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Composite wallboard
The invention discloses a composite wallboard which is formed by splicing a plurality of light steel keel wallboards, and the splicing positions of the light steel keel wallboards are of broken bridge structures. The broken bridge structure comprises a plurality of broken bridge layer cushion blocks, a first heat preservation material and sealant, and the broken bridge layer cushion blocks are located on the outer sides of the steel stand column frameworks of all the light steel keel wallboards. The first thermal insulation material is filled in a splicing seam between the light steel keel wallboards, and the sealant is arranged at the splicing seam between the light steel keel wallboards. According to the scheme, on the basis of the thermal bridge effect, starting from a light steel keel structure system, the bridge cutoff structure for optimizing the thermal bridge problem existing at the joint of an existing light steel keel grouting composite wall plate is provided, the thermal performance of the light steel keel grouting composite wall plate is improved, and the service life of the light steel keel grouting composite wall plate is prolonged. The problem that in the prior art, a light steel keel grouting composite wallboard is affected by a heat bridge is solved to a certain extent.
本发明公开了一种复合墙板,包括若干个轻钢龙骨墙板拼接而成,所述轻钢龙骨墙板之间的拼接处采用断桥构造。所述断桥构造包括若干个断桥层垫块、第一保温材料以及密封膏,所述断桥层垫块位于每个所述轻钢龙骨墙板的钢立柱骨架的外侧。所述第一保温材料填充在所述轻钢龙骨墙板之间的拼接接缝处,所述密封膏设置在所述轻钢龙骨墙板之间的拼接接缝处。本申请提出的方案基于热桥效应,从轻钢龙骨结构体系的入手,提出对现有轻钢龙骨注浆复合墙板接缝处存的热桥问题进行优化的的断桥构造,提升轻钢龙骨注浆复合墙板的热工性能,在一定程度上解决了现有技术中轻钢龙骨注浆复合墙板得热桥影响的问题。
Composite wallboard
The invention discloses a composite wallboard which is formed by splicing a plurality of light steel keel wallboards, and the splicing positions of the light steel keel wallboards are of broken bridge structures. The broken bridge structure comprises a plurality of broken bridge layer cushion blocks, a first heat preservation material and sealant, and the broken bridge layer cushion blocks are located on the outer sides of the steel stand column frameworks of all the light steel keel wallboards. The first thermal insulation material is filled in a splicing seam between the light steel keel wallboards, and the sealant is arranged at the splicing seam between the light steel keel wallboards. According to the scheme, on the basis of the thermal bridge effect, starting from a light steel keel structure system, the bridge cutoff structure for optimizing the thermal bridge problem existing at the joint of an existing light steel keel grouting composite wall plate is provided, the thermal performance of the light steel keel grouting composite wall plate is improved, and the service life of the light steel keel grouting composite wall plate is prolonged. The problem that in the prior art, a light steel keel grouting composite wallboard is affected by a heat bridge is solved to a certain extent.
本发明公开了一种复合墙板,包括若干个轻钢龙骨墙板拼接而成,所述轻钢龙骨墙板之间的拼接处采用断桥构造。所述断桥构造包括若干个断桥层垫块、第一保温材料以及密封膏,所述断桥层垫块位于每个所述轻钢龙骨墙板的钢立柱骨架的外侧。所述第一保温材料填充在所述轻钢龙骨墙板之间的拼接接缝处,所述密封膏设置在所述轻钢龙骨墙板之间的拼接接缝处。本申请提出的方案基于热桥效应,从轻钢龙骨结构体系的入手,提出对现有轻钢龙骨注浆复合墙板接缝处存的热桥问题进行优化的的断桥构造,提升轻钢龙骨注浆复合墙板的热工性能,在一定程度上解决了现有技术中轻钢龙骨注浆复合墙板得热桥影响的问题。
Composite wallboard
复合墙板
LI JINJUN (author) / LIU ZHILONG (author) / QIU TIAN (author) / JIN TONG (author)
2023-01-31
Patent
Electronic Resource
Chinese
IPC:
E04C
STRUCTURAL ELEMENTS
,
Bauelemente
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