帮助 本站公告
您现在所在的位置:网站首页 > 知识中心 > 文献详情
文献详细Journal detailed

微电容加速度计结构的热固耦合拓扑优化
Thermo-structural Coupling Topology Optimization for Structure of Micro-capacitive Accelerometer

作  者: ; ; ; ; ;

机构地区: 暨南大学珠海学院电气自动化研究所

出  处: 《装备制造技术》 2010年第2期33-35,共3页

摘  要: 基于连续体结构拓扑优化的SIMP材料插值模型,建立了热固耦合场结构的有限元控制方程;通过伴随矩阵方法,研究了热固耦合场的敏度分析问题;以叉指式微电容加速度计质量块受热膨胀后,在加速度检测方向的最大形变不大于某一给定值为目标,以质量块的体积比为约束条件,建立了质量块结构的热固耦合拓扑优化模型;采用优化准则算法进行迭代求解后,得到了微电容加速度计质量块的最优拓扑形式,当工作温度在0~300℃范围内变化时,该拓扑形式在加速度检测方向的最大形变仅为23.9nm。 Based on the SIMP material interpolation model of the continuum structural topology optimization, the finite element governing equations of thermo-structural coupling were established. Through the adjoint matrix method, the sensitivity analysis of the thermo-structural coupling field was studied. To use that the maximum heated deformation of the mass-block of a comb micro-capacitive accelerometer at the direction for testing acceleration was less than a given value as objective function, and the volume as the constrained condition, the thermo-structural coupling topology optimization model for the mass-block structure was established. By adopting optimization criterion algorithm the optimal topology form of the micro-capacitance accelerometer mass-block was achieved. In this topology form, the maximum deformation of the mass-block at the direction for testing acceleration was only 23.9nm at the operating temperature range of 0 - 300℃.

关 键 词: 微电容加速度计 拓扑优化 热固耦合

领  域: [机械工程]

相关作者

相关机构对象

相关领域作者

作者 何祥文
作者 黄晓宇
作者 董俊武
作者 刘佳宁
作者 石宝雅