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SIMULTANEOUS SHAPE AND TOPOLOGY OPTIMIZATION OF TRUSS UNDER LOCAL AND GLOBAL STABILITY CONSTRAINTS

机译:局部和全局稳定性约束下桁架的同时形状和拓扑优化

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摘要

A new approach for the solution of truss shape and topology optimization problem sunder local and global stability constraints is proposed. By employing the cross sectional areas of each bar and some shape parameters as topology design variables, the difficulty arising from the jumping of buckling length phenomenon can be easily overcome without the necessity of introducing the overlapping bars into the initial ground structure. Therefore computational efforts can be saved for the solution of this kind of problem. By modifying the elements of the stiffness matrix using Sigmoid function, the continuity of the objective and constraint functions with respect to shape design parameters can be restored to some extent. Some numerical examples demonstrate the effectiveness of the proposed method.
机译:提出了一种解决局部和全局稳定约束下的桁架形状和拓扑优化问题的新方法。通过将每根钢筋的横截面积和一些形状参数用作拓扑设计变量,可以很容易地克服因屈曲长度现象的跳跃而引起的困难,而无需将重叠的钢筋引入初始地面结构中。因此,可以节省用于解决这种问题的计算量。通过使用Sigmoid函数修改刚度矩阵的元素,可以在某种程度上恢复目标和约束函数在形状设计参数方面的连续性。一些数值例子证明了该方法的有效性。

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