世界上使用的能源大约有1/3~1/2消耗于摩擦,为了降低能源消耗人们广泛研究新技术和新方法。本研究是采用有规则的Nano/Micro大小的Surface pattern,减少机械机构接触部位的摩擦系数,提高机构的耐久性以及减少能源消耗的新型的研究方法。本项目是通过Photolithography工程和Electrochemical etching的加工方法确立Nano/Micro-pattern加
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数据更新时间:2023-05-31
Shared hippocampal abnormalities in sporadic temporal lobe epilepsy patients and their siblings
Simultaneous recovery of an infinite rough surface and the impedance from near-field data
Combination of CFCs and stable isotopes to characterize the mechanism of groundwater–surface water interactions in a headwater basin of the North China Plain
Infrasound signal classification based on spectral entropy and support vector machine
CO2 hydrogenation selectivity shift over In‐Co binary oxides catalysts: catalytic mechanism and structure‐property relationship
图案(Pattern)动力学方法的初探
Nano-TiO2/Nano-ZnO 纳米复合材料组合毒性机制研究
激光等离子体中的Pattern动力学及时空混沌
摩擦和撞击火花引燃特性的研究