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High strain compression response of affordable woven carbon/epoxy composites

机译:价格低廉的机织碳/环氧树脂复合材料的高应变压缩响应

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This paper discusses the experimental study on the response of affordable plain and satin weave carbon/epoxy composite laminates subjected to high strain rate compression loading using a modified Compression Split Hopkinson's Pressure Bar (SHPB). 37 layer laminates were manufactured using aerospace grade woven fabrics with SC-15 epoxy resin system utilizing Vacuum Assisted Resin Infusion Molding (VARIM) approach. Samples were subjected to high strain rate compression loading at five different strain rates ranging from 17/s to 817/s in the in-plane as well as through-the-thickness directions using a modified SHPB that facilitates controlled single pulse loading of the sample. High strain rate response was compared with that of static compression. Optical microscopy was used to characterize the failure mechanisms. Results of the study indicate considerable increase in dynamic compression peak stress as compared to static loading, whereas the strain at peak stress was lower by 35-65%. Samples loaded through-the-thickness exhibit higher peak stresses as compared to those loaded in the in-plane direction. [References: 21]
机译:本文讨论了使用改良的分流霍普金森压力棒(SHPB)对经济型平纹和缎纹编织碳/环氧复合材料层压板在高应变速率压缩载荷下的响应进行的实验研究。使用航空级机织织物和SC-15环氧树脂系统,并采用真空辅助树脂灌注成型(VARIM)方法制造37层层压板。使用改进的SHPB有助于样品的受控单脉冲加载,使样品在面内以及整个厚度方向上以从17 / s到817 / s的五个不同应变率承受高应变率压缩载荷。将高应变速率响应与静态压缩进行了比较。光学显微镜用于表征失效机理。研究结果表明,与静态载荷相比,动态压缩峰值应力显着增加,而峰值应力下的应变降低了35-65%。与沿面内方向加载的样品相比,沿厚度加载的样品表现出更高的峰值应力。 [参考:21]

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