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The Minimum Flexibility Design Of Large-Scale Truss Structure Based On Full-Strain Criterion

机译:基于全应变标准的大型桁架结构的最小灵活性设计

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For large truss structure, a structural optimization design method has been derived successfully. The design goal is finding the smallest flexibility of the entire structure, also finding the maximum stiffness. The criterion is full-strain criterion. When the weight of the entire truss structure satisfied certain constraints, the entire flexibility can be reached by optimizing the cross-sectional area of each pole. Simulation results showed that method can make truss structure's entire flexibility reach minimum with limited number of iteration steps. The stop criterion is the sum difference of all pole's cross-sectional area between two iterations. With the stop criterion becoming smaller, the number of iterations increases, the computation time required also increases. In practice, the stop criterion should be determined by actual demand and cost constraints.
机译:对于大型桁架结构,成功推出了结构优化设计方法。设计目标正在寻找整个结构的最小灵活性,也找到了最大刚度。标准是全应变标准。当整个桁架结构的重量满足某些约束时,可以通过优化每个杆的横截面积来达到整个柔性。仿真结果表明,该方法可以使桁架结构的整个灵活性达到最小值,数量有限的迭代步骤。停止标准是两个迭代之间的所有杆的横截面积的总和差异。随着停止标准变小,迭代的数量增加,所需的计算时间也增加。在实践中,止损标准应通过实际需求和成本限制来确定。

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