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Using local damage models to predict fracture in additively manufactured specimens

机译:利用局部损伤模型预测含有瘾制造标本的骨折

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摘要

This paper explores the efficacy of employing local damage models, normally applied to ductile material systems manufactured by subtractive techniques, to additively manufactured laboratory specimens. While these specimens were ductile and metallic, their additive character (i.e. porosity and surface roughness) could have had potential to activate multiple life-limiting failure paths, thus obfuscating failure prediction. Herein, two damage models are considered and compared: the micromechanical Gurson-Tvergaard-Needleman model and a Crack Band model of the strain-based, phenomenological genre. Simulations used to calibrate elastic and plastic material properties and predict damage in a novel, non-standard specimen were quasi-static, explicit. Both damage models proved capable in resolving the experimentally-observed failure path and associated loading conditions. The analyses described herein were made as part of the Third Sandia Fracture Challenge.
机译:本文探讨了采用局部损伤模型的功效,通常适用于通过减法技术制造的韧性材料系统,以加剧制造实验室标本。 虽然这些样品是延展岩和金属的,但它们的添加剂特征(即孔隙率和表面粗糙度)可能具有激活多个寿命的失效路径的可能性,从而混淆故障预测。 这里,考虑和比较了两种损坏模型:微机械Gurson-Tvergaard-GenereMan模型和基于菌株的现象类型类型的裂缝带模型。 用于校准弹性和塑料材料的模拟和预测新颖的非标准标本在新颖的非标准标本中的损伤是准静态的,显式。 两种损坏模型都证明能够解决实验观察到的故障路径和相关的负载条件。 本文所述的分析作为第三次杀人区裂缝攻击的一部分。

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