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A numerical model to assess the role of crack-tip hydrostatic stress and plastic deformation in environmental-assisted fatigue cracking

机译:评估裂纹液压静压应力和塑性变形在环保辅助疲劳裂缝中作用的数值模型

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摘要

To better understand the mechanics of environmentally assisted cracking, and particularly hydrogen embrittlement, a correct description of the hydrostatic stress field is indispensable. The concentration of hydrogen in the proximity of the crack tip is indeed dependent of the hydrostatic stress effect on the microstructural lattice of the material. The overall parameters of the hydrostatic stress, including peak value, its location, gradient, and distribution size are fundamental to assess the effect on hydrogen distribution near the crack tip, specifically considering hydrogen-enhanced decohesion mechanism, or the HEDE mechanism. Hydrostatic stress is hence widely analysed in studies related to hydrogen embrittlement contribution in stress corrosion cracking or corrosion fatigue of metallic alloys. However, recent studies highlighted that the hydrogen-enhanced local plasticity (HELP) mechanism can be more relevant than HEDE in hydrogen-assisted fatigue failure of metallic alloys. In order to investigate the contribution of the HELP mechanism, detailed finite element modelling is reported for notched Ti-6Al-4V specimens, based on experimental fatigue data. The material is modelled with elastic-perfectly plastic behaviour, reproducing actual geometry of the notches and the fatigue crack, from measurements and replicas conducted during testing. Strain data are obtained in initial and final crack configuration, to discuss the HELP contribution on environmentally assisted cracking, and compare it with HEDE contribution linked to hydrostatic stress.
机译:为了更好地理解环保裂缝的机制,特别是氢脆的机制,静压应力场的正确描述是不可或缺的。裂纹尖端接近氢的浓度确实依赖于对材料的微观结构晶格的静压应力影响。静水压应力的总体参数,包括峰值,其位置,梯度和分布尺寸是评估裂纹尖端附近的氢分布的影响,特别是考虑氢增强的脱粘机制,或塞德机制。因此,在与金属合金的应力腐蚀开裂或腐蚀疲劳相关的氢脆贡献相关的研究中,静水胁迫受到广泛分析。然而,最近的研究突出显示氢增强的局部可塑性(帮助)机制可以比金属合金的氢辅助疲劳失效的寄生剂更加相关。为了研究帮助机制的贡献,基于实验疲劳数据,报告了缺口Ti-6Al-4V样本的详细有限元建模。该材料以弹性 - 完美的塑性行为为模型,从测试期间进行的测量和复制品再现凹口的实际几何形状和疲劳裂缝。在初始和最终的裂纹配置中获得应变数据,讨论对环境辅助开裂的帮助贡献,并将其与与静液压应力相关的塞培贡献进行比较。

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