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IMPACT PROPERTIES OF LAMINATED COMPOSITES STITCHED WITH Z-FIBERS

机译:用Z纤维缝合层压复合材料的影响性能

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In order to characterize the outstanding performance of three-dimensional (3D) composites, the low velocity impact test has been carried out. 3D fiber structures have been achieved by using the automated tape placement (ATP) process and a stitching method. Materials for the ATP and the stitching process were carbon/epoxy prepreg tapes and Kevlar fibers, respectively. Two-dimensional (2D) composites with the same stacking sequence as 3D counterparts have also been fabricated for the comparison of damage tolerance. For the assessment of damage after the impact loading, specimens were subjected to C-scan nondestructive inspection. Compression-after-impact (CAI) tests were conducted to evaluate residual compressive strength. The damage area of 3D composites was greatly reduced (30-40%) compared with that of 2D composites. Although the CAI strength did not show drastic improvement for 3D composites, the ratio of retained strength was 5-10% higher than 2D samples. The effect of stitching on the impact performance was negligible above the energy level of 35 Joules.
机译:为了表征三维(3D)复合材料的出色性能,已经进行了低速冲击试验。通过使用自动带放置(ATP)工艺和缝合方法,已经实现了3D光纤结构。用于ATP的材料和缝合过程是碳/环氧预浸料胶带和Kevlar纤维。对于与3D对应物相同的堆叠序列的二维(2D)复合材料也被制造用于比较损坏容差的比较。为了评估冲击载荷后的损伤,试样进行C扫描非破坏性检查。进行压缩 - 撞击(CAI)测试以评估残留抗压强度。与2D复合材料相比,3D复合材料的损伤区域大大降低(30-40%)。虽然CAI强度没有显示3D复合材料的急剧改善,但保留强度的比例比2D样品高5-10%。缝合对冲击性能的影响忽略于35焦耳的能量水平。

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