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MAEAM investigation of the structural stability and theoretical strength of Fe crystals under uniaxial loading

机译:MAEAM研究单轴载荷下Fe晶体的结构稳定性和理论强度

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The structural stability and theoretical strength of BCC crystal Fe under uniaxial loading have been investigated with the modified analytic embedded-atom method (MAEAM). Even if an orthorhombic path is applied, the deformation is spontaneous along the tetragonal path till Milstein modified Born criterion B-22-B-23>0 is violated at lambda(1)=0.9064 in the cornpressive region. The branched orthogonal path with lower compressive stress sigma(1) and energy E is preferred over the conventional tetragonal Bain path. A stress-free FCC phase with the local maximum energy of -4.2186eV appearing either in compressive region (orthorhombic path) at lambda(1)=0.8923 or in tensile region (tetragonal path) at) lambda(1)=1.2619 is unstable and would slip spontaneously into its near neighbor stress-free mBCT phase with the local minimum energy of -4.227OeV. The initial BCC phase with the lowest energy of 4.280eV is the most stable in correspondence with the actual behavior of Fe. Furthermore, the stable region ranges from -79.7eVm(3) to 30.6eVm(3) in the theoretical strength or from 0.9064 to 1.1788 in the stretch lambda(1) correspondingly. (C) 2008 WILEY-VCH Verlag GmbH & Co. KGaA. Weinheim.
机译:用改进的解析嵌入原子法(MAEAM)研究了BCC晶体Fe在单轴载荷下的结构稳定性和理论强度。即使应用正交斜面路径,变形也会沿四边形路径自发地发生,直到在压轴区域的lambda(1)= 0.9064处违反Milstein修改的Born准则B-22-B-23> 0为止。具有较低压缩应力sigma(1)和能量E的分支正交路径比常规四边形贝恩路径更可取。局部最大能量为-4.2186eV的无应力FCC相要么出现在lambda(1)= 0.8923的压缩区域(斜方波路径),要么出现在lambda(1)= 1.2619的拉伸区域(四边形路径),并且不稳定并且会自发地滑入其附近的无应力mBCT相,其局部最小能量为-4.227OeV。最低能量为4.280eV的初始BCC相与Fe的实际行为相对最稳定。此外,稳定区域的理论强度范围从-79.7eV / nm(3)到30.6eV / nm(3)或拉伸lambda(1)的范围从0.9064到1.1788。 (C)2008 WILEY-VCH Verlag GmbH&Co. KGaA。温海姆。

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