Stone aluminum honeycomb panel with alloy pendant structure
By introducing a steel keel frame and aluminum alloy hanger structure into the stone aluminum honeycomb panel, using stainless steel connections and pre-embedded bolts for fixing, and combining anti-corrosion nylon partitions and rubber strips, the problem of insufficient strength of the stone aluminum honeycomb panel is solved, achieving high strength and convenient installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DEZHOU JINSHENG ALUMINUM CO LTD
- Filing Date
- 2025-05-19
- Publication Date
- 2026-04-17
AI Technical Summary
Existing stone aluminum honeycomb panels have insufficient bending, folding, and shear strength during transportation, installation, and use, resulting in a high breakage rate and increased costs.
The structure adopts a steel keel frame and aluminum alloy brackets, and is fixed by stainless steel connecting bolts and pre-embedded bolts. Combined with the design of anti-corrosion nylon partitions and rubber strips, the bending, folding and shear strength of the plate is improved, and fine adjustment is achieved by stainless steel adjusting screws.
It significantly improves the bending, flexural and shear strength of stone aluminum honeycomb panels, reduces the breakage rate during transportation, installation and use, and facilitates fine-tuning of position.
Smart Images

Figure CN224134134U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aluminum single-panel technology, and in particular to a stone aluminum honeycomb panel with alloy hanging structure. Background Technology
[0002] Stone-clad aluminum honeycomb panels are a high-tech product made by bonding thin slabs of natural stone and aluminum honeycomb panels with a special adhesive. Its basic structure consists of 3-5mm thick stone slabs and 10-25mm thick aluminum honeycomb panels.12 This material is widely used in the decoration and finishing of buildings, vehicles, ships, and other fields, and has advantages such as light weight, high strength, and easy processing.
[0003] Existing aluminum honeycomb panels have limited strength in bending, folding, and shearing, resulting in a high breakage rate during transportation, installation, and use, which increases transportation and installation costs. Therefore, there is a need for a stone aluminum honeycomb panel with alloy hanger structure to solve the above problems. Utility Model Content
[0004] The purpose of this utility model embodiment is to provide a stone aluminum honeycomb panel with an alloy hanging structure, which aims to solve the problems mentioned in the background art.
[0005] This utility model embodiment is implemented as follows: a stone aluminum honeycomb panel with an alloy hanger structure includes: a steel keel frame and a first aluminum alloy hanger. The first aluminum alloy hanger is threaded through a stainless steel connecting bolt that is connected to the steel keel frame. The stainless steel connecting bolt is used to fix the first aluminum alloy hanger to the steel keel frame. A second aluminum alloy hanger is provided in cooperation with the first aluminum alloy hanger. The stone aluminum honeycomb panel has pre-embedded holes, and pre-embedded bolts are provided at the pre-embedded holes of the stone aluminum honeycomb panel. The stone aluminum honeycomb panel and the second aluminum alloy hanger are fixed by the pre-embedded bolts.
[0006] Preferably, a corrosion-resistant nylon partition is provided between the first aluminum alloy hanger and the steel keel frame, the corrosion-resistant nylon partition being used to separate the first aluminum alloy hanger and the steel keel frame; a rubber strip is provided between the first aluminum alloy hanger and the second aluminum alloy hanger, the rubber strip being used to provide cushioning for the first aluminum alloy hanger and the second aluminum alloy hanger.
[0007] Preferably, it further includes: a stainless steel adjusting screw, which is close to the first aluminum alloy bracket and threadedly connected to the second aluminum alloy bracket, for fine-tuning the stone aluminum honeycomb panel on the second aluminum alloy bracket.
[0008] The stone aluminum honeycomb panel with alloy hanger structure provided by this utility model can not only combine stone and aluminum honeycomb panel to significantly improve its bending, folding and shear strength, greatly reducing the damage rate during transportation, installation and use, but also facilitates fine adjustment of the position of the stone aluminum honeycomb panel after installation, making it highly practical. Attached Figure Description
[0009] Figure 1 This is a schematic diagram of a stone aluminum honeycomb panel with alloy hanger structure.
[0010] In the attached diagram: 1-Steel keel frame, 2-First aluminum alloy hanger, 3-Stainless steel connecting bolt, 4-Second aluminum alloy hanger, 5-Stone aluminum honeycomb panel, 6-Embedded bolt, 7-Anti-corrosion nylon partition, 8-Rubber strip, 9-Stainless steel adjusting screw. Detailed Implementation
[0011] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and do not limit the present utility model.
[0012] The specific implementation of this utility model will be described in detail below with reference to specific embodiments.
[0013] Please see Figure 1 This utility model provides a stone aluminum honeycomb panel with an alloy hanger structure, the stone aluminum honeycomb panel with alloy hanger structure includes:
[0014] A steel keel frame 1 and a first aluminum alloy hanger 2 are provided. The first aluminum alloy hanger 2 is threaded through a stainless steel connecting bolt 3 that is connected to the steel keel frame 1. The stainless steel connecting bolt 3 is used to fix the first aluminum alloy hanger 2 to the steel keel frame 1. A second aluminum alloy hanger 4 is provided in cooperation with the first aluminum alloy hanger 2. A stone aluminum honeycomb panel 5 is provided with pre-embedded holes. Pre-embedded bolts 6 are provided at the pre-embedded holes of the stone aluminum honeycomb panel 5. The stone aluminum honeycomb panel 5 and the second aluminum alloy hanger 4 are fixed by the pre-embedded bolts 6.
[0015] First, assemble the first aluminum alloy hanger 2 onto the steel keel frame 1 and secure it using stainless steel connecting bolts 3. Pre-embedded holes are made on the back side of the stone aluminum honeycomb panel 5, and pre-embedded bolts 6 are used to fix the stone aluminum honeycomb panel 5 and the second aluminum alloy hanger 4 together. Then, hang the second aluminum alloy hanger 4 onto the first aluminum alloy hanger 2. After the stone and aluminum honeycomb panel are combined, their bending, folding, and shear strengths are significantly improved, greatly reducing the breakage rate during transportation, installation, and use.
[0016] like Figure 1As shown, in a preferred embodiment of the present invention, a corrosion-resistant nylon partition 7 is provided between the first aluminum alloy hanger 2 and the steel keel frame 1, the corrosion-resistant nylon partition 7 being used to separate the first aluminum alloy hanger 2 and the steel keel frame 1; a rubber strip 8 is provided between the first aluminum alloy hanger 2 and the second aluminum alloy hanger 4, the rubber strip 8 being used to provide cushioning for the first aluminum alloy hanger 2 and the second aluminum alloy hanger 4.
[0017] By setting the anti-corrosion nylon partition 7, the first aluminum alloy hanger 2 and the steel keel frame 1 can be separated, thereby preventing the first aluminum alloy hanger 2 from being corroded by the steel keel frame 1; the rubber strip 8 can provide cushioning for the first aluminum alloy hanger 2 and the second aluminum alloy hanger 4.
[0018] like Figure 1 As shown, in a preferred embodiment of this utility model, it further includes: a stainless steel adjusting screw 9, which is attached to the first aluminum alloy bracket 2 and threadedly connected to the second aluminum alloy bracket 4, for fine adjustment of the stone aluminum honeycomb panel on the second aluminum alloy bracket 4.
[0019] Screw the stainless steel adjusting screw 9 onto the second aluminum alloy bracket 4 and press it against the first aluminum alloy bracket 2. As the stainless steel adjusting screw 9 is turned, the second aluminum alloy bracket 4 can be slightly moved up or down on the first aluminum alloy bracket 2, thereby allowing for fine-tuning of the stone aluminum honeycomb panel 5.
[0020] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A stone-aluminum honeycomb panel with an alloy hanger structure, comprising a steel keel frame and a first aluminum alloy hanger, characterized in that, The first aluminum alloy bracket passes through a stainless steel connecting bolt that is threaded to the steel keel frame. The stainless steel connecting bolt is used to fix the first aluminum alloy bracket to the steel keel frame. The first aluminum alloy bracket is also equipped with a second aluminum alloy bracket. The stone aluminum honeycomb panel has pre-embedded holes, and pre-embedded bolts are installed at the pre-embedded holes. The stone aluminum honeycomb panel and the second aluminum alloy hanger are fixed by the pre-embedded bolts.
2. The aluminum honeycomb panel with alloy pendant structure stone material according to claim 1, characterized in that, A corrosion-resistant nylon partition is provided between the first aluminum alloy bracket and the steel keel frame. The corrosion-resistant nylon partition is used to separate the first aluminum alloy bracket and the steel keel frame. A rubber strip is provided between the first aluminum alloy bracket and the second aluminum alloy bracket to provide cushioning for the first aluminum alloy bracket and the second aluminum alloy bracket.
3. The aluminum honeycomb panel with alloy pendant structure stone material according to claim 1, characterized in that, Also includes: The stainless steel adjusting screw is attached to the first aluminum alloy bracket and threadedly connected to the second aluminum alloy bracket, and is used for fine-tuning the stone aluminum honeycomb panel on the second aluminum alloy bracket.