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首页> 外文期刊>Advanced Modeling and Simulation in Engineering Sciences >Cross section shape optimization of wire strands subjected to purely tensile loads using a reduced helical model
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Cross section shape optimization of wire strands subjected to purely tensile loads using a reduced helical model

机译:使用减少螺旋模型对纯拉伸负荷进行纯抗拉载荷的横截面形状优化

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This paper introduces a shape optimization of wire strands subjected to tensile loads. The structural analysis relies on a recently developed reduced helical finite element model characterized by an extreme computational efficacy while accounting for complex geometries of the wires. The model is extended to consider interactions between components and its applicability is demonstrated by comparison with analytical and finite element models. The reduced model is exploited in a design optimization identifying the optimal shape of a 1?+?6 strand by means of a genetic algorithm. A novel geometrical parametrization is applied and different objectives, such as stress concentration and area minimization, and constraints, corresponding to operational limitations and requirements, are analyzed. The optimal shape is finally identified and its performance improvements are compared and discussed against the reference strand. Operational benefits include lower stress concentration and higher load at plastification initiation.
机译:本文介绍了经受拉伸载荷的线束的形状优化。结构分析依赖于最近开发的减少的螺旋有限元模型,其特征在于极端的计算效果,同时考虑了电线的复杂几何形状。该模型扩展以考虑组件之间的相互作用,并通过与分析和有限元模型进行比较来证明其适用性。通过遗传算法,在设计优化中利用缩小模型识别1?+α6链的最佳形状。分析了一种新的几何参数化,并分析了不同的目标,例如应力集中和面积最小化,以及对应于操作限制和要求的限制。最终识别出最佳形状,并将其性能改进进行比较和讨论参考股线。运行益处包括降低压力浓度和塑性引发的较高负载。

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