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Mechanical Behavior of Non-bonded Fiber Networks in Compression

机译:压缩中非粘结光纤网络的力学行为

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The mechanical behavior of an ensemble of fibers which are not bonded to each other subjected to compression is studied using a numerical model. It is shown that the stress-strain curve is a power law and the strain energy is stored predominantly in the bending deformation mode of the fibers. Hysteresis is observed when the system is subjected to cyclic loading-unloading, with a stable hysteresis loop being obtained after few cycles. The deformation is not smooth; rather it is dominated by instabilities which lead to pronounced stress drops. These instabilities are due to relative fiber sliding and rearrangement and a correlation is observed between stress drops and collective sliding events. The resulting jerky flow is observed even in absence of friction between fibers and is a result of the evolution of the system over a rough energy landscape during compression.
机译:使用数值模型研究了未键合的纤维的集合的机械特性。结果表明,应力 - 应变曲线是动力法,并且应变能量主要储存在纤维的弯曲变形模式中。当系统经受循环加载卸载时观察到滞后,并且在几个循环之后获得稳定的滞后环。变形不是光滑的;相反,它以不稳定性为主,导致明显的压力下降。这些不稳定性是由于相对光纤滑动和重新排列,并且在应力下降和集体滑动事件之间观察到相关性。即使在没有纤维之间的摩擦,也观察到所得到的混血流,并且是在压缩期间在粗糙的能量景观中的系统演变的结果。

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