Microstructure and sliding wear resistance of an Al-12 wt.% Si/TiC laser clad coating

被引:37
|
作者
Anandkumar, R.
Almeida, A.
Vilar, R. [1 ]
机构
[1] Univ Tecn Lisboa, Inst Super Tecn, Dept Chem Engn, P-1049001 Lisbon, Portugal
关键词
Laser cladding; Al-Si/TiC coatings; Sliding wear; PHASE-EQUILIBRIA; ALUMINUM-ALLOYS; ABRASIVE WEAR; AL; COMPOSITES; BINARY; PARTICLES; CRACKING;
D O I
10.1016/j.wear.2012.01.022
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Metal matrix composite coatings consisting of an Al-12 wt.% Si-alloy matrix reinforced with TiC were prepared by laser cladding from mixtures of Al-12 wt.% Si alloy and TiC powders. For the processing parameters used (power density 200 MW/m(2) and interaction time 0.3 s), a small proportion of TiC dissolves in the melt, resulting in a microstructure composed of 34 vol.% of TiC and 3 vol.% of Ti3SiC2 particles dispersed in a matrix consisting of proeutectic alpha-Al dendrites and alpha-Al + Si eutectic. The coating material presents a hardness of 165 HV and a wear coefficient of 2.24 x 10(-5) mm(3)/(N m) in ball-on-plate dry sliding wear tests, using quenched and tempered AISI 440C martensitic stainless steel as the counterbody material. Analysis of the worn surfaces showed that the sliding motion of the contacting bodies leads to the formation of a tribolayer consisting of Fe oxides, as well as metallic phases. On the basis of theoretical calculations it is suggested that the primary material removal mechanism involves the propagation of cracks through the thickness of this tribolayer, followed by crack channeling and debonding of tribolayer fragments. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:31 / 39
页数:9
相关论文
共 50 条
  • [31] Laser surface engineered TiC coating on 6061 Al alloy: microstructure and wear
    Katipelli, LR
    Agarwal, A
    Dahotre, NB
    [J]. APPLIED SURFACE SCIENCE, 2000, 153 (2-3) : 65 - 78
  • [32] THE AGEING EFFECT ON. PHASE PRECIPITATION IN Al-12 WT.% Mg ALLOY
    Amrane, Chahira
    Hamana, Djamel
    Rubin, Anne
    Gauthier, Christian
    [J]. METAL 2015: 24TH INTERNATIONAL CONFERENCE ON METALLURGY AND MATERIALS, 2015, : 1371 - 1375
  • [33] Effect of Sliding Distance, Applied Load, and Weight Percentage of Reinforcement on the Abrasive Wear Properties of In Situ Synthesized Al-12%Si/TiC Composites
    Yigezu, Belete Sirahbizu
    Jha, P. K.
    Mahapatra, M. M.
    [J]. TRIBOLOGY TRANSACTIONS, 2013, 56 (04) : 546 - 554
  • [34] Microstructure and wear resistance of laser clad TiC reinforced FeAl intermetallic matrix composite coatings
    Chen, Y
    Wang, HM
    [J]. SURFACE & COATINGS TECHNOLOGY, 2003, 168 (01): : 30 - 36
  • [35] The Improvement of the Wear Resistance of T15 Laser Clad Coating by the Uniformity of Microstructure
    Zhang, Yingtao
    Ma, Yongliang
    Duan, Mingming
    Wang, Gang
    Li, Zhichao
    [J]. LUBRICANTS, 2022, 10 (10)
  • [36] Microstructure and wear resistance of laser clad TiB-TiC/TiNi-Ti2Ni intermetallic coating on titanium alloy
    Feng Shu-rong
    Tang Hai-bo
    Zhang Shu-quan
    Wang Hua-ming
    [J]. TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2012, 22 (07) : 1667 - 1673
  • [37] Laser surface treatment of Al-12% Si alloy
    Abbas, Muna Kh.
    Mahmoud, Adel. K.
    [J]. MATERIALS TODAY-PROCEEDINGS, 2017, 4 (09) : 9992 - 9996
  • [38] Comparative study of formation and transformation of transition phases in Al-12 wt.% Mg alloy
    Hamana, D
    Bouchear, M
    Betrouche, M
    Derafa, A
    Rokhmanov, NY
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2001, 320 (01) : 93 - 102
  • [39] Microstructure and Wear Resistance of Ni-WC-TiC Alloy Coating Fabricated by Laser
    Liu, Yu
    Li, Zeyu
    Li, Guohui
    Du, Fengming
    Yu, Miao
    [J]. LUBRICANTS, 2023, 11 (04)
  • [40] Microstructure and wear resistance of AlCoCrFeNi-WC/TiC composite coating by laser cladding
    Yutao, Li
    Hanguang, Fu
    Tiejun, Ma
    Kaiming, Wang
    Xiaojun, Yang
    Jian, Lin
    [J]. Materials Characterization, 2022, 194