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Crack nucleation from a wedge disclination dipole with shift of rotation axes

机译:从楔形外部偶极子的裂缝成核,旋转轴的换档

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This paper analyzes crack nucleation from a wedge disclination dipole in the presence of a remote stress, accounting for the shift of the rotation axes within the dipole arm of the disclinations. A Zener-Griffith crack is assumed and an energy method is employed for the analysis. A single energy equation determines the equilibrium crack lengths and the crack head opening. Uniaxial and biaxial dipoles are compared: in the former the disclinations share a common rotation axis while in the latter the axes are separate. The results show that stable and unstable cracks can nucleate from the positive disclination of the dipole, but some of them are energetically unfavorable. A uniaxial dipole is stable against crack nucleation when the axis is located away from the positive disclination. Biaxial dipoles are more stable when the rotation axis of each disclination approaches the defect line of the other disclination. If the negative disclinations of a uniaxial dipole and a biaxial dipole have the same axis shift, the critical nucleation stress of the biaxial dipole is larger if its positive disclination shift is more than that of the uniaxial dipole. Stable crack lengths generally increase, while the crack head openings decrease, with the axis shift of the positive disclination. The crack head opening to crack length ratio is of the order of 0.001-0.01, and can be higher if an applied stress is present.
机译:本文在遥控情况存在下,分析了从楔形优化偶极子的裂纹成核,占偶极臂内的旋转轴的偏移的公开。假设ZENER-GRIFFITH裂纹并采用能量法进行分析。单个能量方程确定平衡裂缝长度和裂缝头开口。比较单轴和双轴偶极子:在前者中,在后面的情况下,在后面的情况下,在后面的情况下,轴是分开的。结果表明,稳定且不稳定的裂缝可以从偶极子的阳性优化中成核,但其中一些是充满活力的不利。当轴位于远离阳性优度时,单轴偶极子对裂缝成核稳定。当每个上升的旋转轴接近另一个公开的缺陷线时,双轴偶极子更稳定。如果单轴偶极子和双轴偶极子的负面情况具有相同的轴线偏移,则如果其阳性优化移位大于单轴偶极子的致力致荷的临界成核胁迫越大。稳定的裂缝长度通常增加,而裂缝头开口减小,轴向阳性优化。裂缝头开口以裂纹长度比为0.001-0.01,如果存在施加的应力,则可以更高。

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