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High temperature corrosion studies of cermet particle reinforced NiCrBSi hardfacings

机译:金属陶瓷颗粒增强NiCrBSi堆焊层的高温腐蚀研究

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摘要

Metal matrix composite hardfacings provide various types of heat and wear resistant products. They are widely used in high temperature aggressive environments due to their excellent high temperature corrosion and wear resistance. In this study, Cr_3C_2-Ni and TiC-NiMo particles were used to reinforce a NiCrBSi matrix in plasma transferred arc welding process. These cermet particle reinforced hardfacings were examined on their oxidation behaviour and high temperature corrosion in different solid salts to optimise the field of application under high temperature conditions. Corrosion behaviour in solid salts is strongly dependent on the corroding anion. Cr_3C_2-Ni reinforced hardfacings behave better in oxidative and sulphate/phosphate environment, while TiC-NiMo hardfacings show better resistance against chlorine and carbonate ions up to 700°C. Additionally, oxidation is no critical exposure for these types of hardfacings.
机译:金属基复合材料表面处理可提供各种类型的耐热和耐磨产品。由于其出色的高温腐蚀和耐磨性,它们被广泛用于高温侵蚀性环境。在这项研究中,Cr_3C_2-Ni和TiC-NiMo颗粒用于在等离子转移弧焊过程中增强NiCrBSi基体。检查了这些金属陶瓷颗粒增强的堆焊层的氧化行为和在不同固体盐中的高温腐蚀,以优化在高温条件下的应用领域。固体盐中的腐蚀行为在很大程度上取决于腐蚀的阴离子。 Cr_3C_2-Ni增强的堆焊层在氧化和硫酸盐/磷酸盐环境中的性能更好,而TiC-NiMo堆焊层在700°C以下的温度下对氯和碳酸盐离子的抵抗力更好。另外,对于这些类型的堆焊层,氧化并不是关键的暴露条件。

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