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Characterization of multi-stitched woven nano composites under compression after low velocity impact (CALVI) load

机译:低速冲击(CALVI)负荷后压缩下多缝合编织纳米复合材料的表征

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The purpose of this research was to determine the compression after low velocity impact (CALVI) properties of multi-stitched nano composite. It was obtained that the CALVI strength of the multi-stitched nano composite was higher than that of the unstitched composites with or without the nanomaterial. In addition, stitching types (hand stitch or machine stitch) and the particle size of nanomaterial or micro material types were found to be important structural parameters for the multi-stitched nano composites. The CALVI load applied on the multi-stitched nano composite resulted in lateral damages close to the impacted indentation region. The failure modes of the damaged zone were local matrix-fiber debonding and delamination, kinking, and local multiple matrix-fiber breakages in the in-plane and out-of-plane directions of the composite. Multi-stitched nano composite showed large damaged areas but the out-of-plane layer delamination was confined to relatively small areas. Thus, multi-stitching and nano particle addition enhanced the CALVI properties of the composite structures. POLYM. COMPOS., 39:3750-3764, 2018. (c) 2017 Society of Plastics Engineers
机译:该研究的目的是在多缝合纳米复合材料的低速冲击(CALVI)性能后确定压缩。得到的是,多缝合纳米复合材料的CALVI强度高于具有或不具有纳米材料的未堆积复合材料的CALVI强度。此外,发现缝合类型(手针或机迹)和纳米材料或微材料类型的粒度是多缝合纳米复合材料的重要结构参数。施加在多缝合纳米复合材料上的Calvi负载导致靠近受冲压区域的横向损坏。受损区的故障模式是本地矩阵 - 光纤剥离和分层,扭结和局部多矩阵 - 在复合材料的平面内和平面外方向上。多缝合的纳米复合材料显示出大的受损区域,但外平面层分层被限制在相对较小的区域。因此,多缝合和纳米颗粒添加增强了复合结构的C​​alVI性质。聚合物。 Compos。,39:3750-3764,2018。(c)2017塑料工程师协会

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