Elasticizer of chemical fiber machine

By designing a combination of a multi-slot structure and limiters on the wire guide frame, the adjustability and quick installation problems of the wire guide mechanism of the chemical fiber texturing machine are solved, and cost-effectiveness is improved.

CN223481382UActive Publication Date: 2025-10-28JIANGYIN RUIYUAN TEXTILE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423117562.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-10-28
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

The wire guide mechanism structure of the existing chemical fiber texturing machine has poor adjustability, and the positioning column limiting method is cumbersome and easy to lose, resulting in increased costs and inability to quickly install and disassemble.

Method used

A plurality of first slots are provided on the guide wire frame, a second slot is provided on the side wall of the first slot, and the limiting member is composed of a plurality of blocks and rods. The limiting member can be quickly installed and disassembled by cooperating with the adjusting member and the moving rod.

Benefits of technology

The structural adjustability of the wire guide mechanism is improved, the limiting operation is simplified, and the replacement and maintenance costs are reduced.

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Abstract

The utility model relates to an elasticizer of a chemical fiber machine. The elasticizer comprises a yarn guide frame, a yarn guide buckle arranged on the yarn guide frame and a limiting piece for limiting the position of the yarn guide buckle. A first groove is formed in the yarn guide frame; a second groove is formed in the side wall of the first groove; two groups of second grooves are oppositely formed, and when the limiting pieces are clamped into the second grooves, the positions of the limiting pieces are fixed; the wire guide buckle is arranged on the limiting piece; a plurality of first grooves and a plurality of second grooves are formed along the yarn guide frame. The problems that through positioning of a positioning column, the limiting method is too tedious, the positioning column is prone to being lost, cost is increased, and rapid mounting and dismounting cannot be achieved are solved.
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Description

Technical Field

[0001] This utility model relates to the field of texturing machines, and more particularly to a texturing machine for chemical fiber machines. Background Technology

[0002] In the prior art, a texturing machine is a textile machine that can process untwisted yarns such as polyester (POY) and polypropylene into elastic yarns with medium and low elasticity through false twisting. The yarn guide mechanism is one of the most important components in a chemical fiber texturing machine. Traditional yarn guide mechanisms are mostly integrated mechanisms, which are convenient for production and processing, but have poor structural adjustability and can only be replaced as a whole after failure, resulting in high costs. Utility model CN202323659409.8 discloses a chemical fiber texturing machine, including a yarn guide frame, a yarn guide buckle, and fasteners. The yarn guide frame is prismatic, and one side wall of the yarn guide frame has two or more sets of insertion holes along a direction parallel to the edge. The other side wall of the yarn guide frame adjacent to one side wall of the yarn guide frame has a locking hole that extends through to the insertion hole. The yarn guide buckle has a chemical fiber yarn guide opening and a positioning post. The positioning post is inserted into the insertion hole and has a locking groove. The locking hole and the locking groove are locked together by the fasteners. The chemical fiber texturing machine provided by this utility model has the advantages of good structural adjustability, easy disassembly, replacement and maintenance of parts, and cost savings; however, its positioning method by positioning pins is too cumbersome and the positioning pins are easy to lose, resulting in increased costs and making it impossible to install and disassemble quickly. Utility Model Content

[0003] This application provides a texturing machine for chemical fibers, which solves the problems of existing technologies that use positioning pins for positioning. These methods are too cumbersome, the positioning pins are easily lost, leading to increased costs and making quick installation and disassembly impossible.

[0004] The technical solutions adopted in the embodiments of this application are as follows.

[0005] A texturing machine for chemical fibers includes a guide frame, a guide buckle disposed on the guide frame, and a limiting member for restricting the position of the guide buckle; the guide frame has a first groove; a second groove is formed on the side wall of the first groove; two sets of the second groove are formed opposite each other, and the limiting member is fixed in position when it is engaged in the second groove; the guide buckle is disposed on the limiting member; a plurality of the first groove and the second groove are formed along the guide frame.

[0006] As a further improvement to the above technical solution: the limiting member includes a first block, a second block that limits the position of the first block, an adjusting member for adjusting the second block to fold up or unfold, and a moving rod for moving the position of the adjusting member; the first block corresponds to the first slot; the second block corresponds to the second slot; two sets of the second blocks are arranged opposite each other; a third slot is opened in the first block; a fourth slot is opened on the side wall of the third slot; the fourth slot corresponds to the second block; the moving rod rotates in the third slot; the adjusting member moves along the moving rod; the moving rod rotates in the first block.

[0007] As a further improvement to the above technical solution: a fifth groove is provided on the second block; a first rod is provided on the adjusting member; the first rod slides along the fifth groove; when the first rod is located on one side of the fifth groove, the second block is located outside the first block; when the first rod is located on the other side of the fifth groove, the second block is located inside the third groove.

[0008] As a further improvement to the above technical solution: a guide rod is provided in the third groove; the guide rod passes through the adjusting member; and the array of guide rods consists of several rods.

[0009] As a further improvement to the above technical solution: a first plate is provided in the third groove; a spring-loaded component is provided on the first plate; one end of the spring-loaded component abuts against the first plate, and the other end of the spring-loaded component abuts against the second plate.

[0010] As a further improvement to the above technical solution: a chamfer is provided on the side wall of the first block.

[0011] As a further improvement to the above technical solution: a sixth groove is provided on the side wall of the first block; a third block is provided on the side wall of the first groove; the third block corresponds to the sixth groove and two sets of the third block and the sixth groove are arranged opposite each other.

[0012] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:

[0013] 1. Due to the use of a rod-shaped wire guide frame, a first groove is formed on the wire guide frame, and several first grooves are formed along the wire guide frame. A second groove is formed on the side wall of the first groove, and the second groove is triangular in shape. Two sets of the second groove are formed opposite each other. The first block is cylindrical, and the first groove corresponds to the first groove. A third groove is formed inside the first block, and the third groove is circular. A fourth groove is formed on the side wall of the third groove, and the fourth groove is square. A movable rod is rotatably connected inside the third groove. The movable rod is a bolt, and guide rods are set around the periphery of the movable rod. Four sets of guide rods are arranged in a circumferential array. The guide rods are fixed in the third groove. An adjusting component is slidably connected to the guide rod. The adjusting component is threadedly connected to the movable rod. When the movable rod rotates, it drives the adjusting component to move along the guide rod. The adjusting component is equipped with the first rod and the third groove. The inner rotating connection has a second piece, which has a fifth groove. The first rod slides in the fifth groove. When the first rod is in the fifth groove near the rebound member, the second piece is on the outside of the first piece. When the first rod is on the other side of the fifth groove, the second piece is in the third groove. The side wall of the first piece has a chamfer to facilitate insertion. The side wall of the first groove has a third piece, and the side wall of the first piece has a sixth groove. When the sixth groove corresponds to the third piece, the second groove corresponds to the second piece. The third groove has a first plate, and the first plate has a rebound member. One end of the rebound member abuts against the first plate, and the other end of the rebound member abuts against the second piece, thereby assisting the second piece to pop out into the third groove. This allows the limiting member to be quickly installed onto the guide wire frame to limit the position of the guide wire buckle. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of the texturing machine for chemical fiber processing in this utility model.

[0015] Figure 2 This is a schematic diagram of the limiting component in this utility model.

[0016] In the diagram: 1. Wire guide frame; 11. First groove; 12. Second groove; 13. Guide rod; 14. Third block; 2. Wire guide buckle; 3. Limiting component; 31. First block; 311. Third groove; 312. Fourth groove; 313. First plate; 314. Springback component; 315. Sixth groove; 32. Second block; 321. Fifth groove; 33. Adjusting component; 331. First rod; 34. Moving rod. Detailed Implementation

[0017] This application provides a texturing machine for chemical fibers, which solves the problems of existing technologies that use positioning pins for positioning. These methods are too cumbersome, the positioning pins are easily lost, leading to increased costs and making quick installation and disassembly impossible.

[0018] The technical solution in this application embodiment is to solve the above problems, and the overall idea is as follows:

[0019] To better understand the above technical solutions, the following will provide a detailed explanation of the technical solutions in conjunction with the accompanying drawings and specific implementation methods.

[0020] A texturing machine for chemical fibers includes a guide frame 1, a guide buckle 2 disposed on the guide frame 1, and a limiting member 3 for limiting the position of the guide buckle 2; a first groove 11 is formed on the guide frame 1; a second groove 12 is formed on the side wall of the first groove 11; two sets of the second groove 12 are formed opposite each other and the position of the limiting member 3 is fixed when it is engaged in the second groove 12; the guide buckle 2 is disposed on the limiting member 3; a plurality of the first groove 11 and the second groove 12 are formed along the guide frame 1.

[0021] The limiting member 3 includes a first block 31, a second block 32 that limits the position of the first block 31, an adjusting member 33 that adjusts the second block 32 to retract or unfold, and a moving rod 34 that moves the position of the adjusting member 33; the first block 31 corresponds to the first groove 11; the second block 32 corresponds to the second groove 12; two sets of the second block 32 are arranged opposite each other; a third groove 311 is opened in the first block 31; a fourth groove 312 is opened on the side wall of the third groove 311; the fourth groove 312 corresponds to the second block 32; the moving rod 34 rotates in the third groove 311; the adjusting member 33 moves along the moving rod 34; the moving rod 34 rotates in the first block 31.

[0022] The second block 32 has a fifth groove 321; the adjusting member 33 has a first rod 331; the first rod 331 slides along the fifth groove 321; when the first rod 331 is on one side of the fifth groove 321, the second block 32 is on the outside of the first block 31; when the first rod 331 is on the other side of the fifth groove 321, the second block 32 is in the third groove 311.

[0023] A guide rod 13 is provided in the third groove 311; the guide rod 13 passes through the adjusting member 33; and several guide rods 13 are arranged in an array.

[0024] The third slot 311 is provided with a first plate 313; the first plate 313 is provided with a spring-loaded component 314; one end of the spring-loaded component 314 abuts against the first plate 313, and the other end of the spring-loaded component 314 abuts against the second block 32.

[0025] The first piece 31 has a chamfer on its side wall.

[0026] The first block 31 has a sixth groove 315 on its side wall; the first groove 11 has a third block 14 on its side wall; the third block 14 corresponds to the sixth groove 315 and there are two sets of the third block 14 and the sixth groove 315 opposite each other.

[0027] The wire guide frame 1 is rod-shaped, and a first groove 11 is formed on the wire guide frame 1. Several first grooves 11 are formed along the wire guide frame 1. A second groove 12 is formed on the side wall of the first groove 11. The second groove 12 is triangular in shape, and two sets of second grooves 12 are formed opposite each other. The first block 31 is cylindrical, and the first groove 11 corresponds to the first groove 11. A third groove 311 is formed inside the first block 31. The third groove 311 is circular in shape. A fourth groove 312 is formed on the side wall of the third groove 311. 312 is square. A movable rod 34 is rotatably connected within the third groove 311. The movable rod 34 is bolted, and guide rods 13 are arranged around its periphery. Four sets of guide rods 13 are arranged in a circumferential array. The guide rods 13 are fixed within the third groove 311. An adjusting component 33 is slidably connected to the guide rod 13. The adjusting component 33 is threadedly connected to the movable rod 34. When the movable rod 34 rotates, it drives the adjusting component 33 to move along the guide rods 13. A first rod 331 is provided on the adjusting component 33. A second block 32 is rotatably connected within the third groove 311. A fifth groove 321 is formed on the second block 32. The first rod 331 slides within the fifth groove 321. When the first rod 331 is located on the side of the fifth groove 321 closest to the spring-loaded component 314, the second block 32 is located outside the first block 31. When the first rod 331 is located on the other side of the fifth groove 321, the second block 32 is located within the third groove 311. A chamfer is formed on the side wall of the first block 31 to facilitate insertion of the first block 31. A third block 14 is provided on the side wall of the first groove 11, and a sixth groove 315 is provided on the side wall of the first block 31. When the sixth groove 315 corresponds to the third block 14, the second groove 12 corresponds to the second block 32. A first plate 313 is provided in the third groove 311, and a spring-loaded member 314 is provided on the first plate 313. One end of the spring-loaded member 314 abuts against the first plate 313, and the other end of the spring-loaded member 314 abuts against the second block 32, thereby assisting the second block 32 to pop out into the third groove 311.

[0028] Because the wire guide frame 1 is rod-shaped, a first groove 11 is formed on the wire guide frame 1. Several first grooves 11 are formed along the wire guide frame 1. A second groove 12 is formed on the side wall of the first groove 11. The second groove 12 is triangular in shape and has two sets of opposite second grooves 12. The first block 31 is cylindrical. The first groove 11 corresponds to the first groove 11. A third groove 311 is formed inside the first block 31. The third groove 311 is circular in shape. A fourth groove 312 is formed on the side wall of the third groove 311. The square-shaped groove 311 contains a movable rod 34 rotatably connected to it. The movable rod 34 is bolted, and guide rods 13 are arranged around its periphery. Four sets of guide rods 13 are arranged in a circumferential array. The guide rods 13 are fixed in the third groove 311. An adjusting component 33 is slidably connected to the guide rod 13 and threadedly connected to the movable rod 34. When the movable rod 34 rotates, it drives the adjusting component 33 to move along the guide rods 13. The adjusting component 33 is provided with a first rod 331. The third groove 311 contains a second rod 331. Two blocks 32, the second block 32 has a fifth groove 321, the first rod 331 slides in the fifth groove 321. When the first rod 331 is on the side of the fifth groove 321 near the spring-loaded part 314, the second block 32 is on the outside of the first block 31; when the first rod 331 is on the other side of the fifth groove 321, the second block 32 is in the third groove 311. The side wall of the first block 31 has a chamfer to facilitate insertion of the first block 31. The side wall of the first groove 11 is provided with a third block 14. A sixth groove 315 is provided on the side wall of 31. When the sixth groove 315 corresponds to the third block 14, the second groove 12 corresponds to the second block 32. A first plate 313 is provided in the third groove 311. A spring-loaded member 314 is provided on the first plate 313. One end of the spring-loaded member 314 abuts against the first plate 313, and the other end of the spring-loaded member 314 abuts against the second block 32, thereby assisting the second block 32 to pop out into the third groove 311, thereby realizing the quick installation of the limiting member 3 onto the wire guide frame 1 to limit the position of the wire guide buckle 2.

[0029] Although preferred embodiments of the present invention have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the present invention.

[0030] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.

Claims

1. A texturing machine for chemical fibers, characterized in that, The device includes a wire guide frame (1), a wire guide buckle (2) disposed on the wire guide frame (1), and a limiting member (3) for limiting the position of the wire guide buckle (2); a first groove (11) is provided on the wire guide frame (1); a second groove (12) is provided on the side wall of the first groove (11); two sets of the second groove (12) are provided opposite each other and the position of the limiting member (3) is fixed when the limiting member (3) is inserted into the second groove (12); the wire guide buckle (2) is disposed on the limiting member (3); the first groove (11) and the second groove (12) are provided along the wire guide frame (1) in several places.

2. The texturing machine for chemical fibers as described in claim 1, characterized in that, The limiting member (3) includes a first block (31), a second block (32) that limits the position of the first block (31), an adjusting member (33) that adjusts the second block (32) to fold up or unfold, and a moving rod (34) that moves the position of the adjusting member (33); the first block (31) corresponds to the first groove (11); the second block (32) corresponds to the second groove (12); two sets of the second blocks (32) are arranged opposite each other; a third groove (311) is opened in the first block (31); a fourth groove (312) is opened on the side wall of the third groove (311); the fourth groove (312) corresponds to the second block (32); the moving rod (34) rotates in the third groove (311); the adjusting member (33) moves along the moving rod (34); the moving rod (34) rotates in the first block (31).

3. The texturing machine for chemical fibers as described in claim 2, characterized in that, The second block (32) has a fifth groove (321); the adjusting member (33) has a first rod (331); the first rod (331) slides along the fifth groove (321); when the first rod (331) is located on one side of the fifth groove (321), the second block (32) is located outside the first block (31); when the first rod (331) is located on the other side of the fifth groove (321), the second block (32) is located in the third groove (311).

4. The texturing machine for chemical fibers as described in claim 2, characterized in that, A guide rod (13) is provided in the third groove (311); the guide rod (13) passes through the adjusting member (33); and a plurality of guide rods (13) are arranged in an array.

5. The texturing machine for chemical fibers as described in claim 2, characterized in that, The third groove (311) is provided with a first plate (313); the first plate (313) is provided with a spring-loaded component (314); one end of the spring-loaded component (314) abuts against the first plate (313), and the other end of the spring-loaded component (314) abuts against the second block (32).

6. The texturing machine for chemical fibers as described in claim 2, characterized in that, The first block (31) has a chamfer on its side wall.

7. The texturing machine for chemical fibers as described in claim 2, characterized in that, The first block (31) has a sixth groove (315) on its side wall; the first groove (11) has a third block (14) on its side wall; the third block (14) corresponds to the sixth groove (315) and there are two sets of the third block (14) and the sixth groove (315) opposite each other.

Citation Information

Patent Citations

  • Chemical fiber elasticizer

    CN221822438U