized in that, The rotary cage paddle board (10) includes a V-shaped plate (11) and a side sealing plate (15). End sealing plates (12) are fixedly provided at the top and bottom of the V-shaped plate (11). The side sealing plate (15) is fixedly connected to the open side of the V-shaped plate (11) to form a triangular prism structure; Two threaded tie rods (13) are provided inside the triangular prism structure. The middle and ends of the two threaded tie rods (13) are connected through clamping members (14). The front end connecting plate (4), the end sealing plate (12), and the rear end connecting plate (22) have the same structure, which is a triangular structure. Threaded holes corresponding to the threaded tie rods (13) are provided on the triangular structure. Bolts are provided in the threaded holes of the front end connecting plate (4) and / or the rear end connecting plate (22). The bolts are sequentially threadedly connected to the front end connecting plate (4) and / or the rear end connecting plate (22), the end sealing plate (12), and the threaded tie rod (13).
5. A textile post-treatment rotating cage structure according to claim 4, characterized in that, The included angle of the V-shaped plate (11) is 45°。 6. The textile after-finishing rotating cage structure according to claim 5, characterized in that, The rear plate (8) includes a rear plate top plate (18) and a rear plate bottom plate (19). A reinforcement layer is further provided between the rear plate top plate (18) and the rear plate bottom plate (19). The sides of the rear plate top plate (18) and the rear plate bottom plate (19) are connected by a reinforcement flange (7). The reinforcement layer includes six reinforcing channel steels (21) and a reinforcing hexagonal plate (20). The reinforcing hexagonal plate (20) is a regular hexagonal structure with an installation hole opened in the center. The six reinforcing channel steels (21) are arranged in a ring in sequence outside the reinforcing hexagonal plate (20), and the six reinforcing channel steels (21) are respectively arranged on the extension lines of the six sides of the regular hexagonal structure. One end of the reinforcing channel steel (21) abuts against the inner wall of the reinforcement flange (7), and the other end of the reinforcing channel steel (21) abuts against the adjacent reinforcing channel steel (21). The middle parts of two adjacent reinforcing channel steels (21) are connected by a reinforcing pipe (23), and the six reinforcing pipes (23) enclose a regular hexagon. The rear plate bottom plate (19) is coaxially arranged with the reinforcing hexagonal plate (20). One end of the main shaft (9) penetrates through the rear plate bottom plate (19) and is fixedly connected to the installation hole, and the other end of the main shaft (9) is connected to the driving component of the textile finishing equipment.
7. A textile post-treatment rotating cage structure according to claim 6, characterized in that, A fixing plate (16) is further provided at the front end of the rear plate top plate (18). A V-shaped notch adapted to the rotating cage pulp plate (10) is opened at the edge of the fixing plate (16), and the V-shaped notch is clamped with the rotating cage pulp plate (10). A plurality of inner linings (17) are arranged in a circular array between the top plate (18) and the fixing plate (16). One end of the inner lining (17) is connected to the top plate (18), and the other end of the inner lining (17) is connected to the fixing plate (16).
Citation Information
Patent Citations
The utility model discloses a silk floss piece softening finishing device
CN208869818U