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DISPERSION OF NANODIAMOND IN AQUEOUS SYSTEM 被引量:1
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作者 ZhuYongwei XuXiangyang +2 位作者 WangBaichun ShenXiangqian: fengzhijing 《金刚石与磨料磨具工程》 CAS 2003年第4期26-29,共4页
The effect of Chemical Mechanical Modification (CMM) and dispersants on the ζ potential of nanodiamond particles in aqueous system and the influence of the ultrasonic or shearing techniques on its size distribution w... The effect of Chemical Mechanical Modification (CMM) and dispersants on the ζ potential of nanodiamond particles in aqueous system and the influence of the ultrasonic or shearing techniques on its size distribution were studied CMM and the addition of dispersants AD 2 and AD 8 improve the stability of its suspension With ultrasonic time prolonged, the mean average size of nanodiamond decreases, while with the prolongation of shearing time, its mean size decreases first, then increases a little In the speed range used, the mean size decreases with the rising speed If the whole ultrasonic time kept constant, it is better to add the dispersants before 展开更多
关键词 人造金刚石 纳米金刚石 化学机械改性 CMM 分散
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Magnetic Bingham fluid-assisted deterministic polishing for super-smooth surfaces 被引量:3
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作者 CHENGHaobo fengzhijing +1 位作者 WANGYingwei LEIShuting 《Chinese Science Bulletin》 SCIE EI CAS 2005年第2期172-178,共7页
The characteristics of magnetorheological fin- ishing (MRF) technique such as the behavior of magnetic particles and the magnetic field distribution have been inves- tigated. Based on the established theoretical model... The characteristics of magnetorheological fin- ishing (MRF) technique such as the behavior of magnetic particles and the magnetic field distribution have been inves- tigated. Based on the established theoretical model, material removal function and removal rate experiments involving a K9 glass mirror are designed and carried out. Further experiments are carried out to improve the surface roughness of the workpiece. The final surface roughness with an initial value of 17.58 nm reached 0.4351 nm rms after 35 min of deterministic MRF, and the AFM measurements on microstructures of the polished surface are also improved by 0.445 nm rms without obvious defects. 展开更多
关键词 超平滑 磁性流变学流体 MRF 磨光面 拆换率 宾汉流体
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