4.7 Article

Tribological and corrosion behaviors of Mg56.5Cu27Ag5Dy11.5 bulk metallic glass in NaCl solution

期刊

JOURNAL OF NON-CRYSTALLINE SOLIDS
卷 459, 期 -, 页码 36-44

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jnoncrysol.2016.12.031

关键词

Mg-based alloys; Bulk metallic glass; Tribological behavior; Corrosion resistance; Corrosive wear

资金

  1. National Natural Science Foundation of China [51401053]
  2. China Postdoctoral Science Foundation [2015T80676]
  3. Natural Science Foundation of Fujian Province [2014J05053]
  4. Department of Science and Technology of Fujian Province [2014H0009]
  5. Foundation for Distinguished Young Talents in Higher Education of Fujian Province [GY-Z15090]
  6. Postdoctoral Scientific Research Foundation of Fuzhou University [0180-601017]

向作者/读者索取更多资源

In this study, the tribological behaviors of Mg56.5Cu27Ag5Dy11.5 bulk metallic glass (BMG) in air and NaCI solution were investigated using ball-on-disk reciprocating friction. The Mg56.5Cu27Ag5Dy11.5 BMG exhibits higher strength and hardness than those of commercial AZ31B alloy and pure Mg. The wear rate of the Mg56.5Cu27Ag5Dy11.5 in air is 3.8 x 10(-7) mm(3). mm(-1) . N-1, which is superior to those of AZ31B alloy (7.3 x 10(-7) mm(3). mm(-1). N-1) and pure Mg (6.5 x mm(3) . mm(-1) . N-1). The wear mechanism of Mg56.5Cu27Ag5Dy11.5, AZ31 B, and pure Mg sliding in air is dominated by oxidation and abrasive wear. The wear rates of alloys in NaCI decrease in the following order: 8.3 x 10(-7) mm(3). mm(-1). N-1 for pure Mg, 6.3 x mm(3) . mm(-1) . N-1 for AZ31B, and 5.4 x mm(3) . mm(-1) . N-1 for Mg56.5Cu27Ag5Dy11.5. The Mg56.5Cu27Ag5Dy11.5 and pure Mg demonstrate inferior corrosion resistance in NaCI to that of AZ31B. Thus, the Mg56.5Cu27Ag5Dy11.5 and pure Mg subject to tribocorrosion controlled by synergistic effects of abrasive and corrosive wear, which results in a large wear rate during sliding in NaCI. The possible mechanism of corrosion accelerating wear deterioration is discussed, which provides the guidance for the improvement in the tribocorrosion resistance of Mg-based BMGs for further load-bearing applications. 2016 Elsevier B.V. All rights reserved.

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