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11篇 您的检索式:作者名="Liuyang BAI"
    题名 作者 年代 出处 被引量
1Synthesis of nickel powders: From spheres to mono dispersed clusters 显示文摘Bai Liuyang Zhang Haibao Jin Huacheng 2012Journal of Cluster Science2012,23,:1
2Synthesis of hollow carbonyl iron microspheres via pitting corrosion method and their microwave absorption properties显示文摘Chunlei Yin Yuebin Cao Junmei Fan Liuyang Bai Fei Ding Fangli Yuan 2013Applied Surface Science2013,,:1
3Shape-controlled synthesis of Ni particles via polyol reduction显示文摘Liuyang Bai Junmei Fan Yuebin Cao Fangli Yuan Ahui Zuo Qing Tang 2009Journal of Crystal Growth2009,,8:1
4Synthesis of Nickel Powders: From Spheres to Monodispersed Clusters显示文摘Liuyang Bai Haibao Zhang Huacheng Jin Fangli Yuan 2012Journal of Cluster Science2012,,2:1
5显示文摘Hu Peng Yuan Fangli Bai Liuyang 2007J Phys Chem C2007,111,:1
6Plasma Synthesis of Large Quantities of Zinc Oxide Nanorods显示文摘Hu Peng Yuan Fangli Bai Liuyang 0,,:1
7RF plasma synthesis of nickel nanopowders via hydrogen reduction of nickel hydroxide/carbonate显示文摘Bai Liuyang Fan Junmei Hu Peng 0,,1:1
8Single-step pathway for the synthesis of tungsten nanosized powders by RF induction thermal plasma显示文摘Zhang Haibao Bai Liuyang Hu Peng 0,,:1
9Shape-Controlled Synthesis of ZnS Nanostructures:A Simple and Rapid Method for One-Dimensional Materials by Plasma显示文摘Hu Peng Bai Liuyang Yu Lingjie 0,,09:1
10RF Plasma Synthesis of Nickel Nanopowders via Hydrogen Reduction of Nickel Hydroxide/Carbonate 显示文摘Liuyang Bai Junmei Fan Peng Hu 2009Journal of Alloys and Compounds2009,481,12:1
11Temperature-mediated tribological characteristics of 40CrNiMoA steel and Inconel 718 alloy during sliding against Si_(3)N_(4) counterparts显示文摘A comparative evaluation of the friction and wear behaviors of 40CrNiMoA steel and Inconel 718 alloy sliding against Si_(3)N_(4) counterparts was conducted over a large temperature range from room temperature(RT)to 800℃.The temperature‐dependent tribological properties associated with the resulting chemical mitigation and structural adaptation of the solid sliding surface were clarified by surface/interface characterizations.The results revealed desirable performance in reducing friction and wear at elevated temperatures,which was associated with the resulting oxide composite filmʹs adaptive lubricating capability,whereas severe abrasive wear occurred at room/ambient temperatures.The oxidative‐abrasive differentials for the two alloys were further discussed by considering the combined effect of temperature and stressed‐shearing conditions.Liuyang BAI Shanhong WAN Gewen YI Yu SHAN Sang The PHAM Anh Kiet TIEU Yan LI Rendong WANG 2021Friction2021,9,5:0
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