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FEM simulation on impact resistance of surface gradient and periodic layered bionic composites

机译:关于表面梯度和周期分层仿生复合材料抗冲击性的有限元模拟

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摘要

With an exquisite design that allows the elastic modulus to decrease in the surface layer and vary periodically inside, the stomatopod dactyl club can easily penetrate a hard and tough conch shell. Inspired by this idea, in this paper, a surface gradient target and a periodic layered target were designed. The failure processes of the two bionic targets and a uniform target under impact were studied with the finite element method (FEM), and the mechanism that allows the bionic designs of elastic modulus to optimize stress distribution and improve com- patibility of deformation to greatly strengthen impact resistance of the targets was revealed.
机译:具有精湛的设计,允许弹性模量在表面层减小并且内部周期性周期性地,气孔泡沫俱乐部可以容易地穿透坚硬和坚韧的壳壳。在本文中灵感,在本文中,设计了一种表面梯度目标和周期性分层目标。用有限元法(FEM)研究了两个仿生靶标的失效过程和均匀的目标,以及允许弹性模量的仿生模量的机制来优化应力分布并改善变形的结构,从而大大加强揭示了目标的抗冲击性。

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