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Stability and Load-Carrying Capacity of Thin-Walled FRP Composite Z-Profiles under Eccentric Compression

机译:偏心压缩下薄壁FRP复合Z-型材的稳定性和承载能力

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摘要

This study investigates the effect of eccentric compressive load on the stability, critical states and load-carrying capacity of thin-walled composite Z-profiles. Short thin-walled columns made of carbon fiber-reinforced plastic composite material fabricated by the autoclave technique are examined. In experimental tests, the thin-walled structures were compressed until a loss of their load-carrying capacity was obtained. The test parameters were measured to describe the structure’s behavior, including the phenomenon of composite material failure. The post-critical load-displacement equilibrium paths and the acoustic emission signal enabling analysis of the composite material condition during the loading process were measured. The scope of the study also included performing numerical simulations by finite element method to solve the problem of non-linear stability and to describe the phenomenon of composite material damage based on the progressive failure model. The obtained numerical results showed a good agreement with the experimental characteristics of real structures. The numerical results are compared with the experimental findings to validate the developed numerical model.
机译:本研究研究了偏心压缩载荷对薄壁复合Z型材的稳定性,临界状态和承载能力的影响。检查由由高压釜技术制造的碳纤维增强塑料复合材料制成的短薄壁柱。在实验测试中,压缩薄壁结构直至获得其负载能力的损失。测量测试参数以描述结构的行为,包括复合材料衰竭的现象。测定了临界后负载 - 位移平衡路径和声发射信号在加载过程中能够分析复合材料条件。该研究的范围还包括通过有限元方法进行数值模拟,以解决非线性稳定性的问题,并描述基于渐进式故障模型的复合材料损伤现象。获得的数值结果表明,与真实结构的实验特征吻合良好。将数值结果与实验结果进行比较,以验证已开发的数值模型。

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