复合数
竹子
材料科学
抗弯强度
刚度
复合材料
承载力
延展性(地球科学)
结构工程
变形(气象学)
方位(导航)
抗弯刚度
计算机科学
工程类
蠕动
人工智能
作者
H.-D. Zhong,Qifeng Shan,Jialiang Zhang,Xiaocun Zhang,Yushun Li
摘要
This paper presents a study aimed to estimate the flexural performance of profiled steel sheet‐bamboo plywood composite slabs as a first step to evaluate its potential application as structural components. Nine specimens were tested to investigate the stability of steel‐bamboo composite structure. According to different connection methods, three types of composite slabs were discussed, including pure bonding slabs (PBSs), composite bonding slabs (CBSs), and reinforced composite bonding slabs (RCBS). The result showed that specimens employed multiple composite methods (RCBS) exhibited excellent flexural bearing capacity and stiffness compared with PBS. The increase of bamboo plywood thickness could improve bearing capacity and flexural stiffness of composite slabs, while the reduction of screw spacing could enhance the bearing capacity and ductility of composite slabs. The RCBS, which can provide higher bearing capacity and stiffness and possess excellent deformation capability, are well worth of research and practical application.
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