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Particle curvature effects on microstructural evolution during solid-state sintering: phenomenological insights from phase-field simulations

机译:固态烧结过程中微观结构演化的颗粒曲率效应:相场模拟的现象学知识

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摘要

Local curvatures have a profound influence on sintered microstructure. Here, using phase-field simulations, particle curvature effects were phenomenologically investigated by using geometrical configurations of two, three, and four particles, and by systematically varying particle curvatures. Some geometries, involving two, three and four particles, exhibited the expected smooth neck-length evolution, where the maximum neck length was determined by grain boundary (GB) energy (gamma(GB)) rather than surface energy (gamma(S)). In contrast, triangular arrangement of particles with unequal radii manifested a secondary necking event in form of a step during neck evolution. The secondary necking event coincided with internal pore collapse, and only specific range of particle radius ratios manifested such a mechanism. gamma(S) played a dominant role in triggering the secondary necking event, while gamma(GB) determined the remnant microstructure. Broadly, the geometries employed here allow us to computationally examine the sintering of particles that display wide variation in shapes and size distributions.
机译:局部曲率对烧结微观结构有着深远的影响。在这里,通过相场模拟,通过使用两个、三个和四个粒子的几何构型,以及系统地改变粒子曲率,从现象学角度研究了粒子曲率效应。一些涉及两个、三个和四个粒子的几何形状显示出预期的平滑颈部长度演化,其中最大颈部长度由晶界(GB)能量(gamma(GB))而不是表面能(gamma(S))决定。相比之下,具有不等半径的三角形排列的粒子在颈部演化过程中以台阶的形式表现出二次颈缩事件。二次颈缩事件与内部孔隙坍塌相吻合,只有特定范围的颗粒半径比表现出这种机制。γ(S)在触发二次颈缩事件中起主导作用,而γ(GB)决定了残余微观结构。大体上,这里采用的几何结构允许我们通过计算检查在形状和尺寸分布上有很大变化的颗粒的烧结。

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