Wire coil mounting bracket for weaving processing
By using a gear system driven by an active motor and hydraulic push rods in synergy, the spool axial distance can be flexibly adjusted and securely installed, solving the problem of insufficient adjustability of traditional supports and improving the production efficiency and product quality of weaving.
Patent Information
- Application Number
- CN202520230504.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-13
AI Technical Summary
Traditional yarn spool mounting brackets lack flexibility and adjustability, making it difficult to meet the diverse needs of modern weaving processes for different yarn spool lengths, resulting in low production efficiency and potentially affecting the quality and stability of woven products.
An active motor drives an active gear to mesh with a translational gear plate, which in turn moves the support column through a guide assembly. Combined with the synergistic effect of a hydraulic push rod and a rotating gear, this allows for flexible adjustment and stable installation of the wire reel's axial distance.
It improves the practical efficiency of the mounting bracket, enhances its flexible adjustment range, and meets the diverse needs of different yarn spool lengths in the weaving process.
Smart Images

Figure CN223704814U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to braided line roll mounting support technical field especially relates to a line roll mounting support for braiding processing. BACKGROUND
[0002] In the braiding processing industry, the installation and fixation of the line roll are indispensable in the production process. When braiding processing is carried out, the line roll needs to be installed, and an installation support needs to be used.
[0003] In actual use, the traditional line roll installation support usually adopts a fixed design, and its structure is relatively simple, but it lacks sufficient flexibility and adjustability. With the continuous progress of braiding processing technology and the increasing diversification of needs, the traditional fixed installation support has been difficult to meet the needs of modern braiding processing for different line roll shaft distance lengths, especially when dealing with different specifications and different materials of braided wires, the fixed support often cannot provide appropriate support and fixation, resulting in low production efficiency, and even affecting the quality and stability of the braided products, which needs to be improved, and the practical efficiency of the installation support is not convenient to improve and the flexible adjustment range is not convenient to enhance.
[0004] Therefore, in view of the above problems that the practical efficiency of the installation support is not convenient to improve and the flexible adjustment range is not convenient to enhance, a line roll installation support for braiding processing can be designed. When the braided line roll installation support is used, first, the driving motor is started to drive the driving shaft to rotate, and then the driving gear connected thereto starts to work. The driving gear drives the upper and lower two groups of translation tooth plates to move relative to each other in a precise meshing manner. With the movement of the two side translation tooth plates, the two side translation assemblies also slide smoothly. This sliding action further drives the movement of the two side support struts. The support struts ensure the stability and accuracy of the movement through the cooperation of the two side guide assemblies, so that the length of the line roll shaft distance can be flexibly adjusted according to actual needs. Then, the line roll shaft rods to be installed are placed at both ends of the fixed arc seat. Next, the hydraulic push rod is started to push the lifting tooth plate up. The lifting tooth plate is meshed with the adjusting gear on the adjusting shaft, so the upward movement of the lifting tooth plate drives the forward rotation of the adjusting gear. The rotation of the adjusting gear drives the downward movement of the double-sided tooth plate along the lifting assembly. In this process, the double-sided tooth plate not only realizes its own lifting, but also drives the reverse rotation of the rotating shaft through the meshing of the other side with the rotating gear. The other end of the rotating shaft is connected to the rotating arc seat, so the rotation of the rotating shaft makes the rotating arc seat also rotate reversely. Finally, through the cooperation of the fixed arc seat and the rotating arc seat, the stable installation of the line roll shaft rods at both ends is realized. This design not only improves the practical efficiency of the installation support, but also greatly enhances the flexible adjustment range of its use, meeting the diversification needs of different line roll shaft distance lengths in the braiding processing process. SUMMARY
[0005] In order to overcome the weaving line roll mounting bracket in the process of using, the traditional line roll mounting bracket usually adopts fixed design, its structure is relatively simple, but lack of enough flexibility and adjustability, with the continuous progress of weaving processing technology and the increasing of diversified demand, the traditional fixed mounting bracket has been difficult to meet the needs of different line roll axis length of modern weaving processing, especially in processing different specifications, different material of weaving line, fixed bracket often can not provide suitable support and fixed, resulting in low production efficiency, and even may affect the quality and stability of the weaving product, need to be improved, and then inconvenient to improve the practical efficiency of mounting bracket and enhance its flexible adjustment use range problem.
[0006] The technical scheme of the utility model discloses: a weaving processing line roll mounting bracket, including support support, driving motor, driving shaft, driving gear, translation toothed plate, support column, fixed support, hydraulic push rod, lifting toothed plate, adjusting shaft, adjusting gear, double-sided toothed plate, rotating gear, rotating shaft, fixed block, rotating arc base, translation assembly, guide assembly and lifting assembly, the bottom wall of support support is provided with translation assembly, the side wall of translation assembly is provided with driving motor, the output of driving motor is provided with driving shaft, one end of driving shaft is provided with driving gear, the side wall of translation assembly is provided with translation toothed plate, and the upper and lower two groups of translation toothed plates are engaged with driving gear respectively, the upper portion of support support is provided with guide assembly, the upper portion of translation assembly is provided with support column, and the bottom of support column is fixedly connected with the inner wall of two groups of guide assemblies on both sides, one side of the top of support column is provided with fixed support, the upper portion of fixed support is provided with fixed arc base, the other side of support column is provided with hydraulic push rod, the upper end of hydraulic push rod is provided with lifting toothed plate, the other side of support column is provided with adjusting shaft, the side wall of adjusting shaft is provided with adjusting gear, and adjusting gear is engaged with lifting toothed plate, the other side of support column is provided with lifting assembly, the side wall of lifting assembly is provided with double-sided toothed plate, and adjusting gear is engaged with one side of lifting toothed plate, the top side wall of support column is provided with fixed block, the inside of fixed block is provided with rotating shaft, one end of rotating shaft is provided with rotating gear, and rotating gear is engaged with the other side of double-sided toothed plate, and the other end of rotating shaft is provided with rotating arc base.
[0007] Preferably, when the braided wire coil mounting bracket is in use, first, the main motor is started to rotate the driving shaft, and then drive the driving gear connected thereto to work. The driving gear drives the two sets of translation tooth plates to move relative to each other in a precise meshing manner. With the movement of the two translation tooth plates, the two translation assemblies also slide smoothly, which further drives the movement of the two supporting struts. The supporting struts ensure the stability and accuracy of the movement through the cooperation of the two guide assemblies, so that the length of the wire coil shaft distance can be flexibly adjusted according to actual needs. Then, the ends of the wire coil shaft to be installed are placed on the fixed arc seats. Then, the hydraulic push rod is started to push the lifting tooth plate up. The lifting tooth plate is meshed with the adjusting gear on the adjusting shaft, so that the upward movement of the lifting tooth plate drives the forward rotation of the adjusting gear, and the rotation of the adjusting gear drives the downward movement of the double-sided tooth plate along the lifting assembly. In this process, the double-sided tooth plate not only realizes its own lifting, but also drives the reverse rotation of the rotating shaft through the meshing of the other side with the rotating gear. The other end of the rotating shaft is connected to the rotating arc seat, so that the rotation of the rotating shaft makes the rotating arc seat also reversely rotate. Finally, through the cooperation of the fixed arc seat and the rotating arc seat, the ends of the wire coil shaft are stably installed. This design not only improves the practical efficiency of the mounting bracket, but also greatly enhances the flexible adjustment range of use, and meets the diversified needs of different wire coil shaft distances in the braiding process.
[0008] Preferably, the translation assembly comprises a translation sliding rail and a translation sliding rod. The bottom wall of the support seat is provided with the translation sliding rail, and the translation sliding rail is internally provided with the translation sliding rod. The main motor is arranged on the side wall of the translation sliding rail.
[0009] Preferably, the translation assembly further comprises a translation sliding seat. Two groups of translation sliding seats are arranged on the side wall of the translation sliding rod. The translation sliding seat is slidably connected with the translation sliding rod. The support strut is arranged above the translation sliding seat. The translation tooth plate is arranged on the side wall of the translation sliding seat.
[0010] Preferably, the guide assembly comprises a support bracket and a guide sliding rod. The support bracket is arranged above the support seat. Two groups of guide sliding rods are arranged in the two sides of the support bracket. The two ends of the guide sliding rod are fixedly connected with the inner wall of the support bracket.
[0011] Preferably, the guide assembly further comprises a guide sliding block. The guide sliding block is arranged on the side wall of the guide sliding rod. The guide sliding block is slidably connected with the guide sliding rod. The bottom sides of the support strut are fixedly connected with the inner walls of the two groups of guide sliding blocks.
[0012] Preferably, the lifting assembly comprises a lifting sliding groove and a lifting sliding rod. The other side of the support strut is provided with the lifting sliding groove. The lifting sliding groove is internally provided with the lifting sliding rod. The two ends of the lifting sliding rod are fixedly connected with the inner wall of the lifting sliding groove.
[0013] Preferably, the lifting assembly further comprises a lifting slider, the side wall of the lifting slide rod is provided with the lifting slider, the lifting slider is in sliding connection with the lifting slide rod, and the double-sided tooth plate is arranged on the side wall of the lifting slider.
[0014] The utility model discloses the beneficial effect that:
[0015] When the braided wire coil mounting support is in use, first, the driving motor is started to rotate through the driving spindle, and then drives the driving gear connected therewith to work, and the driving gear drives the two groups of translation tooth plates to move relatively in the precise meshing mode, with the movement of the two groups of translation tooth plates, the two groups of translation assemblies also move stably, and the movement of the two groups of support struts is further driven by the movement, and the support struts ensure the stability and accuracy of the movement through the cooperation of the two groups of guide assemblies, so that the length of the wire coil shaft distance can be adjusted flexibly according to actual needs, then, the wire coil shaft rods to be installed are placed on the fixed arc seats respectively, then, the hydraulic push rod is started to push the lifting tooth plate upwards, the lifting tooth plate is meshed with the adjusting gear on the adjusting shaft, so that the upward movement of the lifting tooth plate drives the forward rotation of the adjusting gear, and the rotation of the adjusting gear drives the double-sided tooth plate to move downwards along the lifting assembly, in this process, the double-sided tooth plate not only realizes the lifting of itself, but also drives the reverse rotation of the rotating shaft through the meshing of the other side with the rotating gear, and the other end of the rotating shaft is connected with the rotating arc seat, so that the rotation of the rotating shaft drives the reverse rotation of the rotating arc seat, finally, through the cooperation of the fixed arc seat and the rotating arc seat, the stable installation of the two ends of the wire coil shaft rod is realized, and the practical efficiency of the mounting support is improved, and the flexible adjustment range is greatly enhanced, and the diversified needs of different wire coil shaft distances in the braiding process are met. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 A first three-dimensional structure schematic view of the wire coil mounting support for braiding processing is shown.
[0017] Figure 2 A first partial three-dimensional structure schematic view of the wire coil mounting support for braiding processing is shown.
[0018] Figure 3 A second partial three-dimensional structure schematic view of the wire coil mounting support for braiding processing is shown.
[0019] Figure 4 A third partial three-dimensional structure schematic view of the wire coil mounting support for braiding processing is shown.
[0020] Figure 5A fourth partial three-dimensional structure schematic view of the wire roll mounting support for braiding processing is shown.
[0021] Figure 6 A fifth partial three-dimensional structure schematic view of the wire roll mounting support for braiding processing is shown.
[0022] The reference signs are explained as follows: 1, support support; 2, driving motor; 3, driving shaft; 4, driving gear; 5, translation toothed plate; 6, support support column; 7, fixed support; 8, fixed arc seat; 9, hydraulic push rod; 10, lifting toothed plate; 11, adjusting shaft; 12, adjusting gear; 13, double-sided toothed plate; 14, rotating gear; 15, rotating shaft; 16, fixed block; 17, rotating arc seat; 101, translation sliding rail; 102, translation sliding rod; 103, sliding seat; 201, support support; 202, guide sliding rod; 203, guide sliding block; 301, lifting sliding groove; 302, lifting sliding rod; 303, lifting sliding block. DETAILED DESCRIPTION
[0023] The utility model is further explained in connection with the drawings and examples.
[0024] Please refer to Figures 1-6The utility model provides a kind of line roll mounting bracket for weaving processing, including support pedestal 1, driving motor 2, driving shaft 3, driving gear 4, translation tooth plate 5, support pillar 6, fixed support 7, fixed arc seat 8, hydraulic push rod 9, lifting tooth plate 10, adjusting shaft 11, adjusting gear 12, double-sided tooth plate 13, rotating gear 14, rotating shaft 15, fixed block 16, rotating arc seat 17, translation assembly, guide assembly and lifting assembly, translation assembly is provided on the bottom wall of support pedestal 1, translation assembly's side wall is provided with driving motor 2, the output of driving motor 2 is provided with driving shaft 3, one end of driving shaft 3 is provided with driving gear 4, the side wall of translation assembly is provided with translation tooth plate 5, and the upper and lower two groups of translation tooth plate 5 are engaged with driving gear 4 respectively, and the upper of support pedestal 1 is provided with guide assembly, the upper of translation assembly is provided with support pillar 6, and the bottom two sides of support pillar 6 are fixedly connected with the inner wall of two groups of guide assembly, one side of the top of support pillar 6 is provided with fixed support 7, the upper of fixed support 7 is provided with fixed arc seat 8, the other side of support pillar 6 is provided with hydraulic push rod 9, the upper end of hydraulic push rod 9 is provided with lifting tooth plate 10, the other side of support pillar 6 is provided with adjusting shaft 11, the side wall of adjusting shaft 11 is provided with adjusting gear 12, and adjusting gear 12 is engaged with lifting tooth plate 10, the other side of support pillar 6 is provided with lifting assembly, the side wall of lifting assembly is provided with double-sided tooth plate 13, adjusting gear 12 is engaged with one side of lifting tooth plate 10, the top side wall of support pillar 6 is provided with fixed block 16, the inside of fixed block 16 is provided with rotating shaft 15, one end of rotating shaft 15 is provided with rotating gear 14, and rotating gear 14 is engaged with the other side of double-sided tooth plate 13, and the other end of rotating shaft 15 is provided with rotating arc seat 17.
[0025] Please refer to Figure 2 , translation assembly includes translation slide rail 101 and translation slide rod 102, and the bottom wall of support pedestal 1 is provided with translation slide rail 101, the inside of translation slide rail 101 is provided with translation slide rod 102, driving motor 2 is arranged on the side wall of translation slide rail 101, and parallel movement can be carried out through translation slide rail 101, and translation assembly further includes translation slide base 103, two groups of translation slide base 103 are arranged on the side wall of translation slide rod 102, translation slide base 103 is slidably connected with translation slide rod 102, support pillar 6 is arranged above translation slide base 103, translation tooth plate 5 is arranged on the side wall of translation slide base 103, and translation slide base 103 can be moved in parallel through translation slide rail 101, and guide assembly includes support support 201 and guide slide rod 202, and the upper of support pedestal 1 is provided with support support 201, the inside of the two sides of support support 201 is provided with two groups of guide slide rod 202, and the inner wall of support support 201 is fixedly connected with the two ends of guide slide rod 202, and guided movement can be carried out through guide slide rod 202.
[0026] Please refer toFigures 3-6 The guiding assembly further comprises guiding sliding blocks 203, the side walls of the guiding sliding rods 202 are provided with the guiding sliding blocks 203, the guiding sliding blocks 203 are in sliding connection with the guiding sliding rods 202, the bottom of the supporting column 6 is fixedly connected with the inner walls of the two groups of guiding sliding blocks 203, the guiding sliding blocks 203 can move in a guided manner through the guiding sliding rods 202, the lifting assembly comprises lifting sliding grooves 301 and lifting sliding rods 302, the other side of the supporting column 6 is provided with the lifting sliding grooves 301, the lifting sliding grooves 301 are provided with the lifting sliding rods 302, the two ends of the lifting sliding rods 302 are fixedly connected with the inner walls of the lifting sliding grooves 301, the lifting sliding grooves 301 and the lifting sliding rods 302 can move in a lifting manner, the lifting assembly further comprises lifting sliding blocks 303, the side walls of the lifting sliding rods 302 are provided with the lifting sliding blocks 303, the lifting sliding blocks 303 are in sliding connection with the lifting sliding rods 302, the double-sided toothed plate 13 is arranged on the side walls of the lifting sliding blocks 303, and the lifting sliding blocks 303 can move in a lifting manner through the lifting sliding rods 302.
[0027] When the braided wire coil mounting support is in use, first, the driving motor 2 is started to rotate the driving shaft 3, and then drive the driving gear 4 connected thereto to work, the driving gear 4 drives the two groups of translation toothed plates 5 to move relative to each other in a precise meshing manner, the two groups of translation toothed plates 5 are connected to the two translation sliding seats 103 respectively, and are in sliding connection through the translation sliding rods 102,
[0028] Therefore, with the movement of the two translation toothed plates 5, the two translation sliding seats 103 also stably slide on the translation sliding rails 101, and this sliding action further drives the movement of the two supporting columns 6, and the supporting columns 6 ensure the stability and accuracy of the movement through the cooperation of the guiding sliding blocks 203 and the guiding sliding rods 202, so that the length of the wire coil shaft distance can be flexibly adjusted according to actual needs,
[0029] Subsequently, the two ends of the wire coil shaft to be installed are respectively placed on the fixed arc seats 8, then the hydraulic push rod 9 is started to push the lifting toothed plate 10 upwards, the lifting toothed plate 10 is in meshing connection with the adjusting gear 12 on the adjusting shaft 11, therefore, the upward movement of the lifting toothed plate 10 drives the forward rotation of the adjusting gear 12, and the rotation of the adjusting gear 12 drives the double-sided toothed plate 13 to move downwards along the lifting sliding rod 302,
[0030] In this process, the double-sided toothed plate 13 not only realizes the lifting of itself, but also drives the reverse rotation of the rotating shaft 15 through the meshing connection of the other side thereof with the rotating gear 14, the other end of the rotating shaft 15 is connected with the rotating arc seat 17, therefore, the rotation of the rotating shaft 15 makes the rotating arc seat 17 also reversely rotate correspondingly,
[0031] Finally, through the cooperation of the fixed arc seat 8 and the rotating arc seat 17, the stable installation of the two ends of the line reel rod is realized, and this design not only improves the practical efficiency of the installation support, but also greatly enhances the flexible adjustment range of use, and meets the diversified needs of different line reel length in the weaving process.
[0032] Through the above steps, when the weaving line reel installation support is used, first, the driving motor 2 is started to rotate the driving shaft 3, and then the driving gear 4 connected thereto starts to work, the driving gear 4 drives the two groups of translation tooth plates 5 to move relative to each other in a precise meshing manner, with the movement of the two translation tooth plates 5, the two translation assemblies also slide stably, and this sliding action further drives the movement of the two supporting struts 6, and the supporting struts 6 ensure the stability and accuracy of the movement through the cooperation of the two guide assemblies, so that the length of the line reel distance can be flexibly adjusted according to actual needs, then, the two ends of the line reel rod to be installed are placed on the fixed arc seat 8, then the hydraulic push rod 9 is started to push the lifting tooth plate 10 to rise, the lifting tooth plate 10 is meshed with the adjusting gear 12 on the adjusting shaft 11, therefore, the rising of the lifting tooth plate 10 drives the forward rotation of the adjusting gear 12, and the rotation of the adjusting gear 12 drives the downward movement of the double-sided tooth plate 13 along the lifting assembly, in this process, the double-sided tooth plate 13 not only realizes the lifting of itself, but also drives the reverse rotation of the rotating shaft 15 through the meshing of the other side with the rotating gear 14, the other end of the rotating shaft 15 is connected with the rotating arc seat 17, therefore, the rotation of the rotating shaft 15 makes the rotating arc seat 17 also reversely rotate, finally, through the cooperation of the fixed arc seat 8 and the rotating arc seat 17, the stable installation of the two ends of the line reel rod is realized, and this design not only improves the practical efficiency of the installation support, but also greatly enhances the flexible adjustment range of use, and meets the diversified needs of different line reel length in the weaving process.
[0033] The embodiments of the utility model are described in detail above combined with the drawings, but the utility model is not limited to the above-mentioned embodiments, within the knowledge range of the person skilled in the art, various changes can be made without departing from the purpose of the utility model.
Claims
1. A wire spool mounting bracket for braiding processing, comprising a support base (1), characterized in that: It also includes an active motor (2), an active shaft (3), an active gear (4), a translational gear plate (5), a support column (6), a fixed bracket (7), a fixed arc seat (8), a hydraulic push rod (9), a lifting gear plate (10), an adjusting shaft (11), an adjusting gear (12), a double-sided gear plate (13), a rotating gear (14), a rotating shaft (15), a fixed block (16), a rotating arc seat (17), a translation assembly, a guide assembly, and a lifting assembly. A flat surface is provided on the bottom wall of the support column (1). The translation component has a drive motor (2) on its side wall, a drive shaft (3) on its output end, a drive gear (4) on one end of the drive shaft (3), a translation gear plate (5) on its side wall, and two sets of translation gear plates (5) meshing with the drive gear (4) respectively. A guide component is provided above the support base (1), and a support column (6) is provided above the translation component. The bottom sides of the support column (6) are fixed to the inner walls of the two sets of guide components. A fixed bracket (7) is provided on one side of the top of the support column (6), and a fixed arc seat (8) is provided above the fixed bracket (7). A hydraulic push rod (9) is provided on the other side of the support column (6), and a lifting gear plate (10) is provided at the upper end of the hydraulic push rod (9). An adjusting shaft (11) is provided on the other side of the support column (6), and an adjusting gear (12) is provided on the side wall of the adjusting shaft (11). The adjusting gear (12) meshes with the lifting gear plate (10). The other side of the support column (6) A lifting assembly is provided on one side, and a double-sided toothed plate (13) is provided on the side wall of the lifting assembly. An adjusting gear (12) meshes with one side of the lifting toothed plate (10). A fixing block (16) is provided on the top side wall of the support column (6). A rotating shaft (15) is provided inside the fixing block (16). A rotating gear (14) is provided at one end of the rotating shaft (15). The rotating gear (14) meshes with the other side of the double-sided toothed plate (13). A rotating arc seat (17) is provided at the other end of the rotating shaft (15).
2. The braiding spool mounting bracket according to claim 1, characterized in that: The translation component includes a translation slide rail (101) and a translation slide rod (102). The translation slide rail (101) is provided on the bottom wall of the support (1). The translation slide rod (102) is provided inside the translation slide rail (101). The active motor (2) is provided on the side wall of the translation slide rail (101).
3. The braiding spool mounting bracket according to claim 2, characterized in that: The translation assembly also includes a translation slide (103), and two sets of translation slides (103) are provided on the side wall of the translation slide rod (102). The translation slides (103) are slidably connected to the translation slide rod (102). The support column (6) is provided above the translation slide (103), and the translation tooth plate (5) is provided on the side wall of the translation slide (103).
4. The braiding spool mounting bracket according to claim 2, characterized in that: The guide assembly includes a support bracket (201) and a guide slide rod (202). The support bracket (201) is provided above the support support (1). Two sets of guide slide rods (202) are provided inside both sides of the support bracket (201). Both ends of the guide slide rods (202) are fixedly connected to the inner wall of the support bracket (201).
5. The braiding spool mounting bracket according to claim 4, characterized in that: The guide assembly also includes a guide slider (203). The guide slider (203) is provided on the side wall of the guide rod (202). The guide slider (203) is slidably connected to the guide rod (202). The bottom sides of the support column (6) are fixedly connected to the inner walls of the two sets of guide sliders (203).
6. The braiding spool mounting bracket according to claim 4, characterized in that: The lifting assembly includes a lifting slide (301) and a lifting slide rod (302). The lifting slide (301) is provided on the other side of the support column (6). The lifting slide (302) is provided inside the lifting slide (301). Both ends of the lifting slide rod (302) are fixedly connected to the inner wall of the lifting slide (301).
7. A wire spool mounting bracket for braiding processing according to claim 6, characterized in that: The lifting assembly also includes a lifting slider (303), which is provided on the side wall of the lifting slide rod (302). The lifting slider (303) is slidably connected to the lifting slide rod (302), and a double-sided toothed plate (13) is provided on the side wall of the lifting slider (303).