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Shape and topology optimization considering anisotropic features induced by additive manufacturing processes

机译:考虑增材制造过程中各向异性特征的形状和拓扑优化

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摘要

This article considers the modeling of the effective properties of the constituent material of structures fabricated by additive manufacturing technologies; the influence of these properties on the design optimization process is analyzed, and the opportunities that they offer in this context are investigated. On the one hand, emphasizing on the case where the particular material extrusion techniques are used for the construction, we propose a model for the anisotropic material properties of shapes depending on the (user-defined) trajectory followed by the machine tool during the assembly of their 2d layers. On the other hand, we take advantage of the potential of additive manufacturing technologies for constructing very small features: we consider the optimization of the infill region of a shape with given external contour with the goal to improve at the same time its lightness and its robustness. The optimized and constraint functionals of the domain involved in the shape optimization problems in both contexts are rigorously analyzed, notably by relying on the notion of signed distance function. Eventually, several numerical experiments are conducted in two dimensions to illustrate the main points of the study. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文考虑了通过增材制造技术制造的结构的构成材料的有效特性的建模。分析了这些属性对设计优化过程的影响,并研究了它们在这种情况下提供的机会。一方面,在强调使用特殊材料挤压技术进行构造的情况下,我们提出了一种形状各向异性材料特性模型,该模型取决于(用户定义的)轨迹,并且在组装过程中机床遵循该轨迹。他们的2d图层。另一方面,我们利用增材制造技术的潜力来构建非常小的特征:我们考虑优化具有给定外部轮廓的形状的填充区域,以同时提高其亮度和鲁棒性。 。严格地分析了这两种情况下涉及形状优化问题的域的优化和约束功能,尤其是依靠有符号距离函数的概念。最终,在两个维度上进行了一些数值实验,以说明研究的重点。 (C)2018 Elsevier B.V.保留所有权利。

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