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Critical Velocity of High-Performance Yarn Transversely Impacted by Razor Blade

机译:剃刀刀片横向影响的高性能纱线的临界速度

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摘要

A ballistic parameter that influences the ballistic performances of a high-performance yarn is the critical velocity. The critical velocity is defined as the projectile striking velocity that causes instantaneous rupture of the yarn upon impact. In this study, we performed ballistic experiments to determine the critical velocity of a Twaron® yarn transversely impacted by a razor blade. A high-speed camera was integrated into the experimental apparatus to capture the in-situ deformation of the yarn. The experimental critical velocity demonstrated a reduction compared to the critical velocity predicted by the classical theory. The high-speed images revealed the yarn specimen failed from the projectile side toward the free end when impacted by the razor blade. To improve the prediction capability, the Euler⁻Bernoulli beam and Hertzian contact models were used to predict the critical velocity. For the Euler⁻Bernoulli beam model, the critical velocity was obtained by assuming the specimen ruptured instantaneously when the maximum flexural strain reached the ultimate tensile strain of the yarn upon impact. On the other hand, for the Hertzian contact model, the yarn was assumed to fail when the indentation depth was equivalent to the diameter of the yarn. The errors between the average critical velocities determined from experiments and the predicted critical velocities were around 19% and 48% for the Euler⁻Bernoulli beam model and Hertzian contact model, respectively.
机译:影响高性能纱线的弹道性能的弹道参数是临界速度。临界速度被定义为射弹引起速度,导致纱线瞬时破裂。在这项研究中,我们进行了弹道实验,以确定越过剃刀刀片横向撞击的Twaron®纱的临界速度。将高速摄像机集成到实验装置中以捕获纱线的原位变形。实验临界速度证明了与经典理论预测的临界速度相比的减少。高速图像显示纱线样本在受剃刀刀片撞击时从射弹侧的朝向自由端失败。为了提高预测能力,euler⁻bernoulli光束和赫兹触点模型用于预测临界速度。对于Euler⁻bernoulli光束模型,当最大挠曲应变在撞击时达到纱线的最终拉伸应变时,通过假设样品瞬间瞬时破裂,得到临界速度。另一方面,对于赫斯氏触点型号,当压痕深度相当于纱线的直径时,假设纱线失效。从实验确定的平均临界速度和预测的临界速度之间的误差分别为euler⁻bernoulli光束模型和赫斯氏触点模型的约19%和48%。

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