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Automated structural optimization system for integrated topology and shape optimization

机译:用于集成拓扑和形状优化的自动化结构优化系统

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摘要

This paper combines previously developed techniques for image-preprocessing and characteristic image-interpreting to-ether with a newly proposed automated shape-optimization modeling technique into an integrated topology-optimization and shape-optimization system. As a result, structure designers are provided with an efficient and reliable automated structural optimization system (ASOS). The automated shape-optimization modeling technique, the key technique in ASOS, uses hole-expanding strategy, interference analysis, and hole shape-adjusting strategy to automatically define the design variables and side constraints needed for shape optimization. This technique not only eliminates the need to manually define design variables and side constraints for shape optimization, but during the process of shape optimization also prevents interference between the interior holes and the exterior boundary. The ASOS is tested in three different Structural configuration design examples.
机译:本文将先前开发的图像预处理和特征图像解释技术与新提出的自动形状优化建模技术结合在一起,形成一个集成的拓扑优化和形状优化系统。结果,为结构设计者提供了高效且可靠的自动化结构优化系统(ASOS)。自动形状优化建模技术是ASOS中的关键技术,它使用扩孔策略,干涉分析和孔形状调整策略来自动定义形状优化所需的设计变量和侧约束。该技术不仅消除了手动定义设计变量和侧面约束以进行形状优化的需要,而且在形状优化过程中还防止了内部孔与外部边界之间的干涉。在三个不同的结构配置设计示例中对ASOS进行了测试。

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