一种激光焊接房墙板件

By adopting a uniformly oriented C-shaped slot structure and reinforcing rib design in the laser-welded room wall panels, combined with the thermal expansion and contraction buffer of vermiculite strips, the problems of complex installation and thermal expansion and contraction of traditional laser-welded room wall panels are solved, achieving efficient and stable splicing and heat insulation effects, and extending service life.

CN224514438UActive Publication Date: 2026-07-17SICHUAN WOJIE INTELLIGENT EQUIP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SICHUAN WOJIE INTELLIGENT EQUIP CO LTD
Filing Date
2025-07-28
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional laser-welded wall panels often use bolt connections or complex interlocking structures, requiring tools to complete the splicing. This results in long installation cycles, difficult maintenance, and a lack of effective thermal expansion and contraction buffering mechanisms, leading to cracking at the joints or loosening of the slots.

Method used

Design a laser-welded wall panel component that adopts a uniformly oriented C-shaped slot structure. Precise snap-fit ​​is achieved by flipping. The stability is enhanced by reinforcing ribs and convex ribs. Vermiculite strips are filled in the slot gaps to buffer thermal expansion and contraction. 6061-T6 aluminum alloy material is used to reduce weight and improve corrosion resistance.

Benefits of technology

It enables tool-free rapid assembly, improves installation efficiency by more than 50%, enhances deformation resistance by 30%, improves sealing and heat insulation performance, reduces maintenance costs, extends service life by 20%, and meets the harsh environmental requirements of laser welding rooms.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请公开了一种激光焊接房墙板件,包括平行设置的第一墙板件与第二墙板件,通过加强筋连接形成对称结构。两端的C型卡槽开口方向一致且由内向外布置,翻转拼接时实现精准卡接,无需工具即可完成安装拆卸。第三墙板件之间预留条形间隙,缓冲热胀冷缩应力。该墙板件通过对称设计、卡槽自锁特性及多腔体隔热结构,实现安装便捷性、可拆卸性、结构稳定性与环境适应性的优化,适用于激光焊接房的高精度环境需求;其中,C型卡槽包括第一C型卡槽、第二C型卡槽、第三C型卡槽、第四C型卡槽。
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Claims

1. A laser welded house wall panel member, characterized by: It includes two parallel plate-shaped main bodies. The two plate-shaped main bodies are connected in the middle by a connecting component; Each plate-shaped main body has end grooves at both ends, and the outer ends of the end grooves at both ends of the same plate-shaped main body are respectively provided with connecting slots. Furthermore, all the openings of the connecting slots are in the same direction, arranged from the inner side of the plate-shaped main body to the outer side; When two laser-welded room wall panels are flipped and spliced ​​together, the connecting slot of one laser-welded room wall panel and the corresponding connecting slot of the other laser-welded room wall panel form a snap-fit ​​engagement.

2. The laser-welded room wall panel according to claim 1, characterized in that: The two plate-shaped main bodies correspond to the first wall panel (101) and the second wall panel (102) respectively. The end groove of one plate-shaped main body is the first universal groove (1051), and the end groove of the other plate-shaped main body is the second universal groove (1052). The two connecting slots of one plate-shaped main body correspond to the first C-shaped slot (107) and the third C-shaped slot (110) respectively. The two connecting slots of the other plate-shaped main body correspond to the second C-shaped slot (109) and the fourth C-shaped slot (111) respectively. A reinforcing rib (104) is provided between the middle position of the first wall panel (101) and the middle position of the second wall panel (102). The first wall panel (101) has a first universal groove (1051) at both its left and right ends, and the second wall panel (102) has a second universal groove (1052) at both its left and right ends. A first C-shaped slot (107) is provided at the left end of one of the first universal grooves (1051) on the left side of the first wall panel (101), and a third C-shaped slot (110) is provided at the right end of the other first universal groove (1051) on the right side of the first wall panel (101). A second C-shaped slot (109) is provided at the left end of one of the second universal grooves (1052) on the left side of the second wall panel (102), and a second C-shaped slot (109) is provided at the right end of the other second universal groove. The right end of (1052) is provided with the fourth C-shaped slot (111). The openings of the first C-shaped slot (107), the second C-shaped slot (109), the third C-shaped slot (110), and the fourth C-shaped slot (111) all face the same direction and are arranged from the inner side of the first wall panel (101) towards the outer side of the first wall panel (101). When two laser welding room wall panels are flipped and spliced, the first C-shaped slot (107) of one laser welding room wall panel is engaged with the fourth C-shaped slot (111) of the other laser welding room wall panel, and the second C-shaped slot (109) of one laser welding room wall panel is engaged with the third C-shaped slot (110) of the other laser welding room wall panel.

3. The laser welded house wall panel member according to claim 2, characterized by: It also includes a third wall panel (103) and a third protruding rib (108); the left side of the first C-shaped slot (107) and the right side of the second C-shaped slot (109) are connected by a third wall panel (103), and a third protruding rib (108) is provided at the transition position between the third wall panel (103) and the first C-shaped slot (107); the right side of the third C-shaped slot (110) and the left side of the fourth C-shaped slot (111) are connected by another third wall panel (103), and the third C-shaped slot (110)... 0) Another third rib (108) is provided at the transition position between the third wall panel and the fourth C-shaped slot (111); the two third wall panel pieces (103) are parallel to each other, the third wall panel piece (103) is parallel to the reinforcing rib (104), and the reinforcing rib (104) is perpendicular to the first wall panel piece (101); when the two laser welding room wall panel pieces are flipped and spliced, the third wall panel piece (103) of one laser welding room wall panel piece and the third wall panel piece (103) of the corresponding adjacent laser welding room wall panel piece form a strip gap between each other.

4. A laser welded house wall panel member according to claim 3, characterized in that: It also includes a first rib (1061) and a second rib (1062); the first rib (1061) is provided at the transition position between the first wall panel (101) and the corresponding first general groove (1051); the second rib (1062) is provided at the transition position between the second wall panel (102) and the corresponding second general groove (1052).

5. A laser welded house wall panel member according to claim 4, characterized in that: The outer surface of the first wall panel (101) located between the two first convex ribs (1061) has a concave structure in the shape of "︺"; the outer surface of the second wall panel (102) located between the two second convex ribs (1062) has a concave structure in the shape of "︺".

6. A laser welded house wall panel member according to claim 5, characterized in that: All parts of each laser-welded room wall panel are symmetrically arranged with the reinforcing ribs (104).