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陈华
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Paper Publications
chenhua,[会EI]Oxidation Behavior of TiAl Based Alloys Prepared by Spark Plasma Sintering.Advanced Materials Research,2010:1
chenhua,裴文,宫学博,段振鑫.【SCI】超细晶/纳米晶γ-TiAl基合金的流变行为研究(英文).稀有金属材料与工程,2019:2
chenhua,介璐阳,王立岩.【EI会议】Numerical Simulation Analysis of Surfacing Temperature Field of Pulling-straightening Roller.IOP Conference Series: Materials Science and Engineering,2019:3
chenhua,段振鑫,hanying,songxiaolei.Creep behaviour of equiaxed fine-grain γ -TiAl-based alloy prepared by powder metallurgy.Materials science and Technology,2020:1
chenhua,裴文,宫学博,段振鑫,陈华.Study on the flow behavior of ultrafine grain/nanocrystalline γ-TiAl based alloys.稀有金属材料与工程,2018:2
chenhua,袁佳志,曾婧,陈华.Investigation on the properties of the brake friction materials for oil drille.Materials Science Forum,2018:2
chenhua,曾婧,刘丽萍,袁佳志,陈华.High-Temperature Compressive Properties of TiB-Reinforced Ti Alloy via In Situ Synthesis.Metals,2018:1
chenhua,袁佳志,曾婧,陈华.Effect large size graphite on dry friction and wear characteristics of copper-based brake friction lining materials.Engineering Village,2018:2
chenhua,宫学博,段振鑫,裴文,陈华.【SCI通讯】Superplastic deformation mechanisms of Superfine /nanocrystalline duplex.materials,2017,15(9):2
chenhua,段振鑫,裴文,宫学博,陈华.【SCI通讯】Superplasticity of Annealed H13 steel.Materials,2017:1
chenhua,宫学博,段振鑫,裴文,陈华.High temperature deformation mechanism of TiAl based alloy with ultrafine grains.Materials Science and Technology,2017:1
chenhua,裴文,段振鑫,宫学博,陈华.Effect of Speed on Friction and Wear Properties of Cu-based Material.Advances in Engineering Research,2017(125):1
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