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Taking into account thermal residual stresses in topology optimization of structures built by additive manufacturing

机译:考虑到添加剂制造业构建的结构拓扑优化的热残余应力

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We introduce a model and several constraints for shape and topology optimization of structures, built by additive manufacturing techniques. The goal of these constraints is to take into account the thermal residual stresses or the thermal deformations, generated by processes like Selective Laser Melting, right from the beginning of the structural design optimization. In other words, the structure is optimized concurrently for its final use and for its behavior during the layer-by-layer production process. It is well known that metallic additive manufacturing generates very high temperatures and heat fluxes, which in turn yield thermal deformations that may prevent the coating of a new powder layer, or thermal residual stresses that may hinder the mechanical properties of the final design. Our proposed constraints are targeted to avoid these undesired effects. Shape derivatives are computed by an adjoint method and are incorporated into a level set numerical optimization algorithm. Several 2D and 3D numerical examples demonstrate the interest and effectiveness of our approach.
机译:我们介绍了一种模型和若干结构,用于结构的形状和拓扑优化,由加性制造技术构成。这些约束的目标是考虑通过选择性激光熔化的方法产生的热残余应力或热变形,从结构设计优化开始。换句话说,该结构同时优化其最终使用,并在层逐层生产过程中进行其行为。众所周知,金属添加剂制造产生非常高的温度和热通量,其又产生热变形,其可以防止可能阻碍最终设计的机械性能的新粉末层或热残余应力。我们拟议的约束是针对避免这些不期望的影响。形状衍生物通过伴随方法计算,并结合到级别设定数值优化算法中。几个2D和3D数值示例展示了我们方法的兴趣和有效性。

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