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Derivation of Hillert-type 3D grain growth rate model with topological considerations and discussion on its grain size parameter
作者姓名:GuoquanLiu  HaiboYu  XiaovanSong  XianggeQin  ChaoWang
作者单位:[1]MaterialsScienceandEngineeringSchool.UniversityofScienceandTechnologyBeijing.Beijing100083.China [2]SchoolofMaterialsScienceandEngineering.BeijingUniversityofTechnology.Beijing100022.China
摘    要:A Hillert-type three-dimensional grain growth rate model was derived through the grain topology-size correlation model, combined with a topology-dependent grain growth rate equation in three dimensions. It shows clearly that the Hillert-type 3D grain growth rate model may also be described with topology considerations of microstructure. The size parameter bearing in the model is further discussed both according to the derived model and in another approach with the aid of quantitative relationship between the grain size and the integral mean curvature over grain surface. Both approaches successfully demonstrate that, if the concerned grains can be well approximated by a space-filling convex polyhedra in shape, the grain size parameter bearing in the Hillert-type 3D grain growth model should be a parameter proportional to the mean grain tangent radius.

关 键 词:三维粒子生长  理论模型  拓扑学  粒子尺寸参数

Derivation of Hillert-type 3D grain growth rate model with topological considerations and discussion on its grain size parameter
GuoquanLiu HaiboYu XiaovanSong XianggeQin ChaoWang.Derivation of Hillert-type 3D grain growth rate model with topological considerations and discussion on its grain size parameter[J].Journal of University of Science and Technology Beijing,2004,11(3):212-215.
Authors:Guoquan Liu  Haibo Yu  Xiaoyan Song  Xiangge Qin  CHAO WANG
Abstract:A Hillert-type three-dimensional grain growth rate model was derived through the grain topology-size correlation model,combined with a topology-dependent grain growth rate equation in three dimensions. It shows clearly that the Hillert-type 3D grain growth rate model may also be described with topology considerations of microstructure. The size parameter bearing in the model is further discussed both according to the derived model and in another approach with the aid of quantitative relationship between the grain size and the integral mean curvature over grain surface. Both approaches successfully demonstrate that, if the concerned grains can be well approximated by a space-filling convex polyhedra in shape, the grain size parameter bearing in the Hillert-type 3D grain growth model should be a parameter proportional to the mean grain tangent radius.
Keywords:3D grain growth  theoretic model  topology  grain size parameter
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