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首页> 外文期刊>Journal of Materials Science >Effectiveness of Ni-based diffusion barriers in preventing hard zone formation in ferritic steel joints
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Effectiveness of Ni-based diffusion barriers in preventing hard zone formation in ferritic steel joints

机译:镍基扩散阻挡层在防止铁素体钢接头中硬区形成方面的有效性

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A numerical procedure based on finite difference method was used to simulate the formation of ‘hard’ and ‘soft’ zones, in dissimilar weldments of 9Cr–1Mo and 2¼Cr–1Mo steels during high temperature exposure. Kinetic analysis of the calculated diffusion profiles showed that the activation energy for carbon diffusion in Cr–Mo steels is marginally higher than that in Fe–C system. Calculations were extended to incorporate the effect of Ni-based interlayers between 2¼Cr–1Mo and 9Cr–1Mo ferritic steels. The presence of a diffusion barrier was found to reduce the propensity for formation of hard and soft zones, which is related to the interaction parameter Thickness of the interlayer required to suppress the formation of hard zone was optimized by the calculations. Transition joints of ferritic steels with Inconel 182 as the interlayer of thickness close to that predicted by the computations were fabricated and exposed to elevated temperature. Microstructural studies and hardness measurements further confirmed the effectiveness of Ni-based interlayers in preventing hard zone formation.
机译:基于有限差分法的数值程序用于模拟9Cr-1Mo和2¼Cr-1Mo钢在高温下暴露于不同焊件中的“硬”和“软”区的形成。对扩散曲线的动力学分析表明,Cr-Mo钢中碳扩散的活化能略高于Fe-C系统。扩展了计算以纳入2¼Cr-1Mo和9Cr-1Mo铁素体钢之间的镍基中间层的影响。发现扩散阻挡层的存在降低了形成硬区和软区的倾向,这与相互作用参数有关。通过计算优化了抑制硬区形成所需的中间层的厚度。制作了以Inconel 182为中间层的铁素体钢过渡接头,其中间层的厚度接近通过计算得出的厚度,并暴露于高温下。显微组织研究和硬度测量进一步证实了镍基中间层在防止硬区形成方面的有效性。

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