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[1]操作次数对 Ag/ZnO 电触头 电弧侵蚀行为的影响[J]. 中国.中国有色金属学报, 2021, 31 (5) : 1285-1296.
[2]Infuence of operation numbers on arc erosion of Ag/CuO electrical contact material.Journal of Materials Science: Materials in Electronics, 2020, 31: 2497-2513.
[3]Influence of La2Sn2O7 on wetting behavior of Ag/SnO2 composite materials[J].Journal of Alloys and Compounds, 2020, 826: 1-12.
[4]Influence of Operation Numbers on Arc Erosion of Ag/CdO Electrical Contact Materials[J].IEEE TRANSACTIONS ON COMPONENTS, PACKAGING AND MANUFACTURING TECHNOLOGY, 2020, 10 (5) : 845-867.
[5]Preferential oxidation of intermetallic compounds in Ag-2Sn-4La alloy.Corrosion Science, 2018, 143: 173-186.
[6]Influence of fabrication technology on arc erosion of Ag/10SnO2 electrical contact materials.Journal of Alloys and Compounds, 2018, 766: 161-177.
[7]Influence of alloy components on arc erosion morphology of Ag/MeO electrical contact materials.Transactions of Nonferrous Metals Society of China, 2016, 26 (6) : 185-195.
[8]Arc erosion behavior of Ag/Ni electrical contact materials.Materials and Design, 2015, 85: 511-519.
[9]Oxidation of Ag–Sn–Sb alloy powders.Materials and Corrosion, 2014, 65: 522-530.
[10]Influence of ball-milling on the oxidation behaviour of Ag-Zn alloy powders.Materials and Corrosion, 2010, 61 (7) : 590-599.
[11]Microstructure of internally oxidized layer in Ag-Sn-Cu alloy,.Corrosion science, 2008, 50: 3508-3518.
[12]Internal oxidation of Ag-Sn-La alloy.Oxidation of Metals, 2008, 70: 121-136.
[13]Investigation on microstructure and performance of Ag-ZnO contact material.Journal of Alloys and Compounds, 2008, 457: 565-570.
[14]Internal oxidation thermodynamics and microstructures of Ag-Y alloy.Trans. Nonferrous Met. Soc. China, 2007, 17: 262-266.
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