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Adaptive pressure-controlled cellular structures for shape morphing: II. Numerical and experimental validation

机译:用于形状变形的自适应压力控制细胞结构:II。数值和实验验证

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摘要

This part presents finite element analysis to verify the present formulations on mechanics of the pressurized cellular structures derived in Part I and experimental testing for a pressurized cellular actuator to demonstrate feasibility and realization of the proposed pressurized cellular structures. Linear and nonlinear finite element analyses are implemented in a commercial finite element analysis package and the numerical results are compared with those of the novel formulations given in Part I. A pressurized cellular structure specimen with 3 cells is fabricated and tested. The fabricated 3-cell cellular structure is capable of yielding a free actuation strain of around 24%. The measured pressure-induced displacement and blocking force compare favorably with the numerical results predicted by the finite element analysis and analytical formulations.
机译:本部分提供有限元分析,以验证在第I部分中得出的加压蜂窝结构的力学性能的当前配方以及对加压蜂窝致动器的实验测试,以证明所提出的加压蜂窝结构的可行性和实现。在商业有限元分析软件包中实施了线性和非线性有限元分析,并将数值结果与第一部分中给出的新公式进行了比较。制造并测试了具有3个单元的加压单元结构标本。制成的3单元蜂窝结构能够产生大约24%的自由驱动应变。测得的压力引起的位移和阻挡力与有限元分析和分析公式所预测的数值结果相吻合。

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