A fiberglass mesh fixing fixture for lightweight board production

By using a combination of insert blocks and splice rings to fix the fiberglass mesh in the production of lightweight panels, the problem of fiberglass mesh sagging was solved, achieving firm fixation of the fiberglass mesh and saving materials.

CN224275577UActive Publication Date: 2026-05-26SHANDONG NAPENG NEW BUILDING MATERIALS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG NAPENG NEW BUILDING MATERIALS CO LTD
Filing Date
2025-03-27
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

In current lightweight panel production, fiberglass mesh tends to sag when laid on steel wire mesh, leading to material waste and incomplete coverage.

Method used

A fiberglass mesh fixing fixture was designed, including insert blocks and plug rings. The insert blocks are connected to the four corners of the fiberglass mesh, and the plug rings are installed at the four corners of the steel frame. The fiberglass mesh is fixed by the connection between the insert blocks and the plug rings. The combination structure of the diagonal braces and plug rings prevents sagging, and the deformable through-slit end facilitates the fiberglass mesh to pass through the narrow slit.

Benefits of technology

This method achieves a firm fixation of the fiberglass mesh, prevents sagging, reduces material waste, and improves the covering effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a fiberglass mesh fixing fixture for lightweight board production, belonging to the field of lightweight board production technology. It includes insert blocks and insertion rings installed at the four corners of a steel frame. The insert blocks are inserted into the insertion rings. Each insert block includes a connecting block, one end of which has a through-slot end, and the other end of which has an end seat. Two mesh hooks are provided on the side of the end seat near the connecting block. An insertion seam is provided between the mesh hooks and the through-slot end. Two expansion grooves are provided on the side of the through-slot end near the connecting block. The through-slot end is made of deformable plastic. When the through-slot end is inserted into the insertion ring, the portion of the through-slot end with the expansion grooves deforms, causing the insertion ring to engage within the insertion seam. This utility model can save materials and prevent fiberglass mesh sagging.
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Description

Technical Field

[0001] This utility model relates to the field of lightweight board production technology, specifically to a fiberglass mesh fixing fixture for lightweight board production. Background Technology

[0002] Existing foamed cement composite panels are typically composed of a steel frame, wire mesh, and foamed cement composite core material. In order for the core material to adhere better to the wire mesh and the steel frame, a bottom layer of fiberglass mesh is usually laid on the cold-drawn wire mesh to increase the overall strength of the lightweight panel.

[0003] like Figure 5 As shown: The wire mesh 3 is located below several support beams 17 of the steel frame 15. When laying the mesh, workers need to hold one end of the fiberglass mesh 14 and let it pass through the bottom of several support beams 17 to cover the entire wire mesh 3. The gap between the support beams 17 and the wire mesh 3 is small, which can play a certain role in limiting the placement of the fiberglass mesh 14. Therefore, the fiberglass mesh 14 does not need to be fixed to cover the wire mesh 3 without displacement. However, the fiberglass mesh 14 is relatively soft. Due to the lack of pressure from the support beams 17, the parts at both ends of the wire mesh 3, especially at the four corners, usually droop down along the mesh of the wire mesh 3, resulting in the wire mesh 3 not being completely covered.

[0004] To avoid this situation, it is usually necessary to leave enough slack at the end and fold it to reduce the sagging of the fiberglass 14. Although this method has a certain effect, the length of the slack usually needs to be judged based on experience. If it is too long, it will cause some waste, and if it is too short, the folded part will stick up.

[0005] To address the problems existing in the prior art, this utility model designs and manufactures a fiberglass mesh fixing fixture for lightweight board production to overcome the aforementioned defects. Utility Model Content

[0006] To address the problems existing in the prior art, this utility model provides a fiberglass mesh fixing fixture for lightweight board production, which can save materials and prevent the fiberglass mesh from sagging.

[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a fiberglass mesh fixing fixture for lightweight board production, including insert blocks that can be connected to the four corners of the fiberglass mesh and insert rings installed at the four corners of the steel frame, wherein the insert blocks are inserted into the insert rings;

[0008] The insert includes a connecting block, one end of which is fitted with a through end, and the other end of which is fitted with an end seat. The side of the end seat near the connecting block is provided with two hanging hooks symmetrically arranged along the connecting block, and the hanging hooks are parallel to the connecting block.

[0009] The sides of the two hanging hooks away from the connecting block are flush with the upper and lower ends of the through end, respectively. There is an insertion seam between the hanging hook and the through end. There are two expansion grooves on the side of the through end near the connecting block. The distance between the upper and lower ends of the through end is greater than the inner diameter of the insertion ring. The through end is made of deformable plastic material.

[0010] When the through end is inserted into the plug ring, it is squeezed by the inner wall of the plug ring, and the part of the through end with the expansion groove deforms, causing the plug ring to be stuck in the plug joint.

[0011] Preferably, triangular supports are installed at each of the four corners of the steel frame, and the insertion ring is installed on the triangular supports.

[0012] Preferably, the triangular support includes a diagonal brace and a right-angle plate installed on the inner wall of the steel frame. The two ends of the diagonal brace are respectively fixed to the two ends of the right-angle plate, and the insertion ring is installed at the turning point of the right-angle plate.

[0013] Preferably, the installation height of the plug-in ring is higher than the installation height of the diagonal brace. The plug block with one corner of the fiberglass mesh is attached passes through the triangular support frame from below the diagonal brace and is then inserted from the upper end of the plug-in ring to fix the fiberglass mesh to the steel frame.

[0014] Preferably, the hanging hook includes a plurality of hanging teeth arranged at equal intervals along the length direction of the end seat.

[0015] Preferably, a gap is provided between the two hanging hooks and the connecting block for the fiberglass mesh to slide.

[0016] Preferably, the end of the hanging tooth away from the end seat is provided with a locking block that can limit the movement of the fiberglass mesh.

[0017] Preferably, the card block is provided with an inclined surface to guide the fiberglass mesh into the mesh gap.

[0018] Preferably, the through-slit end is an isosceles triangular prism symmetrical about the connecting block.

[0019] The beneficial effects of this utility model are as follows:

[0020] 1. This utility model has plug-in rings installed at the four corners of the steel frame to connect the four corners of the fiberglass mesh to the plug blocks. The plug blocks are inserted into the plug-in rings to fix the fiberglass mesh, which avoids the situation where the two ends of the fiberglass mesh droop and fail to completely cover the steel wire mesh. At the same time, it can also reduce the amount of fiberglass mesh used and reduce material waste.

[0021] 2. In this utility model, a diagonal brace is connected to the right-angle plate. The installation height of the plug-in ring is higher than that of the diagonal brace. The diagonal brace can not only support the four corners of the steel frame, but also tighten the fiberglass mesh when it is fixed, so that the connection between the plug and the plug-in ring can be more reliable, and it can also tighten the four corners of the fiberglass mesh to prevent the fiberglass mesh from sagging.

[0022] 3. The through-end of this utility model is an isosceles triangular prism. When passing through the gap between the wire mesh and the support beam, the sharp corner of the through-end can play a guiding role, making it easier for the fiberglass mesh to pass through the narrow gap. This solves the problem of curling and deformation that occur when the fiberglass mesh is relatively soft and passes through narrow gaps, making it difficult to pass through. Attached Figure Description

[0023] Figure 1 This is a side view of the triangular support frame of the fiberglass mesh fixing fixture for lightweight board production according to this utility model.

[0024] Figure 2 This is a top view of the triangular support frame of the fiberglass mesh fixing fixture for lightweight board production according to this utility model.

[0025] Figure 3 This is a side view of the insert block of the fiberglass mesh fixing fixture for lightweight board production according to this utility model;

[0026] Figure 4 This is a top view of the insert block of the fiberglass mesh fixing fixture for lightweight board production according to this utility model;

[0027] Figure 5 This is a top view of the steel frame of the fiberglass mesh fixing fixture for lightweight board production according to this utility model.

[0028] In the diagram: 1-Right-angle plate, 2-Diagonal brace, 3-Wire mesh, 4-Interlocking ring, 5-Expansion groove, 6-Seam end, 7-Clamping block, 8-Sloping surface, 9-End seat, 10-Connecting block, 11-Hanging gap, 12-Hanging hook, 13-Interlocking seam, 14-Fiberglass mesh, 15-Steel frame, 16-Hanging tooth, 17-Support beam, 18-Triangular support frame. Detailed Implementation

[0029] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings.

[0030] like Figure 1-5 The fixture shown is a fiberglass mesh fixing tool for lightweight board production. It includes plugs that can be connected to the four corners of the fiberglass mesh 14 and plug rings 4 installed at the four corners of the steel frame 15. The plugs are inserted into the plug rings 4. Triangular supports 18 are installed at the four corners of the steel frame 15. The plug rings 4 are installed on the triangular supports 18, which can strengthen the overall strength of the steel frame 15 and prevent the steel frame 15 from deforming.

[0031] It can also connect with the insertion ring 4 to fix the fiberglass mesh 14, preventing the ends of the fiberglass mesh 14 from sagging and failing to completely cover the wire mesh 3. In addition, it can reduce the amount of fiberglass mesh 14 used, reducing material waste.

[0032] The present invention includes a triangular support 18 comprising a diagonal brace 2 and a right-angle plate 1 installed on the inner wall of a steel frame 15. The two ends of the diagonal brace 2 are respectively fixed to the two ends of the right-angle plate 1. A connecting ring 4 is installed at the turning point of the right-angle plate 1. The installation height of the connecting ring 4 is higher than the installation height of the diagonal brace 2. A plug with a corner of the fiberglass mesh 14 is inserted through the triangular support 18 from below the diagonal brace 2 and then inserted from the upper end of the connecting ring 4 to fix the fiberglass mesh 14 to the steel frame 15.

[0033] Specifically, the diagonal brace 2 can not only support the four corners of the steel frame 15, but also tighten the fiberglass mesh 14 when it is fixed, so that the connection between the plug and the plug ring 4 can be more reliable, and it can also tighten the four corners of the fiberglass mesh 14 to prevent the fiberglass mesh 14 from sagging.

[0034] Specifically, the insert includes a connecting block 10, one end of which is fitted with a through-end 6, which is an isosceles triangular prism symmetrical along the connecting block 10. When passing through the gap between the wire mesh 3 and the support beam 17, the pointed end 6 acts as a guide, facilitating the fiberglass mesh 14 to pass through the narrow gap. This solves the problem of curling and deformation that occurs when the fiberglass mesh 14, being relatively soft, passes through narrow gaps.

[0035] The other end of the connecting block 10 of this utility model is equipped with an end seat 9. Two symmetrical hanging hooks 12 are provided on the side of the end seat 9 near the connecting block 10. The hanging hooks 12 are parallel to the connecting block 10. A hanging gap 11 is provided between each of the two hanging hooks 12 and the connecting block 10 for the fiberglass mesh 14 to slide. Each hanging hook 12 includes several equidistant hanging teeth 16 along the length of the end seat 9. The hanging teeth 16 can pass through the mesh of the fiberglass mesh 14 and connect to it.

[0036] Specifically, the end of the hanging tooth 16 away from the end seat 9 is provided with a locking block 7 that can limit the movement of the fiberglass mesh 14 entering the mesh gap 11. The locking block 7 is provided with an inclined surface 8 that guides the fiberglass mesh 14 into the mesh gap 11. This not only guides the fiberglass mesh 14 to fit into the mesh gap 11, but also restricts the movement of the fiberglass mesh 14 to prevent it from falling off the insert.

[0037] The two hanging hooks 12 of this utility model are flush with the upper and lower ends of the sewing end 6 on the side away from the connecting block 10. A joint 13 is provided between the hanging hooks 12 and the sewing end 6. Two expansion grooves 5 are provided on the side of the sewing end 6 near the connecting block 10. The distance between the upper and lower ends of the sewing end 6 is greater than the inner diameter of the joint ring 4. The sewing end 6 is made of deformable plastic material.

[0038] Specifically, when the through end 6 is inserted into the connector ring 4, the portion of the through end 6 with the expansion groove 5 deforms due to the compression from the inner wall of the connector ring 4, causing the connector ring 4 to engage within the connector seam 13. After being inserted into the connector ring 4, the compressed through end 6 immediately recovers its shape. Both the locking block 7 and the through end 6 simultaneously press against the connector ring 4, limiting the movement of the locking block itself and preventing it from falling off the connector ring 4, thus improving the reliability of the connection.

[0039] It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. Furthermore, it should be understood that after reading the technical description of this utility model, those skilled in the art can make various alterations, modifications, and / or variations to this utility model, and all such equivalent forms also fall within the scope of protection defined by the appended claims.

Claims

1. A fiberglass mesh fixing fixture for lightweight board production, characterized in that, Includes plugs that can be connected to the four corners of the fiberglass mesh (14) and plug rings (4) installed at the four corners of the steel frame (15), wherein the plugs are inserted into the plug rings (4); The insert includes a connecting block (10), one end of which is fitted with a through end (6), and the other end of which is fitted with an end seat (9). The end seat (9) has two hanging hooks (12) symmetrically arranged along the connecting block (10) on the side near the connecting block (10). The hanging hooks (12) are parallel to the connecting block (10). The sides of the two hanging hooks (12) away from the connecting block (10) are flush with the upper and lower ends of the sewing end (6). A joint (13) is provided between the hanging hooks (12) and the sewing end (6). Two expansion grooves (5) are provided on the side of the sewing end (6) close to the connecting block (10). The distance between the upper and lower ends of the sewing end (6) is greater than the inner diameter of the insertion ring (4). The sewing end (6) is made of deformable plastic material. When the through end (6) is inserted into the plug ring (4), it is squeezed by the inner wall of the plug ring (4), and the part of the through end (6) with the expansion groove (5) is deformed, so that the plug ring (4) is stuck in the plug seam (13).

2. The fiberglass mesh fixing fixture for lightweight board production according to claim 1, characterized in that, Triangular supports (18) are installed at the four corners of the steel frame (15), and the plug ring (4) is installed on the triangular supports (18).

3. The fiberglass mesh fixing fixture for lightweight board production according to claim 2, characterized in that, The triangular support frame (18) includes a diagonal brace (2) and a right-angle plate (1) installed on the inner wall of the steel frame (15). The two ends of the diagonal brace (2) are respectively fixed to the two ends of the right-angle plate (1), and the insertion ring (4) is installed at the turning point of the right-angle plate (1).

4. The fiberglass mesh fixing fixture for lightweight board production according to claim 3, characterized in that, The installation height of the plug ring (4) is higher than the installation height of the diagonal brace (2). The plug block with one corner of the fiberglass mesh (14) is hung through the triangular support frame (18) from below the diagonal brace (2), and then inserted from the upper end of the plug ring (4) to fix the fiberglass mesh (14) on the steel frame (15).

5. The fiberglass mesh fixing fixture for lightweight board production according to claim 1, characterized in that, The hanging hook (12) includes a number of hanging teeth (16) arranged at equal intervals along the length direction of the end seat (9).

6. The fiberglass mesh fixing fixture for lightweight board production according to claim 5, characterized in that, Both of the aforementioned hanging hooks (12) and the connecting block (10) are provided with a hanging gap (11) for the fiberglass mesh (14) to slide.

7. The fiberglass mesh fixing fixture for lightweight board production according to claim 6, characterized in that, The end of the hanging tooth (16) away from the end seat (9) is provided with a locking block (7) that can limit the movement of the fiberglass mesh (14).

8. The fiberglass mesh fixing fixture for lightweight board production according to claim 7, characterized in that, The card block (7) is provided with an inclined surface (8) to guide the fiberglass mesh (14) into the mesh gap (11).

9. The fiberglass mesh fixing fixture for lightweight board production according to claim 1, characterized in that, The through-hole end (6) is an isosceles triangular prism symmetrical about the connecting block (10).