4.7 Article

Tribological properties of Ti3SiC2 coupled with different counterfaces

Journal

CERAMICS INTERNATIONAL
Volume 41, Issue 5, Pages 6950-6955

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2015.01.150

Keywords

Friction; Ti3SiC2; Counterface; Wear

Funding

  1. National Natural Science Foundation of China [51205111, 51305226, 51472075]
  2. Plan for Scientific Innovation Talent of Henan Province [134100510008]
  3. Program for Innovative Research Team of Henan Polytechnic University [T2013-4]
  4. State Key Laboratory of New Ceramic and Fine Processing Tsinghua University [KF201313]

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This paper reports the dry-sliding tribological properties of Ti3SiC2 at room temperature in air, coupled with different counterfaces, including Ti3SiC2, Al2O3, Si3N4, SiC, and GCr15-bearing-steel. Ti3SiC2 exhibited obviously different tribological properties with different sliding counterfaces. The lowest friction coefficient (0.43) and wear rate (2.09 x 10(-4) mm(3)/Nm) were obtained in the Ti3SiC2/SiC friction pair. Increased friction coefficient (0.63) and wear rate (3.67 x 10(-4) mm(3)/Nm) were observed if Ti3SiC2 slides against GCr15-bearing-steel. The highest friction coefficient (1.30) was observed in Ti3SiC2/Al2O3 friction pair and the highest wear rate (1.87 x 10(-3) mm(3)/Nm) was observed in Ti3SiC2/Ti3SiC2 friction pair. Scanning electron microscopy and X-ray photoelectron spectroscopy showed two main wear mechanisms: mechanical wear and oxidation wear. Mechanical wear was the main mechanism for sliding against Ti3SiC2, Si3N4, or Al2O3. Grain removal was a significant tribological character of self-mated Ti3SiC2 friction pair. For Ti3SiC2/SiC friction pair, oxide wear played a more important role and more oxides were formed than those in other friction pairs. Oxide films protected the surface of Ti3SiC2/SiC friction pair from direct contact, and decreased wear rate and friction coefficient. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.

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