A weaving auxiliary structure of a lawn fence weaving machine
By coordinating the expansion unit, shaping unit, and auxiliary support unit, the problem of material instability in the weaving structure of the lawn fence weaving machine is solved, achieving high-quality and efficient weaving results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DINGZHOU JINTE WIRE MESH EQUIP CO
- Filing Date
- 2025-07-21
- Publication Date
- 2026-06-02
AI Technical Summary
The weaving structure of traditional lawn fence weaving machines makes it difficult to ensure stable material distribution and proper shaping, resulting in poor weaving quality, poor coordination between components, low work efficiency, and a lack of effective auxiliary support structures, which affects production quality and efficiency.
By employing the coordinated operation of expansion units, shaping units, and auxiliary support units, the expansion units expand the holes at the bottom of the mesh, the shaping units precisely shape the angle and position of the bottom of the mesh, and the auxiliary support units provide continuous support, ensuring that the hole size is appropriate and improving weaving quality and efficiency.
It significantly improves the weaving quality and production efficiency of lawn fences, ensures proper hole size, prevents material shifting, and enhances the stability and efficiency of the weaving process.
Smart Images

Figure CN224313819U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of weaving auxiliary equipment technology, and in particular to a weaving auxiliary structure for a lawn fence weaving machine. Background Technology
[0002] In the manufacturing of lawn fences, the weaving structure of lawn fence weaving machines plays a crucial role in the quality and production efficiency of the fences. Traditional lawn fence weaving machine structures suffer from numerous problems in practical use. Some weaving structures struggle to ensure stable material distribution and proper shaping during the weaving process, resulting in fences that fail to meet ideal standards in terms of dimensional accuracy and structural strength, leading to inconsistent product quality. Furthermore, existing weaving structures exhibit poor coordination between components during operations such as expanding and shaping the material, resulting in low work efficiency and an inability to meet ever-increasing production demands. In addition, the lack of effective auxiliary support structures makes it easy for materials to shift or deform during the weaving process, further impacting the production quality and efficiency of lawn fences. Therefore, a new auxiliary weaving structure for lawn fence weaving machines is urgently needed to address these problems in existing technologies. Utility Model Content
[0003] The purpose of this invention is to provide a weaving auxiliary structure for a lawn fence weaving machine. Through the coordinated operation of the expansion unit, the shaping unit, and the auxiliary support unit, the weaving quality and production efficiency of the lawn fence are significantly improved.
[0004] To achieve the above objectives, this utility model provides a weaving auxiliary structure for a lawn fence weaving machine, including an expansion unit, a shaping unit, and an auxiliary support unit on a weaving mounting base. The expansion unit is located in front of the shaping unit. A baffle plate of the shaping unit is provided between the auxiliary support components of the auxiliary support unit. A plurality of expansion telescopic members are evenly provided on the expansion rotating rod of the expansion unit. An expansion rod is provided on the side of the expansion telescopic member near the baffle plate. A material feeding frame is provided between the baffle plate and the expansion rod of the shaping unit. The auxiliary support components are a first auxiliary support rod and a second auxiliary support rod arranged opposite to each other.
[0005] Preferably, the expansion and telescopic components include, but are not limited to, telescopic drive structures such as cylinders, hydraulic cylinders, and electric telescopic rods.
[0006] Preferably, the upper middle part of the first auxiliary support rod and the second auxiliary support rod are in the shape of a 7, the lower part of the first auxiliary support rod is connected to the first auxiliary support seat, the lower part of the second auxiliary support rod is connected to the second auxiliary support seat, and both the first auxiliary support seat and the second auxiliary support seat are connected to the auxiliary support rotating rod.
[0007] Preferably, one end of the auxiliary support rotating rod is hinged to the rotating connecting rod, and the end of the rotating connecting rod away from the auxiliary support rotating rod is hinged to the auxiliary support cylinder.
[0008] Preferably, the expansion and telescopic component is connected to the expansion and rotating rod via an expansion and mounting ring, the expansion and rotating rod is connected to the expansion and rotating motor, the expansion and rotating motor is connected to the braided mounting base, and the expansion and rotating rod is hinged to the braided mounting base.
[0009] Preferably, the feeding frame is symmetrically provided with several feeding rods, the feeding frame is connected to the feeding motor, and the feeding motor is connected to the braiding mounting base through the feeding mounting frame.
[0010] Preferably, the top height of the first auxiliary support rod and the second auxiliary support rod is higher than the top height of the baffle plate.
[0011] Preferably, both the auxiliary support rotating rod and the expansion rotating rod are hinged to the braided mounting base.
[0012] Therefore, the present invention provides a weaving auxiliary structure for a lawn fence weaving machine with the above-mentioned structure. The shaping unit can precisely shape the angle and position of the bottom of the wire mesh, the expansion unit can expand the holes at the bottom of the wire mesh, and the auxiliary support unit provides continuous support for the expanded holes, providing suitable hole sizes for subsequent wire mesh weaving. Through the coordinated cooperation of the expansion unit, the shaping unit, and the auxiliary support unit, the weaving quality and production efficiency of the lawn fence are significantly improved.
[0013] The technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and embodiments. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the weaving auxiliary structure of a lawn fence weaving machine according to the present invention;
[0015] Figure 2 yes Figure 1 Enlarged view of point A in the image;
[0016] Figure 3 yes Figure 1 Enlarged view of point B in the image;
[0017] Figure 4 yes Figure 1 Enlarged view of point C in the image.
[0018] Figure label:
[0019] 1. Expansion support unit; 11. Expansion support rotating rod; 12. Expansion support telescopic component; 13. Expansion support rotating motor; 14. Expansion support rod; 15. Expansion support mounting ring; 2. Shaping unit; 21. Material baffle; 22. Material feeding motor; 23. Material feeding frame; 24. Material feeding rod; 3. Auxiliary support unit; 31. First auxiliary support rod; 32. Second auxiliary support rod; 33. Auxiliary support rotating rod; 34. Auxiliary support cylinder; 35. Rotating connecting rod; 36. First auxiliary support seat; 37. Second auxiliary support seat; 4. Braided mounting seat. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments. Unless otherwise defined, the technical or scientific terms used in this invention should have the ordinary meaning understood by one of ordinary skill in the art to which this invention pertains. The features mentioned above or in the specific examples mentioned in this invention can be combined arbitrarily, and these specific embodiments are only used to illustrate this invention and are not intended to limit the scope of this invention.
[0021] Example
[0022] like Figures 1-4 As shown, this utility model provides a weaving auxiliary structure for a lawn fence weaving machine, including an expansion unit 1, a shaping unit 2, and an auxiliary support unit 3 on a weaving mounting base 4. The expansion unit 1 is located in front of the shaping unit 2, and a baffle plate 21 of the shaping unit 2 is provided between the auxiliary support components of the auxiliary support unit 3. A plurality of expansion telescopic members 12 are evenly provided on the expansion rotating rod 11 of the expansion unit 1, and an expansion rod 14 is provided on the side of the expansion telescopic member 12 near the baffle plate 21. A material guide frame 23 is provided between the baffle plate 21 and the expansion rod 14 in the shaping unit 2, and the auxiliary support components are a first auxiliary support rod 31 and a second auxiliary support rod 32 arranged opposite to each other.
[0023] The expansion telescopic component 12 and expansion rod 14 on the expansion rotating rod 11 can expand the holes at the bottom of the wire mesh, providing a suitable hole size for subsequent wire mesh weaving. The material feeder 23 of the shaping unit 2 is located between the baffle plate 21 and the expansion rod 14. The arc-shaped baffle plate 21 cooperates with it to precisely shape the angle and position of the bottom of the wire mesh, ensuring the shape quality of the woven fence. The auxiliary support component of the auxiliary support unit 3 provides continuous support for the expanded holes, keeping them open at all times. This facilitates the wire feeding process during weaving and prevents the wire from shifting relative to the wire mesh holes, thus improving the weaving quality of the lawn fence composed of wire mesh.
[0024] The upper middle parts of the first auxiliary support rod 31 and the second auxiliary support rod 32 are in a 7-shape. The lower part of the first auxiliary support rod 31 is connected to the first auxiliary support seat 36. The lower part of the second auxiliary support rod 32 is connected to the second auxiliary support seat 37. Both the first auxiliary support seat 36 and the second auxiliary support seat 37 are connected to the auxiliary support rotating rod 33.
[0025] The shape of the upper parts of the first auxiliary support rod 31 and the second auxiliary support rod 32 ensures sufficient support strength while making reasonable use of space and avoiding interference with other components. The rotation of the auxiliary support rotating rod 33 drives the first auxiliary support seat 36 and the second auxiliary support seat 37 to move accordingly. At the same time, it causes the first auxiliary support rod 31 and the second auxiliary support rod 32 to alternately contact the bottom holes of the wire mesh, ensuring the continuous weaving process of the wire mesh and improving the adaptability and practicality of the auxiliary support unit 3.
[0026] One end of the auxiliary support rotating rod 33 is hinged to the rotating connecting rod 35, and the end of the rotating connecting rod 35 away from the auxiliary support rotating rod 33 is hinged to the auxiliary support cylinder 34. Through the hinged connection between the auxiliary support rotating rod 33, the rotating connecting rod 35, and the auxiliary support cylinder 34, the angle of the auxiliary support assembly is automatically adjusted. The auxiliary support cylinder 34 can precisely control the rotation angle of the auxiliary support rotating rod 33 according to the actual needs of the weaving process, causing the first auxiliary support rod 31 and the second auxiliary support rod 32 to alternately contact the bottom holes of the wire mesh.
[0027] The expansion and telescopic component 12 is connected to the expansion and rotating rod 11 via the expansion and mounting ring 15. The expansion and rotating rod 11 is connected to the expansion and rotating motor 13. The expansion and rotating motor 13 is connected to the braided mounting base 4. The expansion and rotating rod 11 is hinged to the braided mounting base 4.
[0028] The expansion rotating rod 11 is connected to the expansion rotating motor 13. Driven by the expansion rotating motor 13, the expansion rotating rod 11 can drive the expansion telescopic component 12 and the expansion rod 14 to rotate, achieving uniform expansion of the wire mesh. The rotation of the expansion rotating rod 11 causes the expansion telescopic component 12 to drive the expansion rod 14 downward and expand the wire mesh holes. The number of expansion telescopic components 12 is the same as the number of holes at the bottom of the wire mesh, ensuring that all holes at the bottom of the wire mesh are expanded. The expansion telescopic component 12 is connected to the expansion rotating rod 11 through the expansion mounting ring 15, ensuring that the installation position of the expansion telescopic component 12 can be adjusted according to the holes of the wire mesh.
[0029] A plurality of feeding rods 24 are symmetrically arranged on the feeding frame 23. The feeding frame 23 is connected to the feeding motor 22, which is connected to the weaving mounting base 4 through the feeding mounting bracket. Driven by the feeding motor 22, the feeding frame 23 can quickly and accurately shape the bottom of the wire mesh. The feeding rods 24 symmetrically arranged on the feeding frame 23 can evenly move and shape the bottom of the wire mesh, ensuring that the tilt angle of the bottom of the wire mesh changes during the shaping process.
[0030] The top height of the first auxiliary support rod 31 and the second auxiliary support rod 32 is higher than the top height of the baffle plate 21, so as to avoid the first auxiliary support rod 31 and the second auxiliary support rod 32 from contacting the baffle plate 21 when they move.
[0031] Both the auxiliary support rotating rod 33 and the expansion rotating rod 11 are hinged to the braided mounting base 4, so that the auxiliary support unit 3 and the expansion unit 1 can maintain stable rotation during operation.
[0032] During operation, the feeding motor 22 drives the feeding frame 23 to rotate. The feeding rod 24 on the feeding frame 23 cooperates with the baffle plate 21 to adjust the tilt angle of the bottom of the wire mesh. The expansion and support rotation motor 13 drives the expansion and support rotation rod 11 to rotate. The expansion and support rotation rod 11 drives the expansion and support telescopic component 12 and the expansion and support rod 14 to rotate together. The expansion and support telescopic component 12 performs preliminary expansion and support treatment on the holes at the bottom of the wire mesh through telescopic movement, so that the holes at the bottom of the wire mesh reach a suitable unfolded state. The auxiliary support rotation rod 33 drives the first auxiliary support rod 31 and the second auxiliary support rod 32 to adjust their angles and alternately enter the holes at the bottom of the wire mesh. Then, the expansion and support rod 14 is retracted to carry out the subsequent wire mesh weaving process.
[0033] Therefore, the present invention provides a weaving auxiliary structure for a lawn fence weaving machine with the above-mentioned structure. The shaping unit can precisely shape the angle and position of the bottom of the wire mesh, the expansion unit can expand the holes at the bottom of the wire mesh, and the auxiliary support unit provides continuous support for the expanded holes, providing suitable hole sizes for subsequent wire mesh weaving. Through the coordinated cooperation of the expansion unit, the shaping unit, and the auxiliary support unit, the weaving quality and production efficiency of the lawn fence are significantly improved.
[0034] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and not to limit it. Although the utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can still be made to the technical solution of this utility model, and these modifications or equivalent substitutions cannot cause the modified technical solution to deviate from the spirit and scope of the technical solution of this utility model.
Claims
1. A weaving auxiliary structure for a lawn fence weaving machine, characterized in that: It includes a braiding support unit, a shaping unit, and an auxiliary support unit on the braiding mounting base. The braiding support unit is located in front of the shaping unit. A baffle plate of the shaping unit is provided between the auxiliary support components of the auxiliary support unit. Several braiding telescopic components are evenly provided on the braiding rotating rod of the braiding support unit. A braiding rod is provided on the side of the braiding telescopic component near the baffle plate. A material feeding frame is provided between the baffle plate and the braiding rod of the shaping unit. The auxiliary support components are a first auxiliary support rod and a second auxiliary support rod arranged opposite to each other.
2. The weaving auxiliary structure of a lawn fence weaving machine according to claim 1, characterized in that: The upper middle part of the first auxiliary support rod and the second auxiliary support rod are in a 7-shape. The lower part of the first auxiliary support rod is connected to the first auxiliary support seat, and the lower part of the second auxiliary support rod is connected to the second auxiliary support seat. Both the first auxiliary support seat and the second auxiliary support seat are connected to the auxiliary support rotating rod.
3. The weaving auxiliary structure of a lawn fence weaving machine according to claim 2, characterized in that: One end of the auxiliary support rotating rod is hinged to the rotating connecting rod, and the end of the rotating connecting rod away from the auxiliary support rotating rod is hinged to the auxiliary support cylinder.
4. The weaving auxiliary structure of a lawn fence weaving machine according to claim 1, characterized in that: The expansion and telescopic component is connected to the expansion and rotating rod via the expansion and mounting ring. The expansion and rotating rod is connected to the expansion and rotating motor. The expansion and rotating motor is connected to the braided mounting base. The expansion and rotating rod is hinged to the braided mounting base.
5. The weaving auxiliary structure of a lawn fence weaving machine according to claim 1, characterized in that: The material feeding frame is symmetrically equipped with several material feeding rods. The material feeding frame is connected to the material feeding motor, and the material feeding motor is connected to the braiding mounting base through the material feeding mounting frame.
6. The weaving auxiliary structure of a lawn fence weaving machine according to claim 1, characterized in that: The top height of the first auxiliary support rod and the second auxiliary support rod is higher than the top height of the baffle plate.
7. The weaving auxiliary structure of a lawn fence weaving machine according to claim 2, characterized in that: Both the auxiliary support rotating rod and the expansion rotating rod are hinged to the braided mounting base.