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Bulk and intergranular fracture behaviour of NiAl

机译:NiAl的块状和晶间断裂行为

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We present atomistic simulations of the crack tip configuration in single crystals and bicrystals of B2 NiAl. The simulations were carried out using molecular statics and embedded-atom potentials. The cracks are stabilized near a Griffith condition and the process of dislocation emission from the crack tip was studied. The behaviour of a semi-infinite crack was studied under mode I loading for different crack tip geometries. While [001](110) and [1(1) over bar 0](110) mode I cracks cleave near the Griffith value of loading, dislocation emission is observed from [010](100) and [01(1) over bar](100) crack tips. Dislocations emitted from the [01(1) over bar](100) crack are observed to move far away from the tip. However, the dislocations emitted from the [010](100) crack are observed to be considerably less mobile and they remain in the immediate vicinity of the crack tip after emission. The results indicate that for some orientations the fracture process in NiAl has dislocation emission characteristics typical of ductile fracture. The atomistic configurations of the tip region are different in the presence of a large-angle grain boundary from in the bulk. Different symmetrical lilt grain boundaries were studied corresponding to different orientations and local compositions. It was found that, in ordered NiAl, cracks along symmetrical tilt boundaries show a more brittle behaviour for Al-rich boundaries than for Ni-rich boundaries. The fracture process occurs as a combination of dislocation emission and microcleavage portions that are controlled by the local atomistic structure of the grain boundary. [References: 40]
机译:我们介绍了B2 NiAl单晶和双晶中裂纹尖端构型的原子模拟。使用分子静力学和嵌入原子势进行了模拟。裂纹在格里菲斯条件附近稳定,并研究了裂纹尖端错位释放的过程。对于不同的裂纹尖端几何形状,研究了在模式I载荷下半无限裂纹的行为。当[001](110)和[1(1)在条形0](110)模式下开裂时,在载荷的格里菲斯值附近裂开,但从[010](100)和[01(1)在条形上观察到位错发射](100)破解技巧。观察到[01(1)over bar](100)裂纹产生的位错远离尖端。但是,观察到从[010](100)裂纹发射出的位错的活动性大大降低,并且在发射后仍保留在裂纹尖端的附近。结果表明,在某些取向下,NiAl的断裂过程具有韧性断裂典型的位错发射特征。尖端区域的原子构型在存在大角度晶界时与本体中不同。研究了对应于不同取向和局部组成的不同对称的小扁豆晶界。发现在有序的NiAl中,沿对称倾斜边界的裂纹对Al富集的边界比Ni对富集的边界表现出更脆的行为。断裂过程是由晶界的局部原子结构控制的位错发射和微裂隙部分的结合而发生的。 [参考:40]

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