Influence of Feedstock and Thermal Spray Process on the Phase Composition of Alumina Coatings and Their Sliding Wear

被引:8
作者
Ali, Omar [1 ]
Ahmed, Rehan [1 ]
Toma, Filofteia-Laura [2 ]
Berger, Lutz-Michael [3 ]
Matthey, Bjoern [3 ]
Faisal, Nadimul [4 ]
Ahmed, Khalid [5 ]
机构
[1] Heriot Watt Univ, Sch Engn & Phys Sci, Edinburgh EH14 4AS, Scotland
[2] Fraunhofer IWS, Fraunhofer Inst Mat & Beam Technol, Winterbergstr 28, D-01277 Dresden, Germany
[3] Fraunhofer IKTS, Fraunhofer Inst Ceram Technol & Syst, Winterbergstr 28, D-01277 Dresden, Germany
[4] Robert Gordon Univ, Sch Engn, Garthdee Rd, Aberdeen AB10 7GJ, Scotland
[5] Alfaisal Univ, Coll Engn, Riyadh 11533, Saudi Arabia
基金
英国科学技术设施理事会;
关键词
alumina coating; sliding wear; structure-property relationship; suspension; thermal spray coating; wear mechanism; AL2O3; COATINGS; TRIBOLOGICAL BEHAVIOR; NANOSTRUCTURED ALUMINA; ELECTRON-MICROSCOPY; HEAT-TREATMENT; PLASMA; MICROSTRUCTURE; MECHANISMS; FRICTION; QUALITY;
D O I
10.1007/s11666-023-01597-z
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Suspension thermal spraying is an emerging coating technology that enables the deposition of dense-structured ceramic coatings. As wear resistance is a main application field of alumina (Al2O3) coatings, this study aimed to evaluate the dry reciprocating sliding wear resistance of suspension sprayed high velocity oxy-fuel (S-HVOF) alumina coatings and to compare it with atmospheric plasma sprayed (APS) and HVOF coatings. Coatings were analyzed in the as-sprayed state and post-treated at 910 degrees C (hot isostatically pressed, HIPed) conditions. Wear tests were conducted using a tribometer, following the ASTM G133-02 standard and a sintered WC-6 wt.% Co ball as the counterbody. Coating characterization was done using scanning electron microscopy, x-ray diffraction and nanoindentation technique. Results indicate that the HVOF, HVOF-HIP and S-HVOF coatings had a high alpha-Al2O3 content, whereas the APS and APS-HIP coatings had a high gamma-phase content together with high porosity. Sliding wear resistance was an order of magnitude higher for the S-HVOF and HVOF coatings than the APS and APS-HIPed coatings. This difference in wear performance was attributed to the high nanohardness, elastic modulus, dense microstructure and relatively high alpha-Al2O3 content in the HVOF, S-HVOF and HVOF-HIP coatings. Results are discussed in terms of the wear mechanism and structure-property relationship.
引用
收藏
页码:2028 / 2053
页数:26
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