• Acta Optica Sinica
  • Vol. 39, Issue 5, 0514001 (2019)
Jianzhong Zhou1、*, Wenyuan He1, Jiale Xu1, Wensheng Tan2, Xiankai Meng1, Shu Huang1, and Xuewu Nie1
Author Affiliations
  • 1 School of Mechanical Engineering, Jiangsu University, Zhenjiang, Jiangsu 212013, China
  • 2 School of Mechanical and Electrical Engineering, Changzhou College of Information Technology, Changzhou, Jiangsu 213164, China
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    DOI: 10.3788/AOS201939.0514001 Cite this Article Set citation alerts
    Jianzhong Zhou, Wenyuan He, Jiale Xu, Wensheng Tan, Xiankai Meng, Shu Huang, Xuewu Nie. Strengthening Mechanism and Wear Resistance of Al2O3/Fe901 Composite Coating Prepared by Laser Cladding[J]. Acta Optica Sinica, 2019, 39(5): 0514001 Copy Citation Text show less
    SEM images of powder. (a) Fe901 powder; (b) Al2O3 powder; (c) Al2O3/Fe901 powder
    Fig. 1. SEM images of powder. (a) Fe901 powder; (b) Al2O3 powder; (c) Al2O3/Fe901 powder
    Macro-morphologies of different coatings. (a) Fe901 coating; (b) 5%Al2O3/Fe901 composite coating; (c) 10%Al2O3/Fe901 composite coating; (d) 15%Al2O3/Fe901 composite coating
    Fig. 2. Macro-morphologies of different coatings. (a) Fe901 coating; (b) 5%Al2O3/Fe901 composite coating; (c) 10%Al2O3/Fe901 composite coating; (d) 15%Al2O3/Fe901 composite coating
    Microstructures of 10%Al2O3/Fe901 composite coating and Fe901 coating. (a) Top of composite coating; (b) middle of composite coating; (c) bottom of composite coating; (d) top of Fe901 coating; (e) middle of Fe901 coating; (f) bottom of Fe901 coating
    Fig. 3. Microstructures of 10%Al2O3/Fe901 composite coating and Fe901 coating. (a) Top of composite coating; (b) middle of composite coating; (c) bottom of composite coating; (d) top of Fe901 coating; (e) middle of Fe901 coating; (f) bottom of Fe901 coating
    Microstructural evolution mechanism of composite coating. (a) Formation of molten pool; (b) melt flow in molten pool; (c) solidification of molten pool; (d) solidification forming coating
    Fig. 4. Microstructural evolution mechanism of composite coating. (a) Formation of molten pool; (b) melt flow in molten pool; (c) solidification of molten pool; (d) solidification forming coating
    XRD patterns of Fe901 coating and 10%Al2O3/Fe901 composite coating. (a) Fe901 coating; (b) 10%Al2O3/Fe901 composite coating
    Fig. 5. XRD patterns of Fe901 coating and 10%Al2O3/Fe901 composite coating. (a) Fe901 coating; (b) 10%Al2O3/Fe901 composite coating
    Element plane scanning results of 10%Al2O3/Fe901 composite coating. (a) SEM image; (b) overlay graph of all elements; (c) Al element plane scanning; (d) Fe element plane scanning
    Fig. 6. Element plane scanning results of 10%Al2O3/Fe901 composite coating. (a) SEM image; (b) overlay graph of all elements; (c) Al element plane scanning; (d) Fe element plane scanning
    EDS element analysis of polygonal particle
    Fig. 7. EDS element analysis of polygonal particle
    Microhardness distribution of composite coating and Fe901 coating. (a) Microhardness distribution along depth; (b) average microhardness of composite coatings
    Fig. 8. Microhardness distribution of composite coating and Fe901 coating. (a) Microhardness distribution along depth; (b) average microhardness of composite coatings
    Wear resistance of Fe901 coating and 10%Al2O3/Fe901 composite coating. (a) Friction and wear curves; (b) mass loss in wear test
    Fig. 9. Wear resistance of Fe901 coating and 10%Al2O3/Fe901 composite coating. (a) Friction and wear curves; (b) mass loss in wear test
    Surface wear morphology of Fe901 coating and 10%Al2O3/Fe901 composite coating. (a) Fe901 coating; (b) 10%Al2O3/Fe901 composite coating
    Fig. 10. Surface wear morphology of Fe901 coating and 10%Al2O3/Fe901 composite coating. (a) Fe901 coating; (b) 10%Al2O3/Fe901 composite coating
    Jianzhong Zhou, Wenyuan He, Jiale Xu, Wensheng Tan, Xiankai Meng, Shu Huang, Xuewu Nie. Strengthening Mechanism and Wear Resistance of Al2O3/Fe901 Composite Coating Prepared by Laser Cladding[J]. Acta Optica Sinica, 2019, 39(5): 0514001
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