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首页> 外文期刊>Steel Research International >Simulation of Solidification Microstructure and Columnar to Equiaxed Transition in Freecutting Steel 9SMn28 based on a CAFE Method
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Simulation of Solidification Microstructure and Columnar to Equiaxed Transition in Freecutting Steel 9SMn28 based on a CAFE Method

机译:基于CAFE方法的易切削钢9SMn28的凝固组织和柱状向等轴转变的模拟。

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The solidification microstructure in 9SMn28 free-cutting steel is simulated by the finite element – cellular automaton (CAFE) method based on the calculation of convection in a casting. The simulation results are consistent with experimental findings; the simulated crystallisation process conforms to the actual situation. The solidification of 9SMn28 alloy is a volume solidification mode under slow cooling condition. The columnar-toequiaxed transition (CET) is also studied in the CAFE model. The mechanism of the CET in the CAFE model is thermal interaction. The CET is not abrupt but occurs gradually, the long columnar grains are first blocked by elongated grains. The grains become more equiaxed as the thermal gradient is decreased with the development of solidification.
机译:9SMn28易切削钢的凝固组织是基于有限元-胞元自动机(CAFE)方法,基于铸件中对流的计算来模拟的。仿真结果与实验结果一致。模拟的结晶过程符合实际情况。 9SMn28合金的凝固是缓慢冷却条件下的体积凝固模式。在CAFE模型中还研究了柱状到等腰过渡(CET)。 CAFE模型中CET的机制是热相互作用。 CET不是突然的,而是逐渐发生的,长柱状晶粒首先被细长晶粒阻塞。随着凝固的发展,随着热梯度的降低,晶粒变得更加等轴。

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