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Virtual Crystal Approximation of Pd-Ru-Zr System
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National Natural Science Foundation of China (u0837601); Key Project of Yunnan on Applied Fundamental Research (2011FA026); Innovative Team of Yunnan Province based on Sino-Platinum Metals Co., Ltd. Platinum Metals New Contact Materials and Preparation Technology (2012HC027); Innovative Team of Kunming (2012-01-01-A-R-07-0005)

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    Abstract:

    To enhance the wear resistance of CoCrMo alloy used as hip joints for longer service time, the W-DLC (W doped-diamond like carbon) films and Ti-DLC (Ti doped-diamond like carbon) films were prepared by a DC magnetron sputtering method combined with ion source technique. The thickness of the as-prepared films was 1.89 μm. Results show that the coated CoCrMo alloy exhibits higher wear resistance in comparison with uncoated CoCrMo one, and the friction properties of W-DLC coated CoCrMo alloy are better than those of Ti-DLC coated CoCrMo alloy. The wear rates of uncoated CoCrMo, Ti-DLC coated CoCrMo and W-DLC coated CoCrMo are 15.25×10-6, 0.76×10-6, and 0.19×10-6 mm3·m-1·N-1, respectively. Raman spectrum analysis shows that the excellent wear resistance of coated CoCrMo alloys is attributed to the graphitization of the top layer of DLC films during rubbing

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[Hu Jieqiong, Xie Ming, Yang Youcai, Zhang Jiming, Liu Manmen, Chen Yongtai. Virtual Crystal Approximation of Pd-Ru-Zr System[J]. Rare Metal Materials and Engineering,2015,44(12):2976~2981.]
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History
  • Received:December 14,2014
  • Revised:
  • Adopted:
  • Online: August 29,2016
  • Published: December 25,2015