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首页> 外文期刊>Electrochimica Acta >Corrosion behaviour assessment of cast and HIPed Stellite 6 alloy in a chloride-containing environment
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Corrosion behaviour assessment of cast and HIPed Stellite 6 alloy in a chloride-containing environment

机译:含氯化物环境中铸造和HIPed Stellite 6合金的腐蚀行为评估

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摘要

Cobalt-base (Stellite) alloys have seen extensive use in wear environments mainly due to their high strength, corrosion resistance and hardness. Co-base superalloys rely primarily on carbides formed in the Co matrix and at grain boundaries, for their strength and wear resistance. The distribution, size and shape of carbides depend on processing conditions. Currently, the use of Stellite alloys has extended into various industrial sectors (e.g. pulp and paper processing, oil and gas processing, pharmaceuticals, chemical processing) and the need for improved information regarding corrosion of Stellite alloys has increased. It has been recognized that processing changes, which affect the microstructure of Stellite alloys, most affect corrosion resistance. In this work the corrosion behaviour of Stellite 6 alloy in the as-cast and the HIPed consolidated forms is compared and contrasted using DC and AC electrochemical techniques in static saline conditions. The results show that there is a significant difference in the corrosion performance of HIP consolidated Stellite 6 and it is possible to link the corrosion behaviour to the microstructure. The benefits of using HIPing as a manufacturing process for the corrosion performance of Stellite 6 are discussed.
机译:钴基(Stellite)合金由于其高强度,耐腐蚀性和硬度而在磨损环境中得到了广泛的应用。钴基超级合金的强度和耐磨性主要取决于在钴基体和晶界处形成的碳化物。碳化物的分布,大小和形状取决于加工条件。目前,司太立合金的用途已经扩展到各个工业领域(例如,纸浆和造纸加工,石油和天然气加工,制药,化学加工),并且对司太立合金腐蚀的改进信息的需求也在增加。已经认识到,影响Stellite合金微观结构的工艺变化最会影响耐蚀性。在这项工作中,使用DC和AC电化学技术在静态盐碱条件下比较和对比了铸态和HIP固结形式的Stellite 6合金的腐蚀行为。结果表明,HIP固结Stellite 6的腐蚀性能存在显着差异,并且可以将腐蚀行为与微观结构联系起来。讨论了使用HIPing作为Stellite 6腐蚀性能制造工艺的好处。

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