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Notch sensitivity of orthotropic solids: interaction of tensile and shear damage zones

机译:正交固体的缺口敏感性:拉伸和剪切损伤区的相互作用

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The macroscopic tensile strength of a panel containing a centre-crack or a centre-hole is predicted, assuming the simultaneous activation of multiple cohesive zones. The panel is made from an orthotropic elastic solid, and the stress raiser has both a tensile cohesive zone ahead of its tip, and shear cohesive zones in an orthogonal direction in order to represent two simultaneous damage mechanisms. These cohesive zones allow for two modes of fracture: (i) crack extension by penetration, and (ii) splitting in an orthogonal direction. The sensitivity of macroscopic tensile strength and failure mode to the degree of orthotropy is explored. The role of notch acuity and notch size are assessed by comparing the response of the pre-crack to that of the circular hole. This study reveals the role of the relative strength and relative toughness of competing damage modes in dictating the macroscopic strength of a notched panel made from an orthotropic elastic solid. Universal failure mechanism maps are constructed for the pre-crack and hole for a wide range of material orthotropies. The maps are useful for predicting whether failure is by penetration or kinking. Case studies are developed to compare the predictions with observations taken from the literature for selected orthotropic solids. It is found that synergistic strengthening occurs: when failure is by crack penetration ahead of the stress raiser, the presence of shear plastic zones leads to an enhancement of macroscopic strength. In contrast, when failure is by crack kinking, the presence of a tensile plastic zone ahead of the stress raiser has only a mild effect upon the macroscopic strength.
机译:假设多个粘性区域的同时激活,预测含有中心裂纹或中心孔的面板的宏观拉伸强度。该面板由正交弹性固体制成,应力提升器在其尖端前方具有拉伸粘性区域,并且在正交方向上剪切粘性区域,以表示两个同时损坏机制。这些粘性区域允许两种裂缝:(i)通过穿透的裂缝延伸,(ii)在正交方向上分裂。探讨了宏观拉伸强度和失效模式对正交性程度的敏感性。通过将前裂纹的响应与圆形孔的响应进行比较来评估口头敏感和凹口尺寸的作用。本研究揭示了竞争损伤模式的相对强度和相对韧性的作用在列出由正转向弹性固体制成的凹陷面板的宏观强度。构建通用故障机制图,用于各种材料的预裂纹和孔。地图对于预测失效是通过穿透或扭结的有用。开发了案例研究以将预测与选定的正交固体的文献中取出的观察结果进行比较。发现发生协同强化:当故障是通过裂缝泄压的裂缝,剪切塑料区的存在导致宏观强度的增强。相反,当失败是通过裂缝扭结时,在应力提升器前面的拉伸塑料区的存在在宏观强度上仅具有轻微的影响。

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