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Constraint effects on plastic crack-tip fields for plane strain mode-I, II and III cracks in non-hardening materials

机译:非硬化材料中平面应变模式I,II和III裂纹对塑性裂纹尖端场的约束效应

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摘要

To explore constraint effects on fully plastic crack-tip fields, analytical solutions are examined for mode-I, II and III loading in non-hardening materials under plane strain conditions. The results reveal that under mode-II and III loading the crack-tip stress fields are unique, and thus can be characterized by a 'single parameter'. Under mode-I loading, however, the crack-tip stress field is non-unique but can be characterized by two sets of solutions or 'two parameters' One set of the solutions is the well-known Prandtl field and the other is a plastic T-stress field. This conclusion corroborates the observation of McClintock (1971) that the slip-line field is non-unique for plane strain tensile cracks. A two term plastic solution which combines the Prandtl field and the plastic T-stress field with two parameters B_1 and B_2 can then characterize the crack-tip stress field of plane strain mode-I crack over the plastic region and quantify the magnitude of crack-tip constraints. These characters are similar to those for hardening materials. Analyses and examples show that the two-term plastic solution can match well with the slip-line field or finite element results over plastic region. Thus the parameters B_1 and B_2 can be used to characterize the constraint level for mode-I finite-sized crack specimens in non-hardening materials under plane strain conditions.
机译:为了探索对全塑性裂纹尖端场的约束效应,研究了在平面应变条件下非硬化材料中模式I,II和III载荷的解析解。结果表明,在II型和III型载荷下,裂纹尖端应力场是唯一的,因此可以用“单个参数”来表征。但是,在模式I载荷下,裂纹尖端应力场不是唯一的,但可以通过两组解或“两个参数”来表征,一组解是众所周知的Prandtl场,另一组是塑性场。 T应力场。这一结论证实了McClintock(1971)的观察结果,即滑移线场对于平面应变拉伸裂纹不是唯一的。然后,将Prandtl场和塑性T应力场与两个参数B_1和B_2结合起来的两阶段塑性解决方案可以表征平面应变模式的裂纹尖端应力场-塑性区域上的I裂纹并量化裂纹的大小-提示约束。这些字符类似于用于硬化材料的字符。分析和算例表明,二元塑性解可以很好地与滑移线场或塑性区域上的有限元结果匹配。因此,参数B_1和B_2可用于表征平面应变条件下非硬化材料中I型有限尺寸裂纹样本的约束水平。

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