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Multiscale design for additive manufactured structures with solid coating and periodic infill pattern

机译:具有固体涂层和周期性填充图案的增材制造结构的多尺度设计

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This paper considers multiscale topology optimization of an infill structure. The structure is composed of an optimized layout configuration at the macroscale with uniform optimized microstructures as infill lattices coated by a thin skin. The design optimization of the infill lattice is performed simultaneously with the topology optimization of macroscale structure, which also includes the coating. The classic Solid Isotropic Material with Penalization (SIMP) method is used to design the topology of the microstructure. The Novel Implementation of Asymptotic Homogenization (NIAH) evaluates the effective properties of the microstructure; the macroscale structural analysis uses these homogenized properties. The Porous Anisotropic Material with Penalization (PAMP) method realizes the two-scale topology optimization of the macrostructure and microstructure. Harmonic-mean based non-linear filters identify the coating layer and realize length scale control on the topologies of the macrostructure as well as the microstructure. These morphology mimicking non-linear filters also distinguish the skin and the infill lattice parts of the design at the macroscale. Several numerical examples demonstrate the effectiveness of the proposed optimization method. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文考虑了填充结构的多尺度拓扑优化。该结构由宏观上的优化布局配置组成,具有均匀的优化微观结构,如被薄皮覆盖的填充晶格。填充晶格的设计优化与宏观结构(包括涂层)的拓扑优化同时进行。经典的带罚分的固体各向同性材料(SIMP)方法用于设计微结构的拓扑。渐近均质化的新方法(NIAH)评估了微结构的有效特性。宏观结构分析使用了这些均质的特性。惩罚性多孔各向异性材料(PAMP)方法实现了宏观结构和微观结构的两尺度拓扑优化。基于谐波均值的非线性滤波器可识别涂层,并实现宏观结构和微观结构拓扑的长度尺度控制。这些模仿非线性滤波器的形态还可以在宏观尺度上区分设计的蒙皮和填充晶格部分。几个数值例子证明了所提出的优化方法的有效性。 (C)2019 Elsevier B.V.保留所有权利。

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