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CN224742078UActive Publication Date: 2026-09-11CHINA CONSTR SCI & IND CORP LTD
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Patent Information

Application Number
CN202521796486.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-22
Publication Date
2026-09-11
Estimated Expiration
2035-08-22

AI Technical Summary

Technical Problem

[0004]有鉴于此,本实用新型提供了一种防滑节点,以解决叠合板在安装在带有倾斜角度的坡道上时会相对坡道发生相对滑动,影响施工质量的问题

Benefits of technology

[0009] Beneficial effects: By setting a fastener on the carrier, the fastener can abut against the end of the part to be installed on the carrier through the fixing part, thereby limiting the part to be installed and preventing the part to be installed from moving relative to the carrier and affecting the installation of other parts to be installed.

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Abstract

This utility model relates to the field of construction technology and discloses an anti-slip joint, including a support structure and a fixing structure. The support structure includes a support component and a load-bearing member. One end of the support component is adapted to be placed on the ground, and the load-bearing member is placed at the end of the support component away from the ground. The fixing structure includes a plurality of fixing members, all of which are spaced apart on the load-bearing member and are arranged in parallel. Each fixing member has a fixing part. When installing a component to be installed, the end of the component to be installed is adapted to abut against the fixing part. This utility model, through the fixing members set on the load-bearing member, enables the fixing members to abut against the end of the component to be installed on the load-bearing member through the fixing part, thereby limiting the component to be installed and preventing the component to be installed from moving relative to the load-bearing member and affecting the installation of other components to be installed.
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Description

Technical Field

[0001] This utility model relates to the field of construction technology, specifically to anti-slip joints. Background Technology

[0002] Composite slabs are a common building structural component, mainly used for floor slabs, wall panels, etc. They are manufactured through a combination of factory prefabrication and on-site assembly, and modular hoisting improves installation efficiency by 40%. Composite slabs reduce material waste compared to traditional cast-in-place concrete, effectively reducing carbon emissions.

[0003] In actual construction, it was found that when installing composite slabs on slopes with an incline, the bottom surface of the composite slab and the smooth supporting formwork would slide relative to each other at a certain slope, resulting in displacement. Since each composite slab needs to be precisely positioned during the detailed construction process, this displacement would affect the installation and positioning of other composite slabs, causing inaccurate positioning of the remaining slabs and impacting the construction quality. Utility Model Content

[0004] In view of this, the present invention provides an anti-slip joint to solve the problem that when composite slabs are installed on a slope with an inclined angle, they will slide relative to the slope, affecting the construction quality.

[0005] In a first aspect, this utility model provides an anti-slip joint, comprising:

[0006] A support structure includes a support component and a load-bearing member, one end of the support component being adapted to be disposed on the ground, and the load-bearing member being disposed at the end of the support component away from the ground;

[0007] A fixing structure includes a plurality of fixing members, all of which are spaced apart on the bearing member and are arranged in parallel with each other, and each fixing member has a fixing part;

[0008] When installing the part to be installed, the end of the part to be installed is adapted to abut against the fixing part.

[0009] Beneficial effects: By setting a fastener on the carrier, the fastener can abut against the end of the part to be installed on the carrier through the fixing part, thereby limiting the part to be installed and preventing the part to be installed from moving relative to the carrier and affecting the installation of other parts to be installed.

[0010] In one alternative embodiment, when the fixing member is installed on the carrier member, the fixing part and the carrier member are arranged perpendicularly.

[0011] Beneficial effects: By setting the fixing part perpendicular to the carrier when the fixing part is installed on the carrier, the fixing part of the fixing part can fully abut against the end of the component to be installed when the component to be installed is installed on the carrier, thereby improving the limiting effect of the fixing part on the component to be installed.

[0012] In one alternative embodiment, the fastener further has a connecting portion disposed perpendicularly to the fastening portion, the connecting portion being adapted to connect with the carrier.

[0013] Beneficial effects: By setting the fastener, a connecting part is also set perpendicular to the fixing part. In this embodiment, the connecting part is a connecting plate. The connecting part can be connected to the carrier, thereby installing the fastener on the carrier, and thus enabling the fixing part of the fastener to limit the end of the component to be installed.

[0014] In an alternative embodiment, a fastening structure is further included, the fastening structure comprising a plurality of fasteners, any one of the fasteners being adapted to pass through the connecting portion and connect to the carrier member to connect the connecting portion and the carrier member.

[0015] Beneficial effects: By setting a fastening structure between the fixing member and the carrier member, the fastening structure specifically includes several fasteners, which are fastening screws in this embodiment. Each fastener can penetrate the connecting part of the fixing member and connect with the carrier member, thereby connecting the connecting part and the carrier member together, and then installing the fixing member on the carrier member, and limiting the end of the fixing member to be installed by the fixing part of the fixing member.

[0016] In one alternative embodiment, the connecting portion is provided with a plurality of through holes, and any of the fasteners is adapted to pass through the through holes and connect to the carrier.

[0017] Beneficial effects: By creating several through holes on the connecting part, each fastener can pass through the through holes and connect to the carrier, thereby enabling the fastener to connect the connecting part and the carrier together through the through holes, and further connecting the fixing part and the carrier together.

[0018] In one alternative embodiment, the through hole is a countersunk hole, so that the through hole accommodates the end of the fastener.

[0019] Beneficial effect: By setting the through hole as a countersunk hole, when the fastener passes through the through hole to connect the carrier and the connecting part, the end of the fastener can enter the through hole. As a result, when the part to be installed is installed on the carrier, the end of the part to be installed will not be lifted up due to the end of the fastener.

[0020] In one alternative embodiment, two adjacent fixing structures are jointly formed with a positioning cavity, and the component to be installed is adapted to be disposed within the positioning cavity.

[0021] Beneficial effects: By setting two adjacent fixed structures to jointly form a positioning cavity, when the part to be installed is installed on the carrier, the part to be installed can be directly installed in the positioning cavity. When the part to be installed is installed in the positioning cavity, the peripheral wall of the part to be installed will abut against the inner wall of the positioning cavity, so that the positioning cavity can provide positioning and limiting function for the part to be installed, thereby improving the installation efficiency of the part to be installed and preventing the part to be installed from sliding relative to the carrier.

[0022] In one alternative embodiment, the support assembly includes a plurality of support members, all of which are spaced apart, with one end of any support member adapted to be placed on the ground and the other end connected to the load-bearing member.

[0023] Beneficial effects: By setting the support assembly to include several support members, which are support rods in this embodiment, all support members are spaced apart, and one end of each support member can be placed on the ground, while the other end can be connected to the carrier member. Thus, the carrier member can be installed on the ground through all the support members, and the carrier member can be supported.

[0024] In one optional embodiment, the support assembly further includes a plurality of adapters, any one of the adapters being disposed between two adjacent support members, and both ends of the adapter being connected to one of the support members to connect the two adjacent support members.

[0025] Beneficial effects: By setting the support components, several adapters are also included. In this embodiment, the adapters are adapter rods. Each adapter is set between two adjacent support components, and both ends of the adapter are connected to a support component, thereby connecting the two adjacent support components together. At the same time, after all the support components and adapters are connected together, the structural strength of the support structure can be improved.

[0026] In one alternative implementation, all the support members may be the same or different in length, and the load-bearing member may be inclined or horizontal.

[0027] Beneficial effects: By setting all the support members to be the same length and setting the carrier member to be horizontal, the fixing member can be positioned by the positioning cavity formed by the fixing member and the other fixing members; while by setting all the support members to be different lengths and setting the carrier member to be inclined, the fixing member can limit the end of the component to be installed by the fixing part, and at the same time, the fixing member can also be positioned by the positioning cavity formed by the fixing member and the other fixing members. Attached Figure Description

[0028] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0029] Figure 1 This is a plan view of an anti-slip node according to an embodiment of the present utility model;

[0030] Figure 2 This is a schematic diagram of the installation of an anti-slip node according to an embodiment of the present utility model;

[0031] Figure 3 This is a structural schematic diagram of a fixing component for an anti-slip node according to an embodiment of the present utility model;

[0032] Figure 4 This is a plan view of a fixing component for an anti-slip node according to an embodiment of the present utility model.

[0033] Explanation of reference numerals in the attached figures:

[0034] 11-Support component; 111-Support part; 112-Adapter part; 12-Bearing part; 21-Fixing part; 211-Fixing part; 212-Connecting part; 3-Fastener; 4-Part to be installed. Detailed Implementation

[0035] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0036] The following is combined with Figures 1 to 4 The following describes embodiments of the present invention.

[0037] According to an embodiment of the present invention, on one hand, an anti-slip node is provided, such as... Figures 1 to 4As shown, it includes a support structure and a fixing structure. The support structure includes a support component 11 and a carrier 12. One end of the support component 11 is adapted to be set on the ground, and the carrier 12 is set at the end of the support component 11 away from the ground. The fixing structure includes a plurality of fixing members 21. All fixing members 21 are spaced apart on the carrier 12 and are arranged in parallel with each other. The fixing member 21 has a fixing part 211. When installing the part to be installed 4, the end of the part to be installed 4 is adapted to abut against the fixing part 211.

[0038] The anti-slip nodes of the above structure are fixed by a fixing structure set on the support structure. The support structure includes a support component 11 and a load-bearing member 12. In this embodiment, the load-bearing member 12 is a load-bearing ramp. One end of the support component 11 can be set on the ground, and the load-bearing member 12 is set on the end of the support component 11 away from the ground, so that the support component 11 can support the load-bearing member 12 and install the load-bearing member 12 on the ground. The fixing structure includes a number of fixing members 21. In this embodiment, the fixing members 21 are fixing angle steels. All the fixing members 21 are spaced apart on the load-bearing member 12, and each fixing member 21 has a fixing part 211. In this embodiment, the fixing part 211 is a fixing plate.

[0039] When the component to be installed 4 is installed on the support member 12, the component to be installed 4 is a composite plate in this embodiment. The fixing part 211 can abut against the end of the component to be installed 4, thereby limiting the component to be installed 4. This can prevent the component to be installed 4 from being displaced relative to the support member 12, thus affecting the installation of other components to be installed 4. In addition, all the fixing parts 21 are arranged in parallel, so that when the component to be installed 4 is installed on the support member 12, all the fixing parts 21 can abut against the end of the component to be installed 4 at the same time, avoiding the situation where the fixing part 211 of some fixing parts 21 does not abut against the end of the component to be installed 4.

[0040] In summary, by using the fixing member 21 provided on the carrier 12, the fixing member 21 can abut against the end of the component 4 to be installed on the carrier 12 through the fixing part 211, thereby limiting the component 4 to be installed and preventing the component 4 to be installed from moving relative to the carrier 12 and affecting the installation of other components 4 to be installed.

[0041] In one embodiment, such as Figure 2 As shown, when the fixing member 21 is installed on the carrier member 12, the fixing part 211 and the carrier member 12 are arranged vertically.

[0042] The anti-slip node of the above structure, by fixing the fixing part 211 perpendicularly to the carrier 12 when the fixing part 21 is installed on the carrier 12, allows the fixing part 211 of the fixing part 21 to fully abut against the end of the component 4 when the component 4 to be installed is installed on the carrier 12, thereby improving the limiting effect of the fixing part 211 on the component 4 to be installed.

[0043] In one embodiment, such as Figure 2 and Figure 3 As shown, the fastener 21 also has a connecting portion 212 that is perpendicular to the fastener 211, and the connecting portion 212 is adapted to be connected to the carrier 12.

[0044] The anti-slip node of the above structure also has a connecting part 212 that is perpendicular to the fixing part 211 by setting the fixing part 211. In this embodiment, the connecting part 212 is a connecting plate. The connecting part 212 can be connected to the bearing 12, thereby installing the fixing part 211 on the bearing 12, and thus limiting the end of the component 4 to be installed.

[0045] In one embodiment, such as Figure 3 and Figure 4 As shown, it also includes a fastening structure, which includes a plurality of fasteners 3, any one of which is adapted to pass through the connecting portion 212 and connect to the carrier 12 to connect the connecting portion 212 and the carrier 12.

[0046] The anti-slip nodes of the above structure are fastened by a fastening structure between the fixing member 21 and the bearing member 12. The fastening structure specifically includes several fasteners 3, which are fastening screws in this embodiment. Each fastener 3 can pass through the connecting part 212 of the fixing member 21 and connect to the bearing member 12, thereby connecting the connecting part 212 and the bearing member 12 together, and then installing the fixing member 21 on the bearing member 12, and limiting the end of the member 4 to be installed by the fixing part 211 of the fixing member 21.

[0047] In one embodiment, such as Figure 3 and Figure 4 As shown, the connecting part 212 has several through holes, and any fastener 3 is adapted to pass through the through holes and connect with the carrier 12.

[0048] The anti-slip nodes of the above structure, through a number of through holes opened on the connecting part 212, enable each fastener 3 to pass through the through holes and connect to the carrier 12, thereby enabling the fastener 3 to connect the connecting part 212 and the carrier 12 together through the through holes, and further connect the fixing part 21 and the carrier 12 together.

[0049] In one embodiment, such as Figure 3As shown, the through hole is a countersunk hole so that the through hole can accommodate the end of the fastener 3.

[0050] The anti-slip node of the above structure is designed with countersunk holes, so that when the fastener 3 passes through the through hole to connect the carrier 12 and the connecting part 212, the end of the fastener 3 can enter the through hole. Therefore, when the part to be installed 4 is installed on the carrier 12, the end of the part to be installed 4 will not be lifted up due to the end of the fastener 3.

[0051] In one embodiment, such as Figure 1 As shown, two adjacent fixed structures are jointly formed with a positioning cavity, and the part to be installed 4 is suitable to be placed in the positioning cavity.

[0052] The anti-slip nodes of the above structure are formed by two adjacent fixed structures together to form a positioning cavity. When the part to be installed 4 is installed on the carrier 12, the part to be installed 4 can be directly installed in the positioning cavity. When the part to be installed 4 is installed in the positioning cavity, the peripheral side wall of the part to be installed 4 will abut against the inner wall of the positioning cavity. This allows the positioning cavity to provide positioning and limiting for the part to be installed 4, thereby improving the installation efficiency of the part to be installed 4 and preventing the part to be installed 4 from sliding relative to the carrier 12.

[0053] In one embodiment, such as Figure 1 As shown, the support assembly 11 includes a plurality of support members 111, all of which are spaced apart. One end of any support member 111 is adapted to be placed on the ground, and the other end is connected to the bearing member 12.

[0054] The anti-slip node of the above structure includes a support component 11 comprising several support members 111. In this embodiment, the support member 111 is a support rod. All the support members 111 are spaced apart, and one end of each support member 111 can be placed on the ground, while the other end can be connected to the carrier member 12. Thus, the carrier member 12 can be installed on the ground through all the support members 111, and the carrier member 12 can be supported.

[0055] In one embodiment, such as Figure 1 As shown, the support assembly 11 also includes several adapters 112. Any adapter 112 is disposed between two adjacent support members 111, and both ends of the adapter 112 are respectively connected to a support member 111 to connect the two adjacent support members 111.

[0056] The anti-slip node of the above structure also includes several adapters 112 by setting the support component 11. In this embodiment, the adapter 112 is an adapter rod. Each adapter 112 is set between two adjacent support components 111, and both ends of the adapter 112 are connected to a support component 111, thereby connecting two adjacent support components 111 together. At the same time, after all the support components 111 and adapters 112 are connected together, the structural strength of the support structure can be improved.

[0057] In one embodiment, such as Figure 1 As shown, all the support members 111 have the same or different lengths, and the bearing member 12 is set at an angle or horizontally.

[0058] The anti-slip nodes of the above structure, by setting all the support members 111 to be the same length and setting the bearing member 12 to be horizontal, can position the fixing member 21 through the positioning cavity formed by the fixing member 21 and the other fixing members 21; and by setting all the support members 111 to be different lengths and setting the bearing member 12 to be inclined, can limit the end of the fixing member 4 through the fixing part 211, and at the same time, the fixing member 21 can also position the fixing member 4 through the positioning cavity formed by the fixing member 21 and the other fixing members 21.

[0059] Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.

Claims

1. An anti-slip node, characterized in that, include: The support structure includes a support component (11) and a carrier (12), one end of the support component (11) being adapted to be placed on the ground, and the carrier (12) being placed at the end of the support component (11) away from the ground; The fixing structure includes a plurality of fixing members (21), all of the fixing members (21) are spaced apart on the bearing member (12), and all the fixing members (21) are arranged in parallel, and the fixing members (21) have fixing parts (211); When installing the component to be installed (4), the end of the component to be installed (4) is adapted to abut against the fixing part (211).

2. The anti-slip node of claim 1, wherein, When the fixing member (21) is installed on the support member (12), the fixing part (211) and the support member (12) are arranged perpendicularly.

3. The anti-slip node of claim 2, wherein, The fastener (21) also has a connecting portion (212) arranged perpendicularly to the fastening part (211), the connecting portion (212) being adapted to connect with the carrier (12).

4. The anti-slip node according to claim 3, characterized in that, It also includes a fastening structure comprising a plurality of fasteners (3), any one of the fasteners (3) being adapted to pass through the connecting portion (212) and connect to the carrier (12) to connect the connecting portion (212) and the carrier (12).

5. The anti-slip node according to claim 4, characterized in that, The connecting part (212) has a plurality of through holes, and any of the fasteners (3) is adapted to pass through the through holes and connect to the carrier (12).

6. The anti-slip node according to claim 5, characterized in that, The through hole is a countersunk hole so that the through hole can accommodate the end of the fastener (3).

7. The anti-slip joint according to any one of claims 1-6, characterized in that, The two adjacent fixing structures are jointly formed with a positioning cavity, and the part to be installed (4) is adapted to be placed in the positioning cavity.

8. The anti-slip node according to claim 7, characterized in that, The support assembly (11) includes a plurality of support members (111), all of which are spaced apart. One end of any support member (111) is adapted to be placed on the ground, and the other end is connected to the bearing member (12).

9. The anti-slip node according to claim 8, characterized in that, The support assembly (11) further includes a plurality of adapters (112), any one of the adapters (112) is disposed between two adjacent support members (111), and both ends of the adapter (112) are respectively connected to one of the support members (111) to connect the two adjacent support members (111).

10. The anti-slip node according to claim 9, characterized in that, All of the support members (111) may have the same or different lengths, and the bearing member (12) may be inclined or horizontal.