首页> 外文会议>International Conference on Solidification Science and Processing: Outlook for the 21st Century, Feb 18-21, 2001, Bangalore, India >A Model for the Multi-nodule Eutectic Grain Microstructure Evolution in Spheroidal Graphite Iron
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A Model for the Multi-nodule Eutectic Grain Microstructure Evolution in Spheroidal Graphite Iron

机译:球墨铸铁中多根共晶晶粒组织演变的模型

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Deterministic and stochastic models that attempt to describe the solidification of spheroidal graphite (SG) iron are based on carbon diffusion calculation within a spherical aggregate made of one graphite spheroid and a surrounding austenite shell. However, experimental observations demonstrate that the eutectic structure of SG iron includes primary austenite dendrites as well as eutectic dendrites containing several nodules. The paper presents a new stochastic model that generates realistic calculated microstructures of the multi-nodule eutectic grains of SG iron. Deterministic laws are implemented with cellular automaton (CA) rules. Nucleation is assumed random and independent for graphite and austenite grains, but the growth of the nodules is closely related to the austenite growth through a stochastic process that defines the position of the nodules.
机译:试图描述球墨铸铁(SG)凝固的确定性和随机模型基于碳扩散计算,该计算是由一个石墨球体和周围的奥氏体壳组成的球状骨料进行的。然而,实验观察表明,SG铁的共晶结构包括原始奥氏体树枝状晶体以及包含多个根瘤的共晶树枝状晶体。本文提出了一种新的随机模型,该模型生成了SG铁的多根共晶晶粒的实际计算微观结构。确定性定律是通过元胞自动机(CA)规则实现的。假定石墨和奥氏体晶粒的成核是随机的和独立的,但是结核的生长与奥氏体的生长通过确定结核位置的随机过程密切相关。

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