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Flexural Properties of Steel-Bamboo Composite Slabs in Different Connection Methods

机译:不同连接方法中钢竹复合板坯的弯曲性能

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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.
机译:本文呈现的目的是估计型钢板-竹胶合板复合板坯的抗弯性能作为第一步骤,以评估其潜在的应用作为结构成分的研究。九个样品进行了测试,调查钢竹复合结构的稳定性。根据不同的连接方法,进行了讨论三种类型的复合板的,包括纯接合板坯(PBSS),复合粘接板坯(CBS之间),并增强复合材料接合板坯(RCBS)。结果表明,采用试样的多个复合的方法(RCBS)表现出与PBS相比优异的抗弯承载力和刚度。竹胶合板厚度的增加可以提高承载能力和组合板的抗弯刚度,而螺杆间距的减少可以提高复合板的承载能力和延展性。的RCBS,它可以提供较高的承载能力和刚度和具有优异的变形能力,是非常值得的研究和实际应用。

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