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首页> 外文期刊>Engineering Fracture Mechanics >Experiments and numerical simulations with the H-specimen on damage and fracture of ductile metals under non-proportional loading paths
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Experiments and numerical simulations with the H-specimen on damage and fracture of ductile metals under non-proportional loading paths

机译:非比例负荷径下延展性金属损伤和骨折的实验与数值模拟

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The paper deals with a series of new experiments and corresponding numerical simulations to study the effect of non-proportional loading paths on damage and fracture behavior of ductile metals. In this context, a thermodynamically consistent anisotropic continuum damage model is presented. It takes into account the effect of stress state on damage conditions as well as on evolution equations of damage strains. Different branches of the respective criteria are considered corresponding to various ductile damage and fracture mechanisms depending on stress state. New experiments with the two-dimensionally loaded H-specimen have been developed covering a wide range of stress triaxialities and Lode parameters in the tension, shear and compression domains. These tests are driven under different non-proportional loading paths. Formation of strain fields in critical regions of the specimens is recorded by digital image correlation technique. In addition, scanning electron microscope analysis of the fracture surfaces clearly shows various failure modes corresponding to these loading conditions. Furthermore, results of corresponding numerical simulations are discussed showing good agreement with available experimental data and are used to reveal stress states in critical specimens areas leading to different fracture modes.
机译:本文涉及一系列新的实验和相应的数值模拟,以研究非比例载入路径对韧性金属损伤和断裂行为的影响。在这种情况下,提出了一种热力学一致的各向异性连续体损伤模型。它考虑了应力状态对损伤条件的影响以及损伤菌株的演化方程。根据应力状态,认为各自标准的不同分支对应于各种延性损伤和断裂机制。已经开发了具有二维负载H-PEPLIDEN的新实验,涵盖了张力,剪切和压缩域中的各种应力三轴和仪表参数。这些测试在不同的非比例加载路径下驱动。通过数字图像相关技术记录标本临界区域中的应变场的形成。此外,裂缝表面的扫描电子显微镜分析清楚地显示了与这些负载条件相对应的各种故障模式。此外,讨论了相应的数值模拟的结果,显示了与可用的实验数据的良好一致性,并且用于揭示导致不同骨折模式的关键标本区域中的应力状态。

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