首页> 外文期刊>Structural and multidisciplinary optimization >Design of distributed compliant micromechanisms with an implicit free boundary representation
【24h】

Design of distributed compliant micromechanisms with an implicit free boundary representation

机译:具有隐式自由边界表示的分布式顺应性微机构设计

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

In this paper, a parameterization approach is presented for structural shape and topology optimization of compliant mechanisms using a moving boundary representation. A level set model is developed to implicitly describe the structural boundary by embedding into a scalar function of higher dimension as zero level set. The compactly supported radial basis function of favorable smoothness and accuracy is used to interpolate the level set function. Thus, the temporal and spatial initial value problem is now converted into a time-separable parameterization problem. Accordingly, the more difficult shape and topology optimization of the Hamilton-Jacobi equation is then transferred into a relatively easy size optimization with the expansion coefficients as design variables. The design boundary is therefore advanced by applying the optimality criteria method to iteratively evaluate the size optimization so as to update the level set function in accordance with expansion coefficients of the interpolation. The optimization problem of the compliant mechanism is established by including both the mechanical efficiency as the objective function and the prescribed material usage as the constraint. The design sensitivity analysis is performed by utilizing the shape derivative. It is noted that the present method is not only capable of simultaneously addressing shape fidelity and topology changes with a smooth structural boundary but also able to avoid some of the unfavorable numerical issues such as the Courant-Friedrich-Levy condition, the velocity extension algorithm, and the reinitialization procedure in the conventional level set method. In particular, the present method can generate new holes inside the material domain, which makes the final design less insensitive to the initial guess. The compliant inverter is applied to demonstrate the availability of the present method in the framework of the implicit free boundary representation.
机译:在本文中,提出了一种参数化方法,用于使用移动边界表示法对顺应性机构进行结构形状和拓扑优化。通过嵌入到更高维度的标量函数(如零级集)中,开发了一个级集模型来隐式描述结构边界。具有良好平滑性和准确性的紧凑支持的径向基函数用于插值水平设置函数。因此,现在将时空初始值问题转换为时间可分割的参数化问题。因此,汉密尔顿-雅各比方程的更困难的形状和拓扑优化随后被转换为以膨胀系数作为设计变量的相对容易的尺寸优化。因此,通过应用最优性标准方法来迭代评估尺寸优化,从而根据插值的展开系数来更新水平集函数,从而可以提高设计边界。通过将机械效率作为目标函数并将规定的材料使用量作为约束条件来建立顺应性机构的优化问题。利用形状导数进行设计灵敏度分析。注意,本方法不仅能够同时解决具有平滑结构边界的形状保真度和拓扑变化,而且还能够避免一些不利的数值问题,例如Courant-Friedrich-Levy条件,速度扩展算法,以及常规级别设置方法中的重新初始化过程。特别地,本方法可以在材料域内产生新的孔,这使得最终设计对初始猜测不那么敏感。顺应性逆变器用于在隐式自由边界表示框架中演示本方法的可用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号