A wire mesh hanging buckle positioning piece
Patent Information
- Application Number
- CN202522098069.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-09-29
AI Technical Summary
[0003]目前,传统的密孔铁丝网安装方式存在诸多问题:例如,采用铁丝绑扎的方式,存在安装不稳固的问题,铁丝网容易发生位移、变形,导致其垂直度难以保证,固定可靠性差,进而影响分隔效果和施工质量,现有技术中虽有采用挂扣定位的方式,但存在明显缺陷:其一,这类挂扣通常只能满足单根铁丝的固定,夹持范围有限,在高稳定性要求的施工场合,难以提供足够的紧固力,仍无法避免铁丝网在受力后出现松动、偏移的问题;其二,现有挂扣未考虑相邻两片铁丝网的连接需求,当施工中需要对多片铁丝网进行拼接时,缺乏专用的定位连接结构,导致拼接处容易出现缝隙或错位,混凝土极易从缝隙中渗漏,严重影响分隔效果,增加了后期修补的工作量,因此,亟需设计一种密孔铁丝网挂扣定位件来解决上述问题
[0014] In this invention, the installation clamps and connecting seats are securely connected by a first fixing component in the installation foundation structure. Combined with the design of the positioning clamps and anti-slip protrusions, they can be firmly fixed to the building's steel reinforcement frame, avoiding the problems of loosening and displacement found in traditional wire binding methods. This provides a solid foundation for the installation of the wire mesh. In the hook structure, the first and second movable seats are fixed to the connecting seat by a second fixing component. Combined with the closed design of the first and second buckles, the wire mesh body can be tightly clamped, further ensuring the verticality and stability of the wire mesh after installation, significantly improving the reliability of the fixation, and ensuring that the separation effect is not affected.
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Figure CN224717417U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wire mesh technology, specifically a fine-mesh wire mesh hook positioning component. Background Technology
[0002] During the construction of continuous expansion reinforcement strips in building engineering, dense wire mesh needs to be installed on both sides of the reinforcement strip to prevent concrete of different strength grades or different mix proportions from mixing into each other, so as to ensure that the function of the expansion reinforcement strip can be effectively realized.
[0003] Currently, traditional methods for installing dense-mesh wire mesh have several problems. For example, the wire binding method results in unstable installation, with the wire mesh prone to displacement and deformation, making it difficult to guarantee its verticality and resulting in poor fixation reliability. This, in turn, affects the separation effect and construction quality. Although existing technologies use hook-and-loop positioning, they have significant drawbacks: First, these hooks typically only secure a single wire, with a limited clamping range. In construction situations requiring high stability, they cannot provide sufficient tightening force, and the wire mesh still cannot be prevented from loosening or shifting under stress. Second, existing hooks do not consider the connection requirements between adjacent wire mesh sections. When multiple wire mesh sections need to be spliced during construction, the lack of a dedicated positioning and connection structure leads to gaps or misalignments at the splicing points. Concrete can easily leak from these gaps, severely affecting the separation effect and increasing the workload for later repairs. Therefore, there is an urgent need to design a dense-mesh wire mesh hook-and-loop positioning device to solve these problems. Utility Model Content
[0004] The purpose of this utility model is to provide a dense-hole wire mesh hook positioning component to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A dense-mesh wire mesh hook positioning component includes a positioning component body installed on the wire mesh body. The positioning component body consists of a connecting seat, an installation base structure, and a hook structure. The installation base structure is pre-installed on a building steel reinforcement frame. The hook structure is used to fix the wire mesh body. The installation base structure includes two slots opened on one side of the connecting seat, and the same installation clamp is inserted into the inner wall of the two slots. A first fixing component is provided on one side of the installation clamp and the connecting seat. The hook structure includes sliding seats slidably disposed at both ends on the other side of the connecting seat. A first movable seat and a second movable seat are respectively hinged to one end of the two sliding seats. A first buckle plate is fixed at the middle of one side of the first movable seat, and a second buckle plate is fixed at the top and bottom of one side of the second movable seat. A second fixing component is provided on the other side of the connecting seat for both the first movable seat and the second movable seat.
[0007] Furthermore, the first fixing component includes a mounting base fixed to the outer walls of both sides of the mounting clamp, and each mounting base is provided with a first connecting screw hole. Two first fixing screw holes are provided on one side of the connecting base, and a first screw is screwed into the inner wall of the first fixing screw hole and the inner wall of the first connecting screw hole.
[0008] Furthermore, a positioning clamp is fixed in the middle of one side of the outer wall of the connecting seat, and the positioning clamp is attached to the inner wall of the mounting clamp. Anti-slip protrusions are fixed at equal intervals on one side of the positioning clamp and one side of the inner wall of the mounting clamp.
[0009] Furthermore, a groove is provided in the middle of the other side of the connecting seat, and one end of each of the two sliding seats is slidably disposed inside the groove, the cross section of which is designed to be T-shaped.
[0010] Furthermore, the second fixing component includes two second connecting screw holes opened on the first movable seat and the second movable seat, and two fixing screw holes are opened at the four corners of the outer wall on the other side of the connecting seat. The inner walls of the four second fixing screw holes are screwed to the inner walls of the four second connecting screw holes with second screws.
[0011] Furthermore, four third fixing screw holes are provided in the middle of the outer wall on the other side of the connecting seat, and the positions of the third fixing screw holes correspond to the positions of the second connecting screw holes. The inner wall of the third fixing screw hole is screwed and adapted to the outer wall of the second screw.
[0012] Furthermore, the sides of the first and second buckles near the connecting seat are both designed to be arc-shaped, and the first and second movable seats are closed as a whole by the first and second buckles.
[0013] Compared with the prior art, the beneficial effects of this utility model are:
[0014] In this invention, the installation clamps and connecting seats are securely connected by a first fixing component in the installation foundation structure. Combined with the design of the positioning clamps and anti-slip protrusions, they can be firmly fixed to the building's steel reinforcement frame, avoiding the problems of loosening and displacement found in traditional wire binding methods. This provides a solid foundation for the installation of the wire mesh. In the hook structure, the first and second movable seats are fixed to the connecting seat by a second fixing component. Combined with the closed design of the first and second buckles, the wire mesh body can be tightly clamped, further ensuring the verticality and stability of the wire mesh after installation, significantly improving the reliability of the fixation, and ensuring that the separation effect is not affected.
[0015] This utility model, with its design of the first and second buckle plates, overcomes the limitation of traditional hooks that can only fix a single wire. It can clamp the entire dense wire mesh and provide sufficient fastening force even in construction situations requiring high stability. This effectively prevents the wire mesh from loosening or shifting under stress, meeting the needs for wire mesh fixation in different construction scenarios. At the same time, through the flexible adjustment and stable fixing of the hook structure, multiple pieces of wire mesh can be precisely aligned when spliced, reducing gaps and misalignments at the splicing points. This prevents concrete from leaking through the gaps, ensuring the separation effect, reducing the workload of later repairs, and improving construction efficiency and quality. Attached Figure Description
[0016] Figure 1 This is a three-dimensional view of a fine-mesh wire mesh hook positioning component.
[0017] Figure 2 This is a schematic diagram of the positioning body structure of a dense-hole wire mesh hook positioning component.
[0018] Figure 3 An exploded view of the positioning component body of a fine-mesh wire mesh hook positioning component.
[0019] Figure 4 This is a cross-sectional view of the connecting seat of a fine-mesh wire mesh hook positioning component.
[0020] Figure 5 This is a schematic diagram of the slot and the first fixing screw hole structure of a dense wire mesh hook positioning component.
[0021] Figure 6 This is a closed diagram of the hook structure of a dense-hole wire mesh hook positioning component.
[0022] In the diagram: 1. Wire mesh body; 2. Positioning component body; 21. Connecting seat; 22. Installation base structure; 221. Installation clamp; 222. Mounting seat; 223. Positioning clamp; 224. Anti-slip protrusion; 225. First connecting screw hole; 226. First screw; 227. Slot; 228. First fixing screw hole; 23. Hook structure; 231. Slide groove; 232. Slide seat; 233. First movable seat; 234. Second screw; 235. Second connecting screw hole; 236. First buckle plate; 237. Second fixing screw hole; 238. Third fixing screw hole; 239. Second buckle plate; 2310. Second movable seat. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] Please see Figures 1-6In this embodiment of the utility model, a dense-mesh wire mesh hook positioning component includes a positioning component body 2 installed on the wire mesh body 1. The positioning component body 2 consists of a connecting seat 21, an installation base structure 22, and a hook structure 23. The installation base structure 22 is pre-installed on the building steel reinforcement frame. The hook structure 23 is used to fix the wire mesh body 1. The installation base structure 22 includes two slots 227 opened on one side of the connecting seat 21, and the same mounting clamp 221 is inserted into the inner wall of the two slots 227. A first fixing component is provided on one side of the mounting clamp 221 and the connecting seat 21. The first fixing component includes mounting seats 222 fixed to the outer walls of both sides of the mounting clamp 221, and each mounting seat 222 is provided with a first fixing component. A connecting screw hole 225 is provided. Two first fixing screw holes 228 are provided on one side of the connecting seat 21. The inner wall of the first fixing screw hole 228 is screwed to the inner wall of the first connecting screw hole 225 with a first screw 226. A positioning clamp 223 is fixed in the middle of the outer wall of one side of the connecting seat 21. The positioning clamp 223 fits against the inner wall of the mounting clamp 221. Anti-slip ridges 224 are fixed at equal intervals on one side of the positioning clamp 223 and one side of the inner wall of the mounting clamp 221. In the installation base structure 22, the mounting clamp 221 and the connecting seat 21 are firmly connected by the first fixing component. With the design of the positioning clamp 223 and the anti-slip ridges 224, it can be firmly fixed to the building steel reinforcement frame, avoiding the need for traditional wire binding. The method addresses the issues of loosening and displacement, providing a solid foundation for the installation of wire mesh. The hook structure 23 includes slide blocks 232 slidably disposed at both ends of the other side of the connecting seat 21. A groove 231 is provided in the middle of the other side of the connecting seat 21, and one end of each of the two slide blocks 232 is slidably disposed inside the groove 231. The groove 231 has a T-shaped cross-section, and one end of each of the two slide blocks 232 is respectively hinged to a first movable seat 233 and a second movable seat 2310. A first buckle plate 236 is fixed in the middle of one side of the first movable seat 233, and a second buckle plate 239 is fixed at the top and bottom of one side of the second movable seat 2310. Both the first movable seat 233 and the second movable seat 2310 are connected to the other side of the connecting seat 21. A second fixing component is provided on the side. The second fixing component includes two second connecting screw holes 235 opened on the first movable seat 233 and the second movable seat 2310. The four corners of the outer wall of the other side of the connecting seat 21 are provided with second fixing screw holes 237. The inner walls of the four second fixing screw holes 237 and the inner walls of the four second connecting screw holes 235 are screwed with second screws 234. The first movable seat 233 and the second movable seat 2310 are fixed to the connecting seat 21 through the second fixing component. Combined with the closed design of the first buckle plate 236 and the second buckle plate 239, the wire mesh body 1 can be tightly clamped, which further ensures the verticality and stability of the wire mesh after installation, significantly improves the fixing reliability, and ensures that the separation effect is not affected.
[0025] Specifically, four third fixing screw holes 238 are provided in the middle of the outer wall of the other side of the connecting seat 21, and the positions of the third fixing screw holes 238 correspond to the positions of the second connecting screw holes 235. The inner wall of the third fixing screw holes 238 is screwed and adapted to the outer wall of the second screw 234.
[0026] Specifically, the first buckle plate 236 and the second buckle plate 239 are both designed with an arc shape on the side near the connecting seat 21, and the first movable seat 233 and the second movable seat 2310 are closed into a whole by the first buckle plate 236 and the second buckle plate 239, which can fully fix and install a single wire mesh body 1.
[0027] The working principle of this utility model is as follows: During operation, the installation base structure 22 is first used to fix the structure to the building steel reinforcement frame. In the installation base structure 22, the installation clamp 221 is inserted into the two slots 227 on one side of the connecting seat 21. Then, it is fixed by the first fixing component, that is, the first connecting screw hole 225 on the installation seat 222 and the first fixing screw hole 228 on one side of the connecting seat 21 are used together with the first screw 226 to firmly connect the installation clamp 221 and the connecting seat 21. At the same time, the positioning clamp 223 fits against the inner wall of the installation clamp 221, and the anti-slip protrusion 224 enhances the friction, ensuring that the whole is firmly fixed on the building steel reinforcement frame.
[0028] The wire mesh body 1 is then fixed by the hook structure 23. In the hook structure 23, the first movable seat 233 and the second movable seat 2310 are rotated so that the first buckle plate 236 and the second buckle plate 239 are attached to the two adjacent wires of the wire mesh body 1. Then, it is fixed by the second fixing component, that is, the second connecting screw hole 235 on the first movable seat 233 and the second movable seat 2310 are aligned with the second fixing screw hole 237 on the other side of the connecting seat 21, and the second screw 234 is used to screw it in, thus completing the stable installation of the wire mesh body 1. The above method can also be applied to the installation of two pieces of wire mesh. At the same time, it can also make the two sliding seats 232 slide in the sliding groove 231 on the other side of the connecting seat 21, so that the first buckle plate 236 on the first movable seat 233 and the second buckle plate 239 on the second movable seat 2310 are closed, thus completing the full fixation and installation of a single wire mesh body 1.
[0029] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention.
Claims
1. A positioning component for a fine-mesh wire mesh hook, comprising a positioning component body (2) mounted on the wire mesh body (1), characterized in that: The positioning component body (2) consists of a connecting seat (21), an installation base structure (22), and a hook structure (23). The installation base structure (22) is pre-installed on the building steel reinforcement frame, and the hook structure (23) is used to fix the wire mesh body (1). The installation base structure (22) includes two slots (227) opened on one side of the connecting seat (21), and the same mounting clamp (221) is inserted into the inner wall of the two slots (227). The mounting clamp (221) and the connecting seat (21) are provided with a first fixing component on one side. The hook structure (23) is used to fix the wire mesh body (1). The structure (23) includes slides (232) slidably disposed at both ends of the other side of the connecting seat (21), and a first movable seat (233) and a second movable seat (2310) are respectively hinged to one end of the two slides (232). A first buckle plate (236) is fixed at the middle of one side of the first movable seat (233), and a second buckle plate (239) is fixed at the top and bottom of one side of the second movable seat (2310). The first movable seat (233) and the second movable seat (2310) are both provided with a second fixing component on the other side of the connecting seat (21).
2. The positioning component for a fine-mesh wire mesh hook according to claim 1, characterized in that: The first fixing component includes a mounting base (222) fixed on the outer walls of both sides of the mounting clamp (221), and each mounting base (222) is provided with a first connecting screw hole (225). Two first fixing screw holes (228) are provided on one side of the connecting base (21), and a first screw (226) is screwed into the inner wall of the first fixing screw hole (228) and the inner wall of the first connecting screw hole (225).
3. The positioning component for a fine-mesh wire mesh hook according to claim 2, characterized in that: A positioning clamp (223) is fixed at the middle of one side of the outer wall of the connecting seat (21), and the positioning clamp (223) is attached to the inner wall of the mounting clamp (221). Anti-slip ridges (224) are fixed at equal intervals on one side of the positioning clamp (223) and one side of the inner wall of the mounting clamp (221).
4. The positioning component for a fine-mesh wire mesh hook according to claim 1, characterized in that: A groove (231) is provided in the middle of the other side of the connecting seat (21), and one end of each of the two sliding seats (232) is slidably disposed inside the groove (231). The cross section of the groove (231) is designed as T-shaped.
5. A dense-mesh wire mesh hook positioning component according to claim 4, characterized in that: The second fixing component includes two second connecting screw holes (235) opened on the first movable seat (233) and the second movable seat (2310), and two fixing screw holes (237) are opened at the four corners of the outer wall on the other side of the connecting seat (21). The inner walls of the four second fixing screw holes (237) and the inner walls of the four second connecting screw holes (235) are screwed with second screws (234).
6. A dense-mesh wire mesh hook positioning component according to claim 4, characterized in that: Four third fixing screw holes (238) are provided in the middle of the outer wall on the other side of the connecting seat (21), and the position of the third fixing screw hole (238) corresponds to the position of the second connecting screw hole (235). The inner wall of the third fixing screw hole (238) is screwed and adapted to the outer wall of the second screw (234).
7. A dense-mesh wire mesh hook positioning component according to claim 1, characterized in that: The first buckle plate (236) and the second buckle plate (239) are both designed with an arc shape on the side near the connecting seat (21), and the first movable seat (233) and the second movable seat (2310) are closed as a whole by the first buckle plate (236) and the second buckle plate (239).