钛/玻璃纤维增强塑料混合夹层:短梁试样的面内弯曲性能

C. Bellini, R. Borrelli, V. Di Cocco, S. Franchitti, Francesco Iacoviello, L. P. Mocanu, L. Sorrentino
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引用次数: 0

摘要

采用新型夹层结构,即具有高比强度和刚度的 FRP(纤维增强聚合物)表皮和金属晶格核心,是在保持轻量化的同时获得更好机械性能的一种方法。挠曲应力是汽车车架结构部件中经常出现的一种载荷模式;然而,虽然平面内载荷方案很少得到研究,但平面外载荷方案却得到了研究。因此,本研究采用了前一种结构。此外,还考虑了短梁试样。分析了使用三种不同复合材料作为表皮材料的试样的机械响应。表皮由两种不同编织方式的 CFRP(碳纤维增强聚合物)和 AFRP(芳纶纤维增强聚合物)制成。此外,还对全钛试样进行了研究。CFRP 和 AFRP 试样的最大载荷和断裂时的最大位移相似,而全钛试样的强度更大。从载荷-位移曲线来看,第一段为初始线性阶段,随后载荷略有下降,这可能是由于纤维断裂造成的。CFRP 试样的表皮纤维急剧断裂,而 AFRP 试样则出现磨损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Titanium/FRP hybrid sandwich: in-plane flexural behaviour of short beam specimens
Adopting novel sandwich structures with FRP (Fibre Reinforced Polymer) skins and a metallic lattice core, both of which have high specific strength and stiffness, is one way to achieve better mechanical performance while remaining lightweight. Flexural stress is a load pattern that frequently occurs in the structural frame components of automobiles; nonetheless, while the in-plane load scheme has scarcely been examined, the out-of-plane load one has. As a result, the former configuration received consideration in this work. Moreover, short beam specimens were taken into account. The mechanical response of specimens with three different kinds of composite materials as skin material was analysed. The skins were made of CFRP (Carbon Fiber Reinforced Polymer), with two different weaving styles, and AFRP (Aramid Fiber Reinforced Polymer). All-titanium specimens were studied, too. Similar maximum loads and maximum displacement at break were recorded for both CFRP and AFRP specimens, while the all-titanium one resulted stronger. In terms of the load-displacement curves, the first section featured an initial linear phase, followed by a minor load drop, likely attributed to the breakage of fibres. The CFRP specimens showed a sharp fracture of the skin fibres, while for the AFRP, a fraying was observed.
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