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A numerical study on the axial crushing response of hybrid pultruded and ±45° braided tubes

机译:混合拉挤和±45°编织管轴向挤压响应的数值研究

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摘要

A comprehensive numerical investigation was carried out to evaluate the response and energy absorbing capacity of hybrid composite tubes made of unidirectional pultruded tube over wrapped with ±45° braided fiber-reinforced plastic (FRP). The numerical simulation characterized the crushing behaviors of these tubes subject to both quasi-static compression and axial dynamic impact loadings. Two types of braided FRP, glass and carbon fibers, were considered. Parametric studies were also conducted to examine the influence of the tube's length, thickness and type of braid, as well as the loading conditions on the crushing behavior of the tubes. It was observed that although the pultruded tube, which had the highest stiffness among the tubes considered, produced the highest magnitude of energy absorption capacity, it exhibited a non-symmetric failure mode followed by a longitudinal splitting. On the other hand, the hybrid tubes exhibited a more desirable, accordion type failure mode, therefore they are considered to be more suitable candidates as energy absorbing structural members in service conditions.
机译:进行了全面的数值研究,以评估由单向拉挤管制成的混合复合管的响应和能量吸收能力,该复合管包覆有±45°编织纤维增强塑料(FRP)。数值模拟表征了这些管在准静态压缩和轴向动态冲击载荷作用下的破碎行为。考虑了两种类型的编织FRP:玻璃纤维和碳纤维。还进行了参数研究,以检查管子的长度,厚度和编织类型的影响,以及载荷条件对管子的破碎行为的影响。观察到,尽管拉拔管在所考虑的管中具有最高的刚度,但产生的能量吸收能力最大,但它表现出非对称破坏模式,随后发生纵向分裂。另一方面,混合管表现出更理想的手风琴式失效模式,因此,在使用条件下,它们被认为是更适合用作能量吸收结构部件的候选材料。

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