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Numerical modelling of fluid and solid thermomechanics in additive manufacturing by powder-bed fusion: Continuum and level set formulation applied to track- and part-scale simulations

机译:粉床融合中的液体和固体机力学的数值模拟粉状融合:连续体和水平集合应用于跟踪和部分尺度模拟

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The thermomechanical analysis of powder-bed fusion using a laser beam is simulated in both meso- and macroscales within a framework combining continuum assumption and level-set formulation. The mesoscale simulation focuses on laser interaction with the powder bed, and on subsequent melting and solidification. Modelling is conducted at the scale of material deposition, in which powder-bed fusion, hydrodynamics in the melt pool, and thermal stress are simulated. The macroscale model focuses on part construction and post-deposition. During construction, by contrast with the mesoscale approach, the fluid flow in the fusion zone is ignored and material addition is simplified by modelling it at the scale of entire layers, or fractions of layers. The modelling of the energy input is adapted accordingly. This thermomechanical model addresses heat exchange, residual stress, and distortion at the part's scale. In both approaches, adaptive remeshing is applied, providing a good compromise between the needs to provide accurate prediction and maintaining sustainable computation times. (C) 2018 Academie des sciences. Published by Elsevier Masson SAS.
机译:使用激光束的粉末床融合的热机械分析在组合连续的假设和水平设定配方的框架内模拟在Meso和Macroscales中。 Messcale仿真侧重于与粉末床的激光相互作用,以及随后的熔融和凝固。建模在材料沉积的规模上进行,其中粉末床融合,熔体池中的流体动力学和热应力进行了模拟。 Macroscale模型侧重于部件施工和沉积后。在施工期间,通过与Mescrale方法形成鲜明对比,通过以整个层的规模或层的级分来简化融合区中的流体流动。能量输入的建模相应地进行适应。该热机械模型解决了部分规模的热交换,残余应力和扭曲。在这两种方法中,应用自适应倒闭,在需要提供准确的预测和维持可持续计算时间之间提供良好的折衷。 (c)2018年Academie Des Sciences。由Elsevier Masson SA出版。

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