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Effects of plastic anisotropy on crack-tip behaviour

机译:塑性各向异性对裂纹尖端行为的影响

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For a crack in a homogeneous material the effect of plastic anisotropy on crack-tip blunting and on the near-tip stress and strain fields is analyzed numerically. The full finite strain analyses are carried out for plane strain under small scale yielding conditions, with purely symmetric mode I loading remote from the crack-tip. In cases where the principal axes of the anisotropy are inclined to the plane of the crack it is found that the plastic zones as well as the stress and strain fields just around the blunted tip of the crack become non-symmetric. In these cases the peak strain on the blunted tip occurs off the center line of the crack, thus indicating that the crack may want to grow in a different direction. When the anisotropic axes are parallel to the crack symmetry is retained, but the plastic zones and the near-tip fields still differ from those predicted by standard isotropic plasticity.
机译:对于均质材料中的裂纹,数值分析了塑性各向异性对裂纹尖端钝化以及近尖端应力和应变场的影响。在小规模屈服条件下对平面应变进行了完全有限应变分析,其中纯对称模式I的载荷远离裂纹尖端。在各向异性的主轴相对于裂纹平面倾斜的情况下,发现塑性区以及恰好在裂纹钝尖端周围的应力场和应变场变得不对称。在这些情况下,钝头上的峰值应变出现在裂纹的中心线之外,因此表明裂纹可能希望沿不同的方向生长。当各向异性轴平行于裂纹时,对称性得以保留,但塑性区和近尖端场仍与标准各向同性可塑性所预测的不同。

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