首页> 外文会议>International conference on integration and commercialization of micro and nano systems (MNC2007 - MicroNanoChina07) >INVESTIGATION OF MICROSTRUCTURE AND PROPERTIES OF Ni/CNT NANOCRYSTALLINE COATING DEPOSITED BY BRUSH PLATING
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INVESTIGATION OF MICROSTRUCTURE AND PROPERTIES OF Ni/CNT NANOCRYSTALLINE COATING DEPOSITED BY BRUSH PLATING

机译:刷镀Ni / CNT纳米晶镀层的组织和性能研究

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Nickle-carbon nanotube (Ni/CNT) nanocrystalline coatings with different parameter were prepared by brush plating. The carbon nanotubes were added into common nickel solution for brush plating and ball milling was used to disperse the carbon nanotubes in the solusion. The concentration of carbon nanotubes in the solution was 3 g/l. The SEM and XRD were applied to investigate the grain size, microstructure andmorphology of the coatings. The hardness and the wear mass loss of the coatings were examined on micro hardness tester and ball on disk tribotester. The results show that under a direct-current source, the grain size of the Ni/CNT coating was about 20 nm. Under a pulse-current source, the grain size of the Ni/CNT coatings decreased and the coatings gained smoother surface when the pulse-width became shorter. The grain size of the Ni/CNT coating increased with the heating temperature increasing and the average grain size of the coating heated at500 degrees centigrade was over 50 nm. The microhardness of the Ni/CNT coating under a pulse-current source was higher than that of the coating under a direct-current source. Under a pulse-current source, the microhardness of the Ni/CNT coating increased when the pulse-width became shorter. The microhardness of the Ni/CNT coating changed slightly below 300 degrees centigrade, while decreased obviously after heated up to 400 degrees centigrade. The wear resistance of the Ni/CNT coating under a pulse-current was higher than that of the coating under a direct-current. Under a pulse-current, the wear resistance of the Ni/CNT coating increased when the pulse-width became shorter.
机译:通过刷镀制备了具有不同参数的镍碳纳米管(Ni / CNT)纳米晶涂层。将碳纳米管添加到普通镍溶液中以进行刷镀,并使用球磨将碳纳米管分散在溶液中。溶液中碳纳米管的浓度为3 g / l。用SEM和XRD研究了涂层的晶粒尺寸,显微组织和形貌。在微型硬度计上和在三酯盘上的球上检查涂层的硬度和磨损质量损失。结果表明,在直流电源下,Ni / CNT涂层的晶粒尺寸约为20 nm。在脉冲电流源下,当脉冲宽度变短时,Ni / CNT涂层的晶粒尺寸减小,且涂层表面变得更光滑。 Ni / CNT涂层的晶粒尺寸随着加热温度的增加而增加,并且在500摄氏度下加热的涂层的平均晶粒尺寸超过50nm。脉冲电流源下的Ni / CNT涂层的显微硬度高于直流源下的涂层的显微硬度。在脉冲电流源下,当脉冲宽度变短时,Ni / CNT涂层的显微硬度增加。 Ni / CNT涂层的显微硬度在300摄氏度以下略有变化,而加热到400摄氏度后其显微硬度明显降低。脉冲电流下的Ni / CNT涂层的耐磨性高于直流下的涂层的耐磨性。在脉冲电流下,当脉冲宽度变短时,Ni / CNT涂层的耐磨性增加。

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