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Defects Mechanics; Three-Body Problem of Defects Interaction among Crack, Dislocations and Twin Boundary in Magnesium

机译:缺陷力学;镁裂缝,脱位和双边界之间缺陷相互作用的三体问题

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Dynamics and statics of defects interaction among crack, dislocations and twin boundary (TB) observed in magnesium were investigated using molecular dynamics and elasticity with the complex stress functions to clarify the effect of long-range elastic stress field. An atomic model containing a crack parallel to (10-11) TB was gradually elongated under K_I-mode tension by molecular dynamics simulations. Changing the distance between the crack and the TB, four kinds of crack propagation manners were observed, one of which showed the path transition from the crack to the TB itself by shielding effect of piled-up dislocations around the crack tip. The stress intensity factor of the nano-sized crack in bulk is 0.28 MPam~(1/2), which is smaller than that of crack on the TB. The shielding effect due to the piled-up dislocations drastically decreases stress concentration around the crack tip and the stress intensity factor diminishes down to the 0.22, and thus the crack nucleated from the void nucleation and coalescence on the TB was propagated instead. The elastic stress distributions obtained by the superposition of some complex stress functions suggest that the stress field around the crack tip is disturbed by the localized stress due to the TB in the case of crack closest to TB and also by the back stress due to the piled-up dislocations in the case of crack far from TB.
机译:利用分子动力学和弹性地研究了镁中观察到的裂缝,脱位和双边界(TB)之间的缺陷相互作用的动力学和静态,以阐明远程弹性应力场的效果。通过分子动力学模拟在K_I模式张力下逐渐伸长含有平行于(10-11)Tb的原子模型。改变裂缝与Tb之间的距离,观察到四种裂缝传播方式,其中一个通过屏蔽裂纹尖端覆盖位错的屏蔽效果,其中一个裂缝传播方式显示了从裂缝到Tb自身的路径转变。散装中纳米裂缝的应力强度因子为0.28mPam〜(1/2),小于Tb上的裂缝。由于堆积脱位引起的屏蔽效果大大降低了裂纹尖端周围的应力浓度,并且应力强度因子降低至0.22,因此从TB上的空隙成核和聚结核的裂缝进行了繁殖。通过叠加一些复合应力函数获得的弹性应力分布表明裂纹尖端周围的应力场受到由于在最接近Tb的裂缝中的Tb而局部应力而受到干扰,并且由于由于堆积而受到后应力在远离TB的裂缝的情况下的脱位。

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