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首页> 外文期刊>Journal of intelligent material systems and structures >Target shape optimization of functionally graded shape memory alloy compliant mechanisms
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Target shape optimization of functionally graded shape memory alloy compliant mechanisms

机译:靶形式优化功能梯度形状记忆合金兼容机制

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This article focuses on the design optimization of shape memory alloy compliant mechanisms with functionally graded properties to achieve a user-defined target shape. The functional grading is approximated by allowing the geometry and the modulus of elasticity of each zone to vary. The superelastic phenomenon has been taken into account using a standard nonlinear shape memory alloy material model with linear region of higher modulus of elasticity and a superelastic region with much lower modulus of elasticity. A large deflection beam model is integrated with a multi-objective evolutionary algorithm for constrained optimization of the structure's mechanical properties and geometry. Examples illustrate the trade-offs between the objectives of minimizing shape error, maximum stress, and volume. It is observed that in the optimized designs, the elastic modulus and the geometry work together in regions where large flexibility is required to achieve the target shape.
机译:本文重点介绍了具有功能渐变特性的形状记忆合金符合机制的设计优化,以实现用户定义的目标形状。通过允许每个区域的弹性模量来近似功能分级以变化。使用标准非线性形状记忆合金材料模型考虑了具有较高弹性模量的线性区域的超弹性现象,以及具有较低弹性模量的超弹性区域。一个大的偏转光束模型与多目标进化算法集成,用于约束结构的机械性能和几何形状。示例说明了最小化形状误差,最大应力和体积的目标之间的权衡。观察到,在优化的设计中,弹性模量和几何形状在区域中,在需要大的灵活性来实现目标形状。

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