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Topology optimization of stress-constrained structural elements using risk-factor approach

机译:使用风险因子方法对受应力约束的结构单元进行拓扑优化

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摘要

Recent advances in civil engineering and architecture, especially in Digital Fabrication (DF), have enabled the implementation of challenging solutions that yield components with improved and optimized performances.This work proposes an innovative optimization procedure based on an integrated Risk-Factor and Stress-Constrained approach to design concrete structural elements; the algorithm produces lightweight structures while properly taking into account the asymmetrical compression and traction strengths of concrete-like materials. The algorithm is tested over a set of concrete material properties in a simply supported beam configuration. The Risk Factor approach is compared to a classical Von Mises stress condition, showing a more reliable capability in obtaining optimized beams, while handling a wide range of asymmetrical stress constraints. (C) 2019 Elsevier Ltd. All rights reserved.
机译:土木工程和建筑学的最新进展,尤其是数字制造(DF)方面的进展,使得能够实施具有挑战性的解决方案,从而产生具有改进和优化性能的组件。这项工作提出了基于集成的风险因素和压力约束的创新性优化程序设计混凝土结构元件的方法;该算法产生轻质结构,同时适当考虑了类混凝土材料的不对称压缩和牵引强度。该算法在简单支撑的梁配置中对一组混凝土材料属性进行了测试。将“风险因子”方法与经典的冯·米塞斯应力条件进行了比较,显示出在处理各种不对称应力约束的同时,获得优化梁的更可靠能力。 (C)2019 Elsevier Ltd.保留所有权利。

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