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Role of carbon and nitrogen in the improvement of corrosion resistance of new powder metallurgy Co-Cr-Mo alloys

机译:碳和氮在新型粉末冶金CO-CR-MO合金耐腐蚀性中的作用

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摘要

Microstructural changes that result in relevant improvements in mechanical properties and electrochemical behavior can be induced using different sintering conditions of ASTM F75 cobalt alloys during their processing using powder metallurgy technique. It has been observed that the increase in carbon and nitrogen content improves corrosion resistance and mechanical properties as long as the precipitation of carbides and nitrides is avoided, thanks to the use of rapid cooling in water after the sintering stage. In addition, the reduction of the particle size of the powder improves hardness and resistance to corrosion in both acid medium with chlorides and phosphate-buffered medium that simulates the physiological conditions for its use as a biomaterial. These results lead to increased knowledge of the role of carbon and nitrogen content in the behavior displayed by the different alloys studied.
机译:在使用粉末冶金技术期间使用ASTM F75钴合金的不同烧结条件可以诱导导致机械性能和电化学行为相关改善的微观结构变化。 已经观察到,由于在烧结阶段之后的水中避免碳化物和氮化物的沉淀,碳和氮含量的增加提高了耐腐蚀性和机械性能。 此外,粉末的粒度的降低可提高酸介质中的硬度和耐腐蚀,其中氯化物和磷酸盐缓冲介质模拟其用作生物材料的生理条件。 这些结果导致增加了所研究的不同合金显示的碳和氮含量的作用的知识。

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