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The Sandia Fracture Challenge: How Ductile Failure Predictions Fare

机译:桑迪亚骨折挑战:韧性失效预测如何

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The Sandia Fracture Challenges provide the mechanics community a forum for assessing its ability to predict ductile fracture through a blind, round-robin format where computationalists are asked to predict the deformation and failure of an arbitrary geometry given experimental calibration data. This presentation will cover the three Sandia Fracture Challenges, with emphasis on the third. The third Challenge, issued in 2017, consisted of an additively manufactured 316L stainless steel tensile bar with through holes and internal cavities that could not have been conventionally machined. The volunteer prediction teams were provided extensive materials data from tensile tests of specimens printed on the same build tray to electron backscatter diffraction microstructural maps and micro-computed tomography scans of the Challenge geometry. The teams were asked a variety of questions, including predictions of variability in the resulting fracture response, as the basis for assessment of their predictive capabilities. This presentation will describe the Challenges and compare the experimental results to the predictions, identifying gaps in capabilities, both experimentally and computationally, to inform future investments. The Sandia Fracture Challenge has evolved into the Structural Reliability Partnership, where researchers will create several blind challenges covering a wider variety of topics in structural reliability. This presentation will also describe this new venture.
机译:桑迪亚骨折挑战提供了机械社区,提供了通过盲目的循环格式来评估其预测延展性的能力的论点,其中要求计算者被要求预测给定实验校准数据的任意几何形状的变形和故障。本演示文稿将涵盖三个桑迪亚骨折挑战,重点是第三个裂缝挑战。 2017年发布的第三次挑战包括一种带有储孔和内腔的加孔和内腔的加剧制造的316L不锈钢拉伸棒。志愿者预测团队提供了广泛的材料数据,这些数据从印在同一构建托盘上印刷到电子反向散射微观结构图和挑战几何形状的微计算断层扫描扫描。这些团队被问到各种问题,包括导致裂缝反应中变异性的预测,作为评估其预测能力的基础。此演示文稿将描述挑战,并将实验结果与实验和计算的能力识别出现差距,以告知未来的投资。桑迪亚骨折攻击已经发展成为结构可靠性伙伴关系,研究人员将创造几种盲目挑战,涵盖结构可靠性更广泛的主题。此演示文稿还将描述这一新的创业。

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