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Modeling mechanical behavior of an additively manufactured metal structure with local texture variations: a study on model form error

机译:用局部纹理变化建模一种瘾制造的金属结构的力学行为:模型形式误差研究

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摘要

The repetitive rapid solidification that occurs in metal additive manufacturing (AM) processes creates microstructures distinctly different from wrought materials. Local variability in AM microstructures (either by design or unintentional) raises questions as to how AM structures should be modeled at the part-scale to minimize modeling error. The key goal of this work is to demonstrate a posteriori error estimation applied to an AM part. It is assumed that the actual microstructure is unknown and an approximate, spatially uniform material model is used. Error bounds are calculated for many reference models based on AM microstructures with elongated grain morphology and localized or global fiber textures during a post-processing step. The current findings promote confidence that a posteriori model form error estimation could be used effectively in mechanical performance simulations of AM parts to quickly obtain quantitative error metrics between an approximate model result and many microstructure-based reference models. The a posteriori error estimation introduces significant time savings compared to computing the full reference model solutions. Tight bounds on model form error are obtained when texture variations in the reference models occur on large length scales. For materials with property variation at small length scales, multi-scale error estimation techniques are needed to properly account for the many interfaces present between areas with different properties.
机译:在金属添加剂制造(AM)过程中发生的重复的快速凝固产生明显不同于锻造材料的微观结构。 AM微结构的局部变异(通过设计或无意)提出了关于AM结构如何在零件范围内建模的问题,以最小化建模错误。这项工作的关键目标是展示应用于AM部分的后验误差估计。假设实际的微结构未知,使用近似的空间均匀的材料模型。基于AM微结构的许多参考模型计算错误界限,在后处理步骤期间,基于AM微结构,具有细长晶粒形态和局部或全球光纤纹理。目前的调查结果促进了令人信心,即在AM部件的机械性能模拟中可以有效地使用后验模型形式误差估计,以便在近似模型结果和许多基于微结构的参考模型之间快速获得定量误差度量。与计算完整参考模型解决方案相比,后验误差估计会介绍显着的时间。当在大长度尺度上发生参考模型中的纹理变化时,获得模型形式错误的紧张界限。对于具有小长度尺度的属性变化的材料,需要多尺度误差估计技术来正确算解具有不同属性的区域之间存在的许多接口。

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