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Biaxial experiments on characterization of stress-state-dependent damage in ductile metals

机译:双轴实验对延性金属应激状态依赖性损伤的表征

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The paper discusses new biaxial experiments to characterize stress-state-dependent damage and fracture processes in ductile metals on different scales. To motivate the experimental program a phenomenological continuum damage model is presented demonstrating the need of experiments covering a wide range of stress states and loading histories. Biaxial experiments with the X0-specimen taken from thin metal sheets tested under different load ratios are discussed with focus on proportional and corresponding non-proportional loading paths. During the tests strain fields on the surfaces of critical regions of the specimen are monitored by digital image correlation technique elucidating formation of localized strain bands leading to damage and failure. After the experiments fracture surfaces are examined by scanning electron microscopy revealing different damage and fracture process on the micro-scale depending on the stress states and the loading histories.
机译:本文讨论了新的双轴实验,以表征不同尺度的延性金属中的应激状态依赖性损伤和断裂过程。 为了激励实验程序,提出了一种现象学连续损伤模型,证明了需要覆盖各种应力状态和装载历史的实验。 用在不同载荷比下测试的薄金属板采取的X0样本的双轴实验以比例和相应的非比例负载路径为重点。 在测试期间,通过阐明形成导致损坏和失败的局部应变带的形成,通过数字图像相关技术监测样本的关键区域的表面上的应变场。 通过扫描电子显微镜检查裂缝表面,根据应力状态和装载历史,扫描电子显微镜露出不同损伤和断裂过程。

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