Multi-angle grating connector

Through the design of insert rods and positioning parts of multi-angle grating connectors, the problem of unstable connection between adjacent gratings is solved, the load-bearing capacity and laying flatness are improved, and different grating arrangements are adapted to different gratings, reducing production costs.

CN223177890UActive Publication Date: 2025-08-01SICHUAN UNIV ENG DESIGN & RES INST CO LTD
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Patent Information

Application Number
CN202422596613.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-26
Publication Date
2025-08-01
Estimated Expiration
2034-10-26

AI Technical Summary

Technical Problem

In the prior art, the connection stability of adjacent gratings is poor, which can easily lead to poor connection of gratings, insufficient bearing capacity at the connection, and prone to soil collapse problems.

Method used

Multi-angle grating connectors are used, including base, plug rod and positioner, which is inserted into adjacent grid apertures, position the grating on the base through positioners, combine rotatable plug rod and base angle adjustment to accommodate different grid arrangements, and use pads and crossbars to support the grating to improve flatness.

Benefits of technology

It effectively improves the connection stability and load-bearing capacity of adjacent gratings, adapts to different grating arrangements, reduces production costs, and improves the flatness of grating laying to prevent soil coverings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a multi-angle grating connector, and belongs to the field of garden construction technology, the multi-angle grating connector comprises a base, a plurality of insertion rods and positioning pieces, the insertion rods are arranged on the base, the insertion rods are used for being inserted into holes in a plurality of adjacent gratings respectively, and the positioning pieces are arranged on the insertion rods and used for positioning the gratings on the base. The connecting structure has the effects that the connecting stability of the adjacent grating plates is improved, and then the bearing capacity of the grating plates is improved.
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Description

Technical Field

[0001] This application relates to the field of garden construction technology, and particularly relates to a multi-angle grid plate connector. Background Art

[0002] A garden refers to a beautiful natural environment and recreation area created by applying engineering techniques and artistic means in a certain area through means such as transforming the terrain (or further building mountains, stacking stones, and managing water), planting trees and flowers, constructing buildings, and arranging garden paths. When building a soil-covered micro-landscape on a hard ground, it is necessary to first lay grid plates and geotextiles, and then cover them with soil.

[0003] Currently, when laying grid plates, the connection between adjacent grid plates is usually carried out by tying with wire, rope, etc., or by bonding. The stability of this connection method between adjacent grid plates is poor, which easily leads to poor connection between grid plates, poor bearing capacity at the connection, and prone to soil collapse problems in the later stage. Utility Model Content

[0004] In order to improve the stability of the connection between adjacent grid plates, this application provides a multi-angle grid plate connector.

[0005] The multi-angle grid plate connector provided by this application adopts the following technical solutions:

[0006] A multi-angle grid plate connector includes a base, insertion rods, and positioning members. A plurality of the insertion rods are arranged on the base, and the plurality of insertion rods are respectively used to insert into the pores on adjacent multiple grid plates. The positioning members are arranged on the insertion rods and are used to position the grid plates on the base.

[0007] By adopting the above technical solutions, the staff places the base at the connection of adjacent grid plates, then lays the grid plates, so that the plurality of insertion rods are respectively inserted into the pores on adjacent multiple grid plates, and then positions the grid plates on the base through the positioning members, thereby connecting the adjacent grid plates, effectively improving the stability of the connection between adjacent grid plates, and further improving the bearing capacity of the grid plates.

[0008] Optionally, four insertion rods are arranged in a rectangular array on the base.

[0009] By adopting the above technical solutions, the four insertion rods arranged in a rectangular array on the base can be respectively inserted into the gaps between adjacent four grid plates, and at the same time connect the adjacent four grid plates. And by rotating the base, the four insertion rods can be rotated to different angles, and the four insertion rods can also be adapted to different arrangements of grid plates, improving the applicability to different arrangements of grid plates.

[0010] Optionally, the base is a rectangular frame with an opening in the middle.

[0011] By adopting the above technical solution, the base in the shape of a rectangular frame with an opening in the middle saves materials and reduces production costs.

[0012] Optionally, the positioning member includes a pressing plate, the outer wall of the insertion rod is threaded, and the pressing plate is threaded on the insertion rod.

[0013] By adopting the above technical solution, after the staff inserts multiple insertion rods into the pores on multiple adjacent grid plates respectively, the pressing plate is screwed onto the insertion rod, so that the pressing plate presses the grid plate against the base, improving the stability of the grid plate.

[0014] Optionally, the positioning member includes a pressing frame, and four insertion holes for the insertion rods to insert are arranged in a rectangular array on the pressing frame.

[0015] By adopting the above technical solution, after the staff inserts multiple insertion rods into the pores on multiple adjacent grid plates respectively, the pressing frame is buckled onto the insertion rod, so that the insertion rods are inserted into the insertion holes opened on the pressing frame. After subsequent backfilling, the backfill soil presses the pressing frame, and the pressing frame presses multiple grid plates, so that multiple adjacent grid plates can be positioned simultaneously, improving the efficiency of positioning the grid plates on the base.

[0016] Optionally, a cushion strip is detachably arranged on the base, and the thickness of the cushion strip is the same as that of the base.

[0017] By adopting the above technical solution, the cushion strip provides support for the part of the grid plate outside the base, so that the grid plate remains flat, and improves the possibility that the grid plate has a height difference at the junction of the base and the ground, resulting in the grid plate being sunken under the pressure of the backfill soil subsequently.

[0018] Optionally, a connection hole is opened on the base, a connection head is arranged on the cushion strip, and the connection head is inserted into the connection hole.

[0019] By adopting the above technical solution, the staff inserts the connection head on the cushion strip into the connection hole, and the connection of the cushion strip on the base can be completed, improving the convenience of the staff to install and remove the cushion strip on the base.

[0020] Optionally, a cross bar is arranged between adjacent cushion strips, and the thickness of the cross bar is the same as that of the cushion strip.

[0021] By adopting the above technical solution, the cross bar provides support for the grid plates between adjacent cushion strips, further improving the flatness of the grid plates.

[0022] In summary, the present application includes at least one of the following beneficial technical effects:

[0023] 1. Multiple inserting rods are respectively inserted into the pores on multiple adjacent grid plates, and then the grid plates are positioned on the base through positioning members, so that the adjacent grid plates can be connected, effectively improving the stability of the connection between adjacent grid plates, and further enhancing the bearing capacity of the grid plates;

[0024] 2. Four inserting rods arranged in a rectangular array on the base can be respectively inserted into the gaps between four adjacent grid plates, connecting the four adjacent grid plates at the same time. And by rotating the base, the four inserting rods are rotated to different angles, enabling the four inserting rods to be applicable to different arrangements of grid plates, improving the applicability to different arrangements of grid plates;

[0025] 3. The cushion strip provides support for the part of the grid plate outside the base, keeping the grid plate flat and reducing the possibility that the grid plate will be sunken under the pressure of backfill soil due to the height difference at the junction of the base and the ground. Brief Description of the Drawings

[0026] Figure 1 It is a schematic structural diagram of the multi-angle grid plate connector according to Embodiment 1 of the present application.

[0027] Figure 2 It is a schematic structural diagram from another perspective of Embodiment 1 of the present application.

[0028] Figure 3 It is a schematic structural diagram of Embodiment 2 of the present application.

[0029] Figure 4 It is a schematic structural diagram from another perspective of Embodiment 2 of the present application.

[0030] Reference Signs: 1, base; 11, connection hole; 2, inserting rod; 3, positioning member; 31, pressing plate; 32, pressing frame; 321, inserting hole; 4, cushion strip; 5, overlapping joint; 6, cross bar. Detailed Description of the Embodiments

[0031] The following further elaborates on the present application Figures 1-4 in detail with reference to the attached drawings.

[0032] Embodiment 1

[0033] The embodiment of the present application discloses a multi-angle grid plate connector.

[0034] Referring to Figure 1 、 Figure 2 , the multi-angle grid plate connector includes a base 1, inserting rods 2 and a positioning member 3. The base 1 is a metal rectangular frame with an opening in the middle, enabling the base 1 to save materials in the middle and reduce production costs; one inserting rod 2 is installed at each of the four corners of the base 1 along a direction perpendicular to the base 1, and the inserting rods 2 are used to insert into the pores on the grid plates.

[0035] The staff places the base 1 on the ground at the connection of adjacent grid plates, and then lays the adjacent grid plates, so that the four insertion rods 2 respectively pass through the pores at the corners of the adjacent four grid plates, and the corners of the adjacent four grid plates can be connected; the staff inserts the two insertion rods 2 on the same side of the base 1 into the pores of the same grid plate, and then inserts the other two insertion rods 2 on the base 1 into the pores of another grid plate, and the adjacent two grid plates can be connected; the staff inserts the two adjacent insertion rods 2 on the base 1 into the pores of two different grid plates respectively, and then inserts the other two insertion rods 2 into the pores of the same grid plate, and the three grid plates forming a right angle in an enclosure can be connected. Furthermore, by placing the base 1 in different positions or rotating the base 1 to different angles, the four insertion rods 2 can connect the grid plates with different arrangements, improving the applicability to different grid plate arrangements.

[0036] Refer to Figure 1 、 Figure 2 , the positioning member 3 is installed on the insertion rod 2. The positioning member 3 is used to position the grid plate on the base 1. The positioning member 3 includes a pressing plate 31. The outer wall of the insertion rod 2 is provided with threads. A threaded hole is opened on the pressing plate 31, and the pressing plate 31 is threadedly connected to the insertion rod 2 through the threaded hole.

[0037] After the staff makes the insertion rod 2 pass through the pore on the grid plate, the pressing plate 31 is rotated and threadedly connected to the insertion rod 2. By continuing to rotate the pressing plate 31, the pressing plate 31 can be made to approach the base 1 and press the grid plate tightly on the base 1, improving the stability of the grid plate on the base 1.

[0038] The implementation principle of Embodiment 1 of this application is: The staff places the base 1 on the ground, and then lays the grid plates, so that the four insertion rods 2 are respectively inserted into the pores of the adjacent multiple grid plates, and then the pressing plate 31 is screwed onto the insertion rod 2 to press the grid plates tightly, and the adjacent multiple grid plates can be connected, effectively improving the stability of the connection of the adjacent grid plates, and further improving the bearing capacity of the grid plates.

[0039] Embodiment 2

[0040] Refer to Figure 3 、 Figure 4 , the difference between Embodiment 2 and Embodiment 1 is that: the positioning member 3 includes a pressing frame 32. The pressing frame 32 is a rectangular frame with a hollow interior and the same size as the base 1. Insertion holes 321 are opened at the four corners of the pressing frame 32 for the insertion rods 2 to be inserted.

[0041] After the staff members pass the four inserting rods 2 through the pores on multiple adjacent grid plates respectively, they can move the pressing frame 32 so that the four inserting rods 2 are inserted into the four inserting holes 321 one by one, and then the pressing frame 32 is buckled onto the base 1. After subsequent backfilling with soil, the soil presses on the pressing frame 32, so that the pressing frame 32 can press the grid plates tightly on the base 1, and at the same time position multiple adjacent grid plates on the base 1, effectively improving the working efficiency of the staff in positioning multiple adjacent grid plates on the base 1.

[0042] Refer to Figure 3 、 Figure 4 On each side of the base 1, two cushion strips 4 are detachably installed along the direction perpendicular to the side of the base 1. One end of the cushion strip 4 is provided with a butting joint 5. A groove is formed on the base 1, and a connecting hole 11 is formed on the bottom wall of the groove for the butting joint 5 to be inserted into. The thickness of the cushion strip 4 is the same as that of the base 1; a clamping groove is formed on the cushion strip 4, and a cross bar 6 is installed between two adjacent cushion strips 4 on the same side of the base 1. The two ends of the cross bar 6 are respectively clamped in the clamping grooves on two adjacent cushion strips 4 on the same side of the base 1, and the upper end height of the cross bar 6 is the same as the upper end height of the cushion strip 4.

[0043] After the staff install the base 1 on the ground, they move the cushion strip 4 so that the cushion strip 4 is clamped into the groove and the butting joint 5 is inserted into the connecting hole 11, and install the cushion strip 4 around the base 1. Then, the cross bar 6 is clamped into the clamping grooves on two adjacent cushion strips 4 on the same side of the base 1, and then the grid plates are laid. The cushion strip 4 and the cross bar 6 can support the part of the grid plates outside the base 1, improve the height difference at the junction of the grid plates and the ground caused by the height difference between the base 1 and the ground, and further reduce the possibility that the grid plates are sunken at the junction of the base 1 and the ground under the pressure of the backfill soil after subsequent backfill, effectively improving the flatness of the grid plate laying and ensuring the bearing capacity of the grid plates.

[0044] The implementation principle of Embodiment 2 of this application is as follows: The staff install the cushion strip 4 around the base 1, then install the cross bar 6 between two adjacent cushion strips 4 on the same side of the base 1, then lay the grid plates, and then install the pressing frame 32 on the inserting rods 2. After backfilling with soil, the backfill soil presses the pressing frame 32 tightly on the grid plates, improving the stability of the grid plates on the base 1. At the same time, the cushion strip 4 and the cross bar 6 support the grid plates, improving the flatness of the grid plates.

[0045] The above are all the preferred embodiments of this application. The protection scope of this application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.

Claims

1. A multi-angle grid plate connector, characterized in that: It includes a base (1), insertion rods (2) and positioning members (3). A plurality of the insertion rods (2) are arranged on the base (1), and the plurality of insertion rods (2) are respectively used for inserting into pores on adjacent plurality of grid plates. The positioning members (3) are arranged on the insertion rods (2) and are used for positioning the grid plates on the base (1).

2. The multi-angle grid plate connector according to claim 1, characterized in that: Four of the insertion rods (2) are arranged in a rectangular array on the base (1).

3. The multi-angle grid plate connector according to claim 2, characterized in that: The base (1) is a rectangular frame with an opening in the middle.

4. The multi-angle grid connector according to claim 1, characterized in that: The positioning member (3) includes a pressing plate (31). The outer wall of the insertion rod (2) is provided with threads, and the pressing plate (31) is threadedly arranged on the insertion rod (2).

5. The multi-angle grid plate connector according to claim 1, characterized in that: The positioning member (3) includes a pressing frame (32). Four insertion holes (321) for the insertion rods (2) to insert are arranged in a rectangular array on the pressing frame (32).

6. The multi-angle grid plate connector according to claim 5, characterized in that: A cushion strip (4) is detachably arranged on the base (1), and the thickness of the cushion strip (4) is the same as that of the base (1).

7. The multi-angle grid plate connector according to claim 6, characterized in that: A connecting hole (11) is formed on the base (1), a connecting head (5) is arranged on the cushion strip (4), and the connecting head (5) is inserted into the connecting hole (11).

8. The multi-angle grid plate connector according to claim 6, characterized in that: A cross bar (6) is arranged between adjacent cushion strips (4), and the thickness of the cross bar (6) is the same as that of the cushion strip (4).