ALC plate splicing structure

By setting connection reinforcements on the upper and lower parts of the ALC board and setting a central convex block of the same material in the middle, and using a sliding structure to achieve splicing and fixation, the decoration problem of the ALC board connection is solved, the connection strength and seismic resistance are improved, and the installation process is simplified.

CN223358454UActive Publication Date: 2025-09-19ZHEJIANG LIXING CONSTR CO LTD
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Patent Information

Application Number
CN202422692822.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-09-19
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

The metal parts at the connection of ALC panels are difficult to groove smoothly during later decoration due to different materials, which increases the difficulty of grooving and drilling, making interior decoration difficult.

Method used

Connecting reinforcements are set at the upper and lower parts of the ALC board, and a central convex block with the same material as the main board is set in the middle. The central convex block is provided with an inner bevel. The splicing and fixation are achieved by sliding the first convex block and the tail connecting groove, avoiding the commonly used space position and increasing the sealing and connection strength.

Benefits of technology

It reduces the difficulty of later interior decoration, improves the connection strength and earthquake resistance, reduces concrete overflow, and simplifies the installation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ALC (autoclaved lightweight concrete) board splicing structure, which relates to the technical field of ALC boards, and comprises a main board piece and connecting reinforcers, the connecting reinforcers are fixedly arranged at the head end and the tail end of the main board piece, the connecting reinforcers at the same end of the main board piece are respectively fixed at the upper part and the lower part of the main board piece, and the head end and the tail end of the main board piece are respectively provided with a middle lug. A pouring hole is formed in the middle of each middle protruding block in a penetrating mode, an inner inclined face is arranged on the inner side face of each middle protruding block, the middle protruding blocks at the head end and the tail end of the main plate piece are symmetrically arranged in a pairwise spaced mode, and side sealing protruding strips and side sealing grooves are arranged on the outer sides of the two middle protruding blocks at the same end of the main plate piece respectively. The connecting reinforcing pieces are arranged on the upper portion and the lower portion of the main plate piece, the middle protruding block and the main plate piece are made of the same material, the main plate piece and the middle protruding block are lower in grooving and trepanning difficulty, and the problem that due to the fact that connecting metal pieces of ALC plates are made of different materials, grooving cannot be smoothly conducted, and the grooving difficulty is increased is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of ALC plates, in particular to an ALC plate splicing structure. Background Art

[0002] ALC panels are autoclaved lightweight concrete panels. ALC panels are often used for building walls other than load-bearing structures. ALC panels are prefabricated products in factories and transported to the construction site for assembly, which can significantly shorten the construction period and improve efficiency and construction quality.

[0003] The joints between ALC panels are connected with stronger metal parts for splicing. The connecting metal parts of ALC panels are through-through and set at the same height as the ALC panels. As a result, when the ALC panels need to be grooved for pipelines in the later decoration, the connecting metal parts of the ALC panels cannot be grooved smoothly due to different materials, which increases the difficulty of grooving. The metal parts of the ALC panels will also be more difficult to drill, resulting in greater difficulty in later interior decoration. Summary of the Invention

[0004] The disclosed embodiment relates to an ALC panel splicing structure, wherein connecting reinforcement members are arranged at the upper and lower parts of the main panel members, and the middle part is a central convex block made of the same material as the main panel member. The main panel member and the central convex block are less difficult to groove and drill holes. The connecting reinforcement members avoid the commonly used spatial position in the middle part, avoiding the situation where the connecting reinforcement members cannot be grooved smoothly due to different materials when the main panel member is grooved and decorated, thereby reducing the impact on later interior decoration.

[0005] In the first aspect of the present disclosure, an ALC plate splicing structure is provided, which specifically includes: a main plate member and a connecting reinforcement member, wherein the connecting reinforcement members are fixedly provided at both ends of the main plate member, and the connecting reinforcement members at the same end of the main plate member are respectively fixed at the upper and lower parts of the main plate member, and the main plate member is provided with a central protrusion at both ends, a pouring hole is opened through the middle of the central protrusion, and an inner inclined surface is provided on the inner side surface of the central protrusion.

[0006] In at least some embodiments, the central protrusions at the head and tail ends of the main plate member are symmetrically arranged in pairs, and side sealing ridges and side sealing grooves are respectively provided on the outer sides of the two central protrusions at the same end of the main plate member.

[0007] In at least some embodiments, the inner inclined surfaces of the two middle protrusions at the same end of the main plate member are arranged opposite to each other, with the inner inclined surface close to the main plate member tilted toward the outward side, and the inner inclined surface away from the main plate member tilted toward the middle side.

[0008] In at least some embodiments, the inner bevel forms a wedge-shaped space between the two middle protrusions, wherein the space between the two middle protrusions is wider on the side close to the main plate member and gradually narrows on the side away from the main plate member.

[0009] In at least some embodiments, the connecting reinforcement is an L-shaped structure, the side of the connecting reinforcement is slidably protruded with a side protrusion, the head end of the connecting reinforcement is slidably provided with a head protrusion, and the tail of the connecting reinforcement is concavely provided with a tail connecting groove.

[0010] In at least some embodiments, the side sealing ridge of the middle protrusion and the side sealing groove of another middle protrusion are slidably inserted to increase the sealing of the space between the middle protrusions and reduce the overflow of concrete along the gap in the space between the middle protrusions, and the tail connecting groove and the side protrusion are slidably connected.

[0011] In at least some embodiments, the connecting reinforcements at the head and tail ends of the main plate member are arranged in a mirror-symmetrical manner, and the connecting reinforcements at the same end of the main plate member are arranged in the same direction. The tail inclined surface of the side protrusion and the tail inclined surface of the head protrusion are slidingly connected. When the side protrusion moves toward the inside of the connecting reinforcement, the head protrusion moves toward the outside of the connecting reinforcement, and the protrusion of the head protrusion and the tail connecting groove are slidably inserted to realize the splicing and fixation between the connecting reinforcements.

[0012] The utility model provides an ALC plate splicing structure, which has the following beneficial effects:

[0013] The connecting reinforcements are arranged at the upper and lower parts of the main board parts, and the middle part is a central convex block with the same material as the main board parts. The connecting reinforcements avoid the commonly used spatial position in the middle part to avoid the situation where the connecting reinforcements cannot be smoothly grooved due to different materials when the main board parts are grooved and decorated, thereby reducing the impact on later interior decoration.

[0014] The connection reinforcement members are reinforced and fixed by sliding the first protrusion and the tail connection groove. The wedge-shaped space of the middle protrusion is poured with concrete to achieve the fixed reinforcement of the connection between the two main plate members, and further increase the connection strength and seismic resistance between the main plate members. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings of the embodiments will be briefly introduced below.

[0016] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0017] In the attached figure:

[0018] Figure 1 A schematic diagram showing the overall structure of the present application;

[0019] Figure 2 A schematic diagram showing the main plate member structure of the present application is shown;

[0020] Figure 3 A schematic diagram showing the inner bevel structure of the present application is shown;

[0021] Figure 4 A schematic diagram showing the structure of the first protrusion protruding outward from the outer side of the connection reinforcement member of the present application is shown;

[0022] Figure 5 A schematic diagram showing the structure of the side protrusions of the present application protruding outward from the connecting reinforcement member;

[0023] Figure 6 A schematic structural diagram showing the connection reinforcement member and the main plate member of the present application in a separated state;

[0024] Reference Signs List

[0025] 1. Main plate; 101. Center convex block; 102. Filling hole; 103. Side sealing convex strip; 104. Side sealing groove; 105. Inner bevel;

[0026] 2. Connecting reinforcement; 201. Side protrusion; 202. Head protrusion; 203. Tail connecting groove. DETAILED DESCRIPTION

[0027] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0028] Example 1: Please refer to Figures 1 to 6 :

[0029] The utility model proposes an ALC plate splicing structure, comprising: a main plate member 1 and a connecting reinforcement member 2, wherein the main plate member 1 is provided with a central convex block 101 at both ends, wherein a perfusion hole 102 is provided through the middle of the central convex block 101 on one side, and an inner bevel 105 is provided on the inner side surface of the central convex block 101, and the central convex blocks 101 at the both ends of the main plate member 1 are symmetrically arranged in pairs, and the outer sides of the two central convex blocks 101 at the same end of the main plate member 1 are respectively provided with a side sealing ridge 103 and a side sealing groove 104, and the inner bevels 105 of the two central convex blocks 101 at the same end of the main plate member 1 are oppositely arranged, and the side of the inner bevel 105 close to the main plate member 1 is inclined outward, and the side of the inner bevel 105 away from the main plate member 1 is inclined toward the middle side. It is set obliquely, and the main plate member 1 is fixed with a connecting reinforcement 2 at both the head and tail ends. The connecting reinforcement 2 at the same end of the main plate member 1 is respectively fixed on the upper and lower parts of the main plate member 1. The connecting reinforcement 2 is an L-shaped structure. The side of the connecting reinforcement 2 is slidingly protruded with a side protrusion 201, and the head end of the connecting reinforcement 2 is slidingly provided with a head protrusion 202. The tail of the connecting reinforcement 2 is concave and provided with a tail connecting groove 203. The side sealing ridge 103 of the middle protrusion 101 and the side sealing groove 104 of another middle protrusion 101 are slidably inserted to increase the sealing of the space between the middle protrusions 101 and reduce the overflow of concrete along the gap in the space between the middle protrusions 101. The tail connecting groove 203 and the side protrusion 201 are slidably connected to realize the splicing and fixation between the connecting reinforcements 2.

[0030] In the embodiment of the present disclosure, the inner bevel 105 forms a wedge-shaped space between the two middle protrusions 101. The space between the two middle protrusions 101 is wide on the side close to the main plate member 1, and gradually narrows on the side away from the main plate member 1. The space between the two middle protrusions 101 is poured with concrete, and the wedge-shaped space between the two middle protrusions 101 is formed after pouring concrete. The wedge-shaped concrete with a narrow middle part and wide two sides realizes the same longitudinal fixation and non-lateral fixation between the main plate members 1.

[0031] In the embodiment of the present disclosure, the connecting reinforcements 2 at the head and tail ends of the main plate member 1 are arranged in a mirror-symmetrical manner, and the connecting reinforcements 2 at the same end of the main plate member 1 are arranged in the same direction. The tail bevel of the side protrusion 201 and the tail bevel of the head protrusion 202 are slidingly connected. When the side protrusion 201 moves toward the inside of the connecting reinforcement 2, the head protrusion 202 moves toward the outside of the connecting reinforcement 2, and the head protrusion 202 protrudes and slides into the tail connecting groove 203 to realize the splicing and fixing operation between the connecting reinforcements 2. The connecting reinforcements 2 are reinforced and fixed by the sliding insertion of the head protrusion 202 and the tail connecting groove 203, thereby realizing the horizontal locking of the connecting reinforcement 2 and the main plate member 1.

[0032] In the second embodiment, based on the first embodiment, the side protrusions 201, the first protrusions 202 and the tail connecting grooves 203 are not provided, the head end of the connecting reinforcement 2 is provided flush with the middle protrusion 101, and the connecting reinforcement 2 is directly spliced ​​at the head and tail ends with the connecting reinforcement 2 of another main plate member 1, thereby reducing the number of structural components such as the side protrusions 201, the first protrusions 202 and the tail connecting grooves 203, simplifying the installation and manufacturing processes, and improving the efficiency of installation and manufacturing.

[0033] The working principle of this embodiment: the main plate member 1 and the middle convex block 101 are both made of concrete and steel bars, the connecting reinforcement member 2 is a metal connecting member, the metal material of the connecting reinforcement member 2 enhances the connection strength, the connecting reinforcement member 2 and the internal steel bars of the main plate member 1 and the middle convex block 101 are welded and connected, the connecting reinforcement member 2 is arranged at the upper and lower parts of the main plate member 1, and the middle part is the middle convex block 101 of the same material as the main plate member 1, the connecting reinforcement member 2 avoids the commonly used spatial position in the middle part of the main plate member 1, and avoids the situation that the connecting reinforcement member 2 cannot be smoothly grooved due to different materials when the main plate member 1 is grooved for decoration, thereby reducing the impact on later interior decoration, or avoiding the situation where it is difficult to drill holes and nail in the metal connecting reinforcement member 2, thereby reducing the problem of increased difficulty in later interior decoration;

[0034] The two main plate members 1 are spliced ​​together by connecting reinforcement members 2 on both sides of the main plate member 1, and the connecting reinforcement members 2 are brought into close contact. The connecting reinforcement member 2 presses the side protrusion 201 to move to the inner side of the connecting reinforcement member 2, and the side protrusion 201 moves synchronously with the tail inclined surface to move the first protrusion 202 outward, and the first protrusion 202 protrudes and slides into the tail connecting groove 203 to realize the splicing and fixing operation between the connecting reinforcement members 2. The connecting reinforcement members 2 are strengthened and fixed by the sliding insertion of the first protrusion 202 and the tail connecting groove 203, realizing the horizontal locking of the connecting reinforcement member 2 and the main plate member 1, and the side sealing ridge of the middle protrusion 101 103 and the side sealing groove 104 of another middle protrusion 101 are slidably inserted to improve the sealing of the space between the middle protrusions 101, reduce the overflow of concrete in the space between the middle protrusions 101 along the gap, and pour concrete in the space between the middle protrusions 101 through the pouring hole 102. The wedge-shaped space formed by the inner inclined surface 105 of the middle protrusion 101 is formed after pouring concrete. The wedge-shaped concrete with a narrow middle part and wide two sides realizes the same-direction longitudinal and non-lateral locking between the main plate members 1, realizes the fixed reinforcement of the connection between the two main plate members 1, and further increases the connection strength and seismic resistance between the main plate members 1.

[0035] In this article, there are several points to note:

[0036] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.

[0037] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.

[0038] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.

Claims

1. An ALC plate splicing structure, comprising: A main plate member (1) and a connecting reinforcement member (2); characterized in that the connecting reinforcement member (2) is fixedly provided at both ends of the main plate member (1), the connecting reinforcement member (2) at the same end of the main plate member (1) is respectively fixed to the upper and lower parts of the main plate member (1), and the main plate member (1) is provided with a central protrusion (101) at both ends, a pouring hole (102) is provided through the middle of the central protrusion (101), and an inner bevel (105) is provided on the inner side surface of the central protrusion (101).

2. The ALC plate splicing structure according to claim 1, characterized in that: The central protrusions (101) at the front and rear ends of the main plate member (1) are symmetrically arranged in pairs, and the outer sides of the two central protrusions (101) at the same end of the main plate member (1) are respectively provided with side sealing ridges (103) and side sealing grooves (104).

3. The ALC plate splicing structure according to claim 2, characterized in that: The inner inclined surfaces (105) of the two middle protrusions (101) at the same end of the main plate member (1) are arranged opposite to each other, the inner inclined surface (105) is arranged to be inclined outward on the side close to the main plate member (1), and is arranged to be inclined toward the middle on the side away from the main plate member (1).

4. The ALC plate splicing structure according to claim 3, characterized in that: The inner inclined surface (105) forms a wedge-shaped space between the two middle protrusions (101), wherein the space between the two middle protrusions (101) is wider on the side close to the main plate member (1) and gradually narrows on the side away from the main plate member (1).

5. The ALC plate splicing structure according to claim 4, characterized in that: The side surface of the connecting reinforcement (2) is slidably protruded with a side protrusion (201), the head end of the connecting reinforcement (2) is slidably provided with a head protrusion (202), and the tail of the connecting reinforcement (2) is concavely provided with a tail connecting groove (203).

6. The ALC plate splicing structure according to claim 5, characterized in that: The side sealing ridge (103) of the middle convex block (101) and the side sealing groove (104) of another middle convex block (101) are slidably inserted, and the tail connecting groove (203) and the side convex block (201) are slidably connected.

7. The ALC plate splicing structure according to claim 6, characterized in that: The connecting reinforcement members (2) at the front and rear ends of the main plate member (1) are arranged in a mirror-symmetrical manner. The connecting reinforcement members (2) at the same end of the main plate member (1) are arranged in the same direction. The tail inclined surface of the side protrusion (201) and the tail inclined surface of the head protrusion (202) are slidably connected. When the side protrusion (201) moves toward the inside of the connecting reinforcement member (2), the head protrusion (202) moves toward the outside of the connecting reinforcement member (2).