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The Role of the Constraint in the Case of Short Cracks

机译:在短裂缝的情况下约束的作用

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摘要

A two-parameter constraint-based fracture mechanics approach is used to explain the effect of the constraint on the apparently anomalous behavior of short fatigue cracks. The different levels of stress constraint are quantified by the T-stress, and microstructurally as well as mechanically short cracks are discussed. Short cracks generally behave more sensitively to the constraint than the long ones. It is shown that in most cases, the existence of short cracks goes hand in hand with an intrinsic loss of the constraint, which contributes to a decrease of their fatigue threshold values and accelerates their growth. In this paper, the above effect is quantified and conclusions concerning the applicability of the fracture mechanics parameters and approaches to the estimation of the residual fatigue life of structures are discussed.
机译:基于两个参数约束的骨折力学方法用于解释限制对短疲劳裂缝显着异常行为的影响。通过T应力量化不同水平的应力约束,并且讨论了微观结构以及机械短裂缝。短裂缝通常表现得比长长的裂缝更敏感。结果表明,在大多数情况下,短裂缝的存在与约束的内在损失丧失,这有助于减少其疲劳阈值并加速其生长。本文讨论了上述效果,讨论了骨折力学参数的适用性以及估计结构残余疲劳寿命的方法的结论。

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