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| 1 | 显示文摘 | ChenJiming(谌继明) | 2002 | 核聚变与等离子体物理2002,,4: | 1 |
| 2 | 显示文摘 | BaiHaijian(柏海见) ChenJiming(陈继明) YiJianjun(易建军) QiYongxin(齐永新) | 2010 | 化工新型材料2010,,4: | 1 |
| 3 | Maintai?ning quality of sensing with actors in wireless sensor networks显示文摘 | He Shibo ChenJiming Peng Cheng | 2012 | IEEE Transactions on Parallel and Dis?tributed SystemsJournal2012,23,9: | 1 |
| 4 | Distribu-tedactivesensorschedulingfortargettrackinginultra-sonicsensornetworks显示文摘 | ZHANGFan CHENJiming LIHongbin etal | 2012 | MobileNetworksandApplica-tions2012,17,5: | 1 |
| 5 | 显示文摘 | CAOShi-leK曹师磊) HUANGPing(黄平) CHENJim(陈钧) JIANGXin-guo(蒋新国) WANGXiaolin(王小林) CHENChunlin(陈春麟) | | 中国临床药学杂志0,,: | 1 |
| 6 | The Brittle Fracture Mechanism of Vanadium Alloy with High Level of Oxygen and Hydrogen显示文摘Hydrogen embrittlement is one of the key issues for the vanadium alloys for fusion application. Previous study has shown that V4Ti alloy had better properties against the embrittlement than V4Cr4Ti and V4Ti3A1 alloys. It was thought that the better property was benefited from the small ratio of itsyield strength over its ultimate tensilestrength. | CHENJiming XUZengyu YANGLin LIUXiang | 2001 | Southwestern Institute of Physics Annual Report2001,,1: | 0 |
| 7 | Experimental Study on the Resistance to Hydrogen Embrittlement of NIFS-V4Cr4Ti Alloy显示文摘There are more and more countries to ake an effort to the studies of vanadium alloy for fusion application. NIFS in Japan has recently developed an 80 kg heat V4Cr4Ti alloy (NIFS-heat 2) after the production of a 500 kg scale V4Cr4Ti in U. S. several years ago. Property evaluation of the alloy has beenput into an international collaboration program under the coordination of IEA (International Energy Agency). SWIP has joined the collabration on the hydrogen embrittlement resistance evaluation of the alloyt. | CHENJiming XUZengyu T.Muroga DENYing | 2001 | Southwestern Institute of Physics Annual Report2001,,1: | 0 |
| 8 | Hydrogen and Neutron Irradiation Induced Hardening in Vanadium Alloys显示文摘It is well known that vanadium alloy will face to strong neutron irradiation and hydrogen environments as a structural material in a fusion reactor. Some researches have reported that vanadium alloy took strongly hardening after an exposure to hydrogen environment and irradiation by neutron at a temperature lower than 400℃. The ductility of the alloy was lost largely, even entirely brittle fracture occurred sometimes in tension loading of the alloy. Therefore, it's to get the knowledge of the hardening mechanism and the fracture mechanical for the purpose to improve the performances of the alloy under the circumstances. | CHENJiming | 2001 | Southwestern Institute of Physics Annual Report2001,,1: | 0 |
| 9 | The Oxidation Behavior of Vanadium Alloys in Air at Elevated Temperature显示文摘Vanadium alloy is one of the most important candidate structural materials for a fusion reactor. Its main advantages over other candidates are its low activity feature and feasible properties at high temperature. However, vanadium is easily oxidized at high temperature to form a non-protective surface film of V2O5. Oxygen concentration would thus get high and the properties get worse in not only the loss of the ductility but also the enhanced hydrogen embrittlement by the oxidation. | CHENJiming XUYing XUZengyu | 2001 | Southwestern Institute of Physics Annual Report2001,,1: | 0 |
| 10 | Risk assessment on severe hazards to China caused by West Nile virus显示文摘Recent West Nile virus epidemics in USA drawworldwide concerns. Here the basic biological and epidemi-ological features of the virus are analyzed along with thespecial immunity of humans and animals, the immigration ofbirds and the natural environments in China. The risk ofsevere hazards to China caused by West Nile virus is assessednot high thereafter. | CHENJiming SUNYingxue WANGZhiliang SHENChaojian XIEZhonglun WANGXiming | 2004 | Chinese Science Bulletin2004,49,10: | 0 |
| 11 | Development of New Type Multi-Elements Doped Carbon-Base Plasma Facing Materials显示文摘Carbon-base materials will be major plasma facing materials (PFM) in a fusion device in near term and even in the future in spite of its high tritium trapping and chemical sputtering yield. Of course, the development of high Z PFM and free surface system are also important for fusion energy. | XUZengyu LIUXiang CHENJiming WANGMingxu SONGJinren ZHAIGengtai LIChengxin | 2002 | Southwestern Institute of Physics Annual Report2002,,1: | 0 |
| 12 | The Recovery and Recrystallization of the Cold Rolled V-W-Ti Alloys显示文摘Vanadium alloys, especially that of V4Cr4Ti, are supposed as the promising candidate structural material for fusion applications for their good thermal properties, high temperature strength and the inherent low activation characteristics. However, in | CHENJiming T.Muroga T.Nagasaka1 XUYing XUZengyu | 2002 | Southwestern Institute of Physics Annual Report2002,,1: | 0 |
| 13 | Thermal Desorption of Helium Implanted in Tungsten at RT显示文摘Tungsten is envisaged as one of the main candidate materials for divertor plate of ITER and future fusion reactors. Due to D-T reaction, PFMs would suffer helium irradiation from plasma additional to the high heat loads. Helium retention and thermal desorption behavior are largely concerned. | ZHANGFu XUZengyu LIUXiang CHENJiming XUYing N.Yoshida H.Iwakiri | 2002 | Southwestern Institute of Physics Annual Report2002,,1: | 0 |