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Evaluation of concentration dependant diffusion coefficients of carbon in a dissimilar joint of ferritic steels

机译:铁素体钢异种接头中碳的浓度依赖性扩散系数的评估

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摘要

When dissimilar weldments between 9Cr-1Mo and 2¼Cr-1Mo ferritic steels are exposed to high temperature, microstructural and microchemical modifications are observed near the weld interface. Diffusion of carbon driven by the activity gradient from low Cr to high Cr steel leads to the formation of carbon enriched ‘hard’ zone and carbon depleted ‘soft’ zone near the fusion joint. The present paper deals with the measurement of carbon diffusion profiles and the evaluation of concentration dependent diffusion coefficients of carbon across the interface at a temperature of 1023 K. Accurate carbon concentration profiles are generated using carbon calibration graph. The profiles are smoothened to reduce the experimental scatter and the concentration dependant diffusion coefficients are determined using Den Broeder’s method. In the base materials, where the concentration gradient is extremely small, D(c) values are determined using Hall’s method. Variation in D(c) across the weld interface is understood based on the microstructural and microchemical changes that take place during heat treatment.
机译:当9Cr-1Mo和2¼Cr-1Mo铁素体钢之间的不同焊件暴露在高温下时,在焊缝界面附近会观察到显微组织和微化学变化。从低铬钢到高铬钢的活性梯度驱动的碳扩散导致在熔合点附近形成富碳的“硬”区和贫碳的“软”区。本文研究了碳扩散曲线的测量以及在1023 K的温度下碳在界面上的浓度依赖性扩散系数的评估。使用碳校正图可生成准确的碳浓度曲线。轮廓被平滑化以减少实验散射,并且使用Den Broeder的方法确定浓度依赖的扩散系数。在浓度梯度极小的基础材料中,使用霍尔法确定D(c)值。基于热处理过程中发生的微观结构和微观化学变化,可以理解整个焊接界面的D(c)变化。

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