MICROSCALE

作品数:122被引量:285H指数:8
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相关领域:理学更多>>
相关机构:西安电子科技大学清华大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金高等学校学科创新引智计划更多>>
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Intermittent failure mechanism and stabilization of microscale electrical contact被引量:1
《Friction》2023年第4期538-545,共8页Tianbao MA Zhiwei YU Aisheng SONG Jiahao ZHAO Haibo ZHANG Hongliang LU Dandan HAN Xueyan WANG Wenzhong WANG 
support of the National Natural Science Foundation of China(Grant Nos.11890671,61774096,and 51935006);National Science and Technology Major Project(2017-VII-0013-0110);the Fundamental Research Funds for the Central Universities.
The stability and lifetime of electrical contact pose a major challenge to the performance of microelectro-mechanical systems(MEMS),such as MEMS switches.The microscopic failure mechanism of electrical contact still r...
关键词:atomic force microscopy microscale electrical contact GRAPHENE 
Temperature and velocity dependent friction of a microscale graphite-DLC heterostructure被引量:6
《Friction》2020年第2期462-470,共9页Yujie GONGYANG Wengen OUYANG Cangyu QU Michael URBAKH Baogang QUAN Ming MA Quanshui ZHENG 
Wengen Ouyang acknowledges the financial support from a fellowship program for outstanding postdoctoral researchers from China and India in Israeli Universites.Ming Ma wishes to acknowledge the financial support by Thousand Young Talents Program and the NSFC grant Nos.11632009,11772168,and 11890673;Quanshui Zheng wishes to acknowledge the financial support by the NSFC grant No.11890671.
One of the promising approaches to achieving large scale superlubricity is the use of junctions between existing ultra-flat surface together with superlubric graphite mesas.Here we studied the frictional properties of...
关键词:FRICTION GRAPHITE diamond like carbon irradiation DESORPTION 
Experimental advances in superlubricity被引量:9
《Friction》2014年第2期182-192,共11页Quanshui ZHENG Ze LIU 
supports from the National Natural Science Foundation of China(NSFC)(Grant No.10832005);the the National Key Basic Research(973)Program of China(Grants Nos.2007CB936803 and 2013CB934200)are acknowledged.
Superlubricity,or structural lubricity,is a state that has two contacting surfaces exhibiting no resistance to sliding.This effect has been theoretically described to be possible between two completely clean single cr...
关键词:Superlubicity MICROSCALE macroscale ambient condition MECHANISM 
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