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Energy absorption characteristics of a lightweight auxetic honeycomb under low-velocity impact loading

机译:轻质辅助蜂窝在低速冲击载荷下的吸能特性

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摘要

Auxetic honeycombs have been extensively studied due to their unique mechanical properties. In this paper, the dynamic response of WSH (The windmill-like configuration composed of stars and hexagons) honeycomb is systematically studied by theoretical calculations, numerical simulations, and experimental methods. The static and dynamic plateau stresses of WSH honeycombs are calculated, and critical velocities leading to different deformation modes of WSH honeycombs are derived. Finally, the gradient design of WSH honeycombs is carried out. And the dynamic response of the gradient WSH honeycombs is explored through numerical simulations. Under low-velocity impact loading, WSH honeycombs have better energy absorption capacity than conventional honeycombs. Both the concave angle gradient design and thickness gradient design can further enhance the energy absorption performance of WSH honeycombs.
机译:辅助蜂窝因其独特的机械性能而被广泛研究。本文通过理论计算、数值模拟和实验方法,系统地研究了WSH(由星形和六边形组成的风车状构型)蜂窝的动力响应。计算了WSH蜂窝的静、动态平台应力,推导了WSH蜂窝不同变形模式的临界速度。最后,对WSH蜂窝进行梯度设计。通过数值模拟探讨了梯度WSH蜂窝的动态响应。在低速冲击载荷下,WSH蜂窝比传统蜂窝具有更好的吸能能力。凹角梯度设计和厚度梯度设计都可以进一步增强WSH蜂窝的吸能性能。

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