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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Experimental Investigation and Computer Simulation of Diffusion in Fe-Mo and Fe-Mn-Mo Alloys with Different Optimization Methods
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Experimental Investigation and Computer Simulation of Diffusion in Fe-Mo and Fe-Mn-Mo Alloys with Different Optimization Methods

机译:不同优化方法的Fe-Mo和Fe-Mn-Mo合金扩散的实验研究和计算机模拟

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In order to simulate the diffusional phase transformations involving the fcc and bcc phases for microalloyed steels, the diffusion mobilities for fcc and bcc Fe-Mo and Fe-Mn-Mo alloys were experimentally investigated and critically assessed. The diffusion-couple technique was employed to extract the interdiffusion coefficients in Fe-Mo and Fe-Mn-Mo alloys with the Sauer-Freise and Whittle-Green methods. Based on the present experimental interdiffsivities, the mobility parameters for the fcc and bcc phases in the Fe-Mo and Fe-Mn-Mo systems were optimized using the traditional method. Simultaneously, a direct method was developed and utilized to directly fit mobilities to the diffusion profiles rather than the diffusivities in the present work. The satisfactory description of the diffusion behavior in the Fe-Mo and Fe-Mn-Mo systems has confirmed the reliability of the direct method. Particularly, the two sets of diffusion mobilities obtained with both methods could simulate the diffusion phenomenon between the fcc and bcc phases in the Fe-Mo and Fe-Mn-Mo systems successfully. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:为了模拟涉及微合金钢的FCC和BCC相的扩散相转化,对FCC和BCC Fe-Mo和Fe-Mn-Mo合金的扩散迁移率进行了实验研究并重要地评估。采用扩散耦合技术用德罗德和薄绿方法提取Fe-Mo和Fe-Mn-Mo合金中的相互扩散系数。基于本发明的实验性间隔性,使用传统方法优化FE-MO和Fe-Mn-Mo系统中FCC和BCC相的迁移率参数。同时,开发了直接方法并利用以直接适合扩散轮廓而不是目前工作中的扩散性。 Fe-Mo和Fe-Mn-Mo系统中扩散行为的令人满意的描述证实了直接方法的可靠性。特别地,通过两种方法获得的两组扩散迁移率可以成功地模拟FCC和Fe-Mn-Mo系统中FCC和BCC相之间的扩散现象。 (c)2016年矿物质,金属和材料协会和ASM国际

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