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Structural optimization of as-built parts using reverse engineering and evolution strategies

机译:使用逆向工程和演化策略对已建成零件进行结构优化

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摘要

In industry, some parts are prone to failures or their design is simply sub-optimal. In those critical situations, one would like to be able to make changes to the part, making it lighter or improving its mechanical resistance. The problem of as-built parts is that the original computer-aided design (CAD) model is not available or is lost. To optimize them, a reverse engineering process is necessary to capture the shape and topology of the original design. This paper describes how to capture the original design geometry using a semi-automated reverse engineering process based on measurement provided by an optical 3D sensor. Following this reverse engineering process, a Fixed Grid Finite Element method and evolutionary algorithms are used to find the optimum shape that will minimize stress and weight. Several examples of industrial parts are presented. These examples show the advantages and disadvantages of the proposed method in an industrial scenario.
机译:在工业中,某些零件容易出现故障,或者它们的设计根本不是最优的。在那些紧急情况下,人们希望能够对零件进行更改,使其更轻或提高机械阻力。竣工零件的问题是原始计算机辅助设计(CAD)模型不可用或丢失。为了优化它们,必须进行逆向工程过程以捕获原始设计的形状和拓扑。本文介绍了如何基于光学3D传感器提供的测量结果,使用半自动逆向工程过程捕获原始设计几何。在此逆向工程过程之后,使用了固定网格有限元方法和演化算法来找到将应力和重量最小化的最佳形状。给出了工业零件的几个例子。这些示例说明了在工业场景中该方法的优缺点。

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