Bollada P C, Jimack P K, Mullis A M
School of Computing, University of Leeds, Leeds, UK.
School of Chemical and Process Engineering, University of Leeds, Leeds, UK.
Sci Rep. 2023 Aug 3;13(1):12637. doi: 10.1038/s41598-023-38741-2.
Here we use phase field to model and simulate "hopper" crystals, so named because of their underlying cubic structure but with a hopper-like depression on each of the six faces. Over the past three decades simulations of single phase solidification have successfully explored dendritic structures, in two and three dimensions, formed under high undercooling from a slight perturbation in anisotropy. More recently we see the modelling of faceted structures at near equilibrium, and also, under high undercooling, the formation of dendritic-like structures in two dimensions which retain some faceting in the dendrite arms. A cubic hopper crystal appears to be a hybrid structure, somewhere between a perfect cube and a dendrite, and, to date, has not appeared in the modelling literature. In this paper we describe a model for faceted cubic growth and explore results, necessarily in three dimensions, that include perfect cube, hopper and dendritic. We also touch briefly on one other morphology-octahedral.
在此,我们使用相场对“漏斗”晶体进行建模和模拟,因其具有潜在的立方结构,但在六个面上各有一个类似漏斗的凹陷而得名。在过去三十年中,单相凝固模拟成功探索了在高过冷度下由各向异性的轻微扰动形成的二维和三维树枝状结构。最近,我们看到了近平衡状态下多面体结构的建模,以及在高过冷度下二维类似树枝状结构的形成,这些结构在树枝状晶臂中保留了一些多面体特征。立方漏斗晶体似乎是一种介于完美立方体和树枝状晶体之间的混合结构,迄今为止,尚未出现在建模文献中。在本文中,我们描述了一种多面体立方生长模型,并探索了必然是三维的结果,包括完美立方体、漏斗状和树枝状。我们还简要提及了另一种形态——八面体。