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Microscopic phase-field simulation including elastic strain energy for early precipitation process of Ni-Al alloys with medium Al content

机译:含弹性应变能的微观相场模拟,用于中等Al含量的Ni-Al合金的早期析出过程

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The early precipitation process of Ni-Al alloy was studied on the atomic scale based on the microscopic phase-field kinetic model. We investigated the effect of elastic strain energy on precipitation mechanism and morphological evolution of the alloy. Simulation results show that at the early stage of precipitation, γ' ordered phase presents non-directional and irregular shape during the process of aging, the γ' ordered phases change into the quadrate shape and their orientations become more obvious; at the later stage, the γ' precipitates present quadrate shape with round corner and align along the [100] and [010] directions. The mechanism of early precipitation for Ni-13at. %A1 alloy is the mixed mechanism of non-classical nucleation growth and spinodal decomposition and near to non-classical nucle-ation growth, and the mechanism of early precipitation for Ni-15.8at. % Al alloy is the mixed mechanism of non-classical nucleation growth and spinodal decomposition and near to spinodal decomposition.
机译:基于微观相场动力学模型,以原子尺度研究了Ni-Al合金的早期析出过程。我们研究了弹性应变能对合金析出机理和形态演变的影响。模拟结果表明,在降水的早期,γ'有序相在时效过程中呈现出无方向性和不规则形状,γ'有序相转变为方形,其取向更加明显。在后面的阶段,γ'沉淀呈四边形,呈圆角,并沿[100]和[010]方向排列。 Ni-13at的早期析出机理。 %A1合金是非经典形核生长和旋节线分解以及接近非经典形核生长的混合机制,也是Ni-15.8at早期析出的机制。 %铝合金是非经典形核生长和旋节线分解以及接近旋节线分解的混合机制。

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