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Effects of gage length, loading rates, and damage on the strength of PPTA fibers

机译:标距长度,加载速率和损伤对ppTa纤维强度的影响

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摘要

Axial tension and transverse compression experiments on single fibers were performed to investigate the mechanical behavior of three high-performance fibers (Kevlar ®, Kevlar ® 129, and Twaron ®) with diameters in the order of 9-12 μm. The single fibers were manufactured from 1998 through 2008. A miniaturized tensile Kolsky bar was used to determine the tensile response of PPTA single fibers at a high strain rate. Gage length and strain rate were found to have minimum effects on the tensile strength of PPTA single fibers. Manufacturing time over a decade was found to have negligible effects on the tensile strength of the fibers. Initial transverse compression on the fibers reduces their ultimate tensile strengths. A high resolution scanning electron microscope (SEM) was also used to examine the fracture modes of transversely deformed fibers. Different types of fracture morphology were observed.
机译:对单根纤维进行了轴向拉伸和横向压缩实验,以研究直径在9-12μm左右的三种高性能纤维(Kevlar®,Kevlar®129和Twaron®)的机械性能。单纤维的生产时间为1998年至2008年。使用微型拉伸Kolsky条确定高应变速率下PPTA单纤维的拉伸响应。发现标距长度和应变速率对PPTA单纤维的拉伸强度影响最小。发现十年以上的制造时间对纤维的拉伸强度的影响可忽略不计。纤维上的初始横向压缩会降低其最终抗张强度。高分辨率扫描电子显微镜(SEM)也用于检查横向变形纤维的断裂模式。观察到不同类型的断裂形态。

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