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Mechanical behaviour of glass and carbon fibre reinforced composites at varying strain rates

机译:玻璃和碳纤维增强复合材料在不同应变速率下的力学行为

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The choice of composite materials as a substitute for metallic materials in technological applications is becoming more pronounced especially due to the great weight savings these materials offer. In many of these practical situations, the structures are prone to high impact loads. Material and structural response vary significantly under impact loading conditions as compared to quasi-static loading. The strain rate sensitivity of both carbon fibre reinforced polymer (CFRP) and glass fibre reinforced polymer (GFRP) are studied by testing a single laminate configuration, viz. Cross-ply [0°/90°] polymer matrix composites (PMC) at strain rates of 10~(-3) and 450 s~(-1). The compressive material properties are determined by testing both laminate systems, viz. CFRP and GFRP at low to high strain rates. The laminates were fabricated from 48 layers of cross-ply carbon fibre and glass fibre epoxy. Dynamic test results were compared with static compression test carried out on specimens with the same dimensions. Preliminary compressive stress-strain vs. Strain rates data obtained show that the dynamic material strength for GFRP increases with increasing strain rates. The strain to failure for both CFRP and GFRP is seen to decrease with increasing strain rate.
机译:在技​​术应用中,复合材料替代金属材料的选择变得越来越明显,尤其是由于这些材料可大大减轻重量。在许多这些实际情况中,结构易于承受高冲击载荷。与准静态载荷相比,在冲击载荷条件下,材料和结构的响应差异很大。碳纤维增强聚合物(CFRP)和玻璃纤维增​​强聚合物(GFRP)的应变率敏感性通过测试单个层压板配置进行研究。以10〜(-3)和450 s〜(-1)的应变速率交叉层压[0°/ 90°]聚合物基复合材料(PMC)。压缩材料的性能是通过测试两个层压系统来确定的。从低应变率到高应变率的CFRP和GFRP。层压板由48层交叉碳纤维和玻璃纤维环氧树脂制成。将动态测试结果与在相同尺寸的样品上进行的静态压缩测试进行了比较。初步的压缩应力-应变对应变率数据显示,GFRP的动态材料强度随应变率的增加而增加。看到CFRP和GFRP的破坏应变随着应变率的增加而降低。

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