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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Stable Eutectoid Transformation in Nodular Cast Iron: Modeling and Validation
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Stable Eutectoid Transformation in Nodular Cast Iron: Modeling and Validation

机译:结节铸铁稳定的共析液转化:建模与验证

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This paper presents a new microstructural model of the stable eutectoid transformation in a spheroidal cast iron. The model takes into account the nucleation and growth of ferrite grains and the growth of graphite spheroids. Different laws are assumed for the growth of both phases during and below the intercritical stable eutectoid. At a microstructural level, the initial conditions for the phase transformations are obtained from the microstructural simulation of solidification of the material, which considers the divorced eutectic and the subsequent growth of graphite spheroids up to the initiation of the stable eutectoid transformation. The temperature field is obtained by solving the energy equation by means of finite elements. The microstructural (phase change) and macrostructural (energy balance) models are coupled by a sequential multiscale procedure. Experimental validation of the model is achieved by comparison with measured values of fractions and radius of 2D view of ferrite grains. Agreement with such experiments indicates that the present model is capable of predicting ferrite phase fraction and grain size with reasonable accuracy. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:本文呈现的球墨铸铁稳定共析转变的一个新的微观结构模型。该模型考虑到成核和铁素体晶粒的生长和石墨球状体的生长。不同的法律被假定为两个阶段的过程中和下面的双相共析稳定增长。在一个微结构的水平,从材料,它参考离异共晶与石墨的球状体的后续生长到稳定共析转变的开始的凝固的微观结构的模拟获得的相变的初始条件。温度场是通过有限元法求解能量方程获得。微观结构(相变化)和宏观结构(能量平衡)模型是由一个连续的多尺度方法偶联。该模型的实验验证是通过用组分和铁素体晶粒的二维视图的半径的测量值进行比较来实现的。与这样的实验协议表明本模型能够预测铁素体相分数和粒度以合理的精度的。 (c)2016年矿物质,金属和材料协会和ASM国际

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