Chromium Deposition on Cobalt-Based Alloys by Pack-Cementation and Behaviour of the Coated Alloys in High Temperature Oxidation

G. Michel, P. Berthod, S. Mathieu, M. Vilasi, P. Steinmetz
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引用次数: 4

Abstract

Two TaC-strengthened cobalt-based alloys, with compositions Co-10Cr-0.25C-4.4Ta and Co-10Cr-0.5C-8.7Ta (wt.%) underwent Cr-deposition by pack-cementation, followed by heat-treatment to allow Cr diffusing deeper in their sub-surface. Thereafter they were tested for 50 hours at 1200°C in a thermobalance. These alloys were successfully enriched in chromium, with a maximal content on surface of about 30wt.% and a depth of enrichment of several hundreds of micrometers. This allowed a chromia-forming behavior of the cemented alloys despite the 10wt.%Cr of the bulk. This was especially true for the {C,Ta}-richest alloy the oxidation kinetic of which was wholly parabolic and analogous to a Ni-30Cr alloy known for its good behavior in oxidation at 1200°C. The parabolic constants and chromia-volatilization constants were at the same levels of the Ni-30Cr ones. However, the chromium enrichment step, especially the diffusion heat-treatment following the cementation, causes fragmentation and surface fraction reduction of the tantalum carbides which strengthen the alloy.
铬在钴基合金上的包埋沉积及其高温氧化行为
两种成分分别为Co-10Cr-0.25C-4.4Ta和Co-10Cr-0.5C-8.7Ta (wt.%)的tac强化钴基合金采用包埋胶结法沉积Cr,然后进行热处理,使Cr在其亚表面扩散更深。然后在1200°C的热天平中测试50小时。这些合金成功地富集了铬,表面最大含量约为30wt。浓缩深度可达几百微米。这允许合金在10wt下仍有铬形成行为。体积的%Cr。这对于{C,Ta}最丰富的合金尤其正确,其氧化动力学完全是抛物线型的,类似于在1200°C下具有良好氧化行为的Ni-30Cr合金。抛物常数和铬挥发常数与Ni-30Cr相同。然而,铬富集步骤,特别是渗碳后的扩散热处理,会导致碳化钽的破碎和表面分数的降低,从而增强合金。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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