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磨合表面形貌特征参数的提取及分析 被引量:10
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作者 李国宾 关德林 《摩擦学学报》 EI CAS CSCD 北大核心 2007年第2期156-160,共5页
在销-盘式摩擦磨损试验机上对船用柴油机活塞环-缸套材摩擦副进行磨合磨损试验,采用光学显微镜对不同磨损阶段的磨损表面形貌进行观察分析,应用小波分析和奇异值分解提取磨损表面统计特征的低频特征参数和高频特征参数.结果表明:低频特... 在销-盘式摩擦磨损试验机上对船用柴油机活塞环-缸套材摩擦副进行磨合磨损试验,采用光学显微镜对不同磨损阶段的磨损表面形貌进行观察分析,应用小波分析和奇异值分解提取磨损表面统计特征的低频特征参数和高频特征参数.结果表明:低频特征参数和高频特征参数刻画了磨合表面的形貌特征,可以作为磨合表面的特征参数;低频特征参数反映了磨合表面的接触面积,其值愈大,接触面积愈大;高频特征参数反映了磨合表面的粗糙度,其值愈大,粗糙度愈小. 展开更多
关键词 磨合表面 小波分析 奇异值分解 低频特征参数 高频特征参数
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评定磨合表面的最佳形貌参数 被引量:10
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作者 马争 桂长林 《摩擦学学报》 EI CAS CSCD 北大核心 1995年第2期133-137,共5页
磨合是新机器设备投入使用之前的必经过程,而且对摩件的表面形貌都要发生明显的变化。因此,如何评定磨合表面形貌值得深入研究。实际上,磨合是对摩件的表面形貌由初始状态逐渐趋于相互吻合的过程,因而磨合之后配对表面的形貌具有相... 磨合是新机器设备投入使用之前的必经过程,而且对摩件的表面形貌都要发生明显的变化。因此,如何评定磨合表面形貌值得深入研究。实际上,磨合是对摩件的表面形貌由初始状态逐渐趋于相互吻合的过程,因而磨合之后配对表面的形貌具有相关性。在此基础上,研究提出利用互相关结构函数评定磨合。这种评定方法具有能够同时反映两个表面形貌和对表面形貌变化反映敏感,以及能够将表面轮廓的峰和谷分开考虑等优点。理论分析和应用实例证明,互相关结构函数是评定磨合表面的最佳形貌参数,可以作为磨合的基准判据。 展开更多
关键词 表面形貌参数 磨合 磨合表面
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Improving tribological properties of CP-Ti by in-situ fabrication of Ti-WC surface composite using a pinless WC-Co stirring tool
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作者 Meisam ASHOURI Reza TAGHIABADI +2 位作者 Mohammad EMAMI Morteza SAGHAFI YAZDI Iman ANSARIAN 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3688-3702,共15页
A surface Ti-WC composite was fabricated on CP-Ti by surface friction stirring(SFS)using a pinless WC-Cotool at a processing window of 800−2500 r/min and 8−50 mm/min.At 1600 r/min-50 mm/min,a defect-free compositelaye... A surface Ti-WC composite was fabricated on CP-Ti by surface friction stirring(SFS)using a pinless WC-Cotool at a processing window of 800−2500 r/min and 8−50 mm/min.At 1600 r/min-50 mm/min,a defect-free compositelayer with an average hardness of~HV 1170 is formed.The hardness was increased by WC and TiN reinforcingparticles,dissolved Co atoms in Ti,and the formation of ultrafine grains.WC particles were incorporated into the Tisubstrate owing to the intense frictional interaction/heating at the tool-plate interface(~1000℃),which led to strengthloss and wear of the tool.The Williamson-Hall analysis of the XRD peaks of the SFSed sample confirmed a significantlysmall crystallite size(~100 nm).Wear tests showed that the wear resistance of the composite structure was about 4.5times higher than that of the CP-Ti.Friction analysis revealed a significant reduction in average value and fluctuations ofthe friction coefficient. 展开更多
关键词 surface friction stirring CP-Ti Ti-WC surface composite HARDNESS wear
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Raman spectroscopy investigation of structural and textural change in C/C composites during braking 被引量:1
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作者 雷宝灵 易茂中 +3 位作者 徐惠娟 冉丽萍 葛毅成 彭可 《Journal of Central South University》 SCIE EI CAS 2011年第1期29-35,共7页
The microstructure and texture of C/C composites with a resin-derived carbon, a rough laminar (RL) pyrocarbon and a smooth laminar pyrocarbon, before and after braking tests, were investigated by Raman spectroscopy.... The microstructure and texture of C/C composites with a resin-derived carbon, a rough laminar (RL) pyrocarbon and a smooth laminar pyrocarbon, before and after braking tests, were investigated by Raman spectroscopy. The full width at half maximum (FWHM) of the D-band indicates the amount of defects in the in-plane lattice, while the G-to-D band intensity (peak area) ratios (lC/ID) is used to evaluate the degree of graphitization. The results show that the FWHM of D-band of sample with RL pyrocarbon changes greatly from 36 cm-1 to 168 cm 1 after braking tests, which indicates that a large number of lattice defects are produced on its wear surface. However, the graphitization degree of resin-derived carbon sample rises significantly, because the IC/1D increases from 0.427 to 0.928. Braking tests under normal loading conditions, involving high temperature and high pressure, produce a lot of lattice defects on the wear surface, and induce the graphitization of the surface. Sample with RL pyrocarbon having a low hardness is easy to deform, and has the most lattice defects on the wear surface after braking. While raw materials with resin-derived carbon have the lowest graphitization degree which rises greatly during braking. 展开更多
关键词 C/C composites Raman spectroscopy graphitization degree BRAKING
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