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Running-in Test and Fractal Methodology for Worn Surface Topography Characterization 被引量:18
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作者 JI Cuicui ZHU Hua +1 位作者 JIANG Wei LU Binbin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2010年第5期600-605,共6页
Studying and understanding of the surface topography variation are the basis for analyzing tribological problems,and characterization of worn surface is necessary.Fractal geometry offers a more accurate description fo... Studying and understanding of the surface topography variation are the basis for analyzing tribological problems,and characterization of worn surface is necessary.Fractal geometry offers a more accurate description for surface roughness that topographic surfaces are statistically self-similar and can be quantitatively evaluated by fractal parameters.The change regularity of worn surface topography is one of the most important aspects of running-in study.However,the existing research normally adopts only one friction matching pair to explore the surface topography change,which interrupts the running-in wear process and makes the experimental result lack authenticity and objectivity.In this paper,to investigate the change regularity of surface topography during the real running-in process,a series of running-in tests by changing friction pairs under the same operating conditions are conducted on UMT-II Universal Multifunction Tester.The surface profile data are acquired by MiaoXAM2.5X-50X Ultrahigh Precision Surface 3D Profiler and analyzed using fractal dimension D,scale coefficient C and characteristic roughness Ra *based on root mean square(RMS) method.The characterization effects of the three parameters are discussed and compared.The results obtained show that there exists remarkable fractal feature of surface topography during running-in process,both D and Ra *increase gradually,while C decreases slowly as the wear-in process goes on,and all parameters tend to be stable when the wear process steps into the normal wear process.Ra *illustrates higher sensitivity for rough surface characterization compared with the other two parameters.In addition,the running-in test carried with a set of identical surface properties is more scientific and reasonable than the traditional one.The proposed research further indicates that the fractal method can quantitatively measure the rough surface,which also provides an evidence for running-in process identification and tribology design. 展开更多
关键词 RUNNING-IN worn surface topography RMS method fractal dimension scale coefficient characteristic roughness
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纳米镍微粒在甘油中的摩擦学特性
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作者 王朝 方天宇 +2 位作者 彭俊翔 侯欣然 孙会来 《合成润滑材料》 CAS 2022年第4期42-45,共4页
甘油成本低廉,是一种常见的润滑剂,而寻找改良甘油润滑性能的方法是亟待解决的问题。为了改善甘油的摩擦学特性,在甘油中添加了纳米镍微粒,并对纳米镍微粒在甘油中的摩擦学特性,磨损表面形貌及流变学特性进行了研究。发现在甘油中添加0.... 甘油成本低廉,是一种常见的润滑剂,而寻找改良甘油润滑性能的方法是亟待解决的问题。为了改善甘油的摩擦学特性,在甘油中添加了纳米镍微粒,并对纳米镍微粒在甘油中的摩擦学特性,磨损表面形貌及流变学特性进行了研究。发现在甘油中添加0.05%纳米镍微粒可以有效提高甘油的摩擦学特性,甘油的摩擦因数下降了约7%,磨损体积下降了约31.6%,同时纳米镍微粒对磨损表面具有一定的修复作用。 展开更多
关键词 摩擦因数 磨损表面形貌 流变学特性
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用峰结构函数表征磨损表面形貌的变化过程 被引量:6
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作者 徐雁 齐毓霖 《摩擦学学报》 EI CAS CSCD 北大核心 1998年第1期53-59,共7页
利用复位测量技术对工件在磨损过程中进行跟踪复位测量,精确地测定出工件线磨损量的变化,并且作出了结构函数的变化曲线.大量的实验数据证明,用峰结构函数表征磨损表面形貌的变化过程,比目前所用其它各种参数更有效、更准确,而且... 利用复位测量技术对工件在磨损过程中进行跟踪复位测量,精确地测定出工件线磨损量的变化,并且作出了结构函数的变化曲线.大量的实验数据证明,用峰结构函数表征磨损表面形貌的变化过程,比目前所用其它各种参数更有效、更准确,而且即使不用复位测量方法,峰结构函数也能够准确地表征磨损状态,故其对于润滑剂研究、材料研究和工艺学研究等都具有比较好的实用意义. 展开更多
关键词 线磨损量 复位测量 峰结构函数 磨损 表面形貌
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