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Dynamic crushing and energy absorption of functionally graded aluminum cellular metal with cubic structure

机译:立方体结构功能分级铝细胞金属的动态粉碎和能量吸收

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The dynamic crushing and energy absorption of regular and functionally graded cellular metal is investigated using finite element method. The cellular metal consists of hollow cubic structure which is manufactured by way of stamping. The functionally graded cellular structure is designed by changing the side length of hollow cubic structure. Dynamic crushing simulation of both regular and functionally graded structures was conducted. The numerical simulation results show that the functionally graded one is more superior in energy absorption than the regular one. Different from the regular one, the stress-strain curve of the functionally graded structure has 4-four stress plateau stages. Positive gradient and negative gradient functionally graded structures were also simulated and compared under different impact speed. The decreasing one was supposed to be more stable. The study provides a new insight into functionally graded cellular structure.
机译:使用有限元法研究了规则和功能梯度细胞金属的动态粉碎和能量吸收。细胞金属由中空立方结构组成,其通过冲压制造。通过改变中空立方结构的侧长度来设计功能梯度的蜂窝结构。进行了常规和功能分级结构的动态粉碎模拟。数值模拟结果表明,功能梯度的仿真结果比常规级别更优越。不同于常规,功能梯度结构的应力 - 应变曲线具有4-四个应力平台阶段。在不同的冲击速度下,还模拟并比较了正梯度和负梯度功能梯度结构。减少一个人应该更稳定。该研究提供了新的洞察功能渐进的蜂窝结构。

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