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纳米Ni-Si3N4-x复合镀层的超声电沉积机理及工艺研究

Mechanism and Technology of Ultrasonic - Electrodepositing Nano Ni-Si3N4-x Composite Layer

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【作者】 吴蒙华李智夏法锋傅欣欣

【Author】 WU Meng-hiia~1 , LI Zhi~1 , XIA Fa-feng~2, et al (1. Department of Mechanical Engineering, Dalian University, Dalian 116622; 2. Department of Mechanical Engineering, Daqing Petroleum In stitute, Daqing 151400, China).

【机构】 大连大学机械工程系大庆石油学院机械系东北大学材料科学与工程学院 辽宁大连116622辽宁大连116622黑龙江大庆151400辽宁沈阳110004

【摘要】 通过超声电沉积法制备纳米Ni Si3N4-x复合层,研究超声电沉积纳米复合镀层的机理及工艺。在试验的基础上,主要研究了超声波的机械扰动效应、空化效应及脉冲电流对抑制纳米粒子团聚、控制晶粒成核及生长的作用。结果表明,适度功率超声波的引入,可以抑制镀液中纳米粒子的团聚,与高频、窄脉宽脉冲电流作用相结合,可以提高镀液扩散传质效率,加速纳米粒子与基质金属离子共沉积,使纳米陶瓷粒子均匀分散在镀层中,促进基质金属晶体形核并控制其生长,起到细晶强化的作用。获得了由纳米镍晶(20~60nm)和纳米Si3N4-x粒子构成的纳米复合镀层。

【Abstract】 Nano Ni-Si3N4-x composite layer was prepared by ultrasonic - electrodepositing method, and the mechanism and technology of ultrasonic - electrodepositing nano composite layer were studied. Main investigation concentrated on the mechanical disturbance effect and cavitation of ultrasonic wave, and the effects of pulse current on controlling reunion of nanoparticles, nucleation and growth of grains. Results show that the reunion of nanoparticles may be restrained by introducing moderate ultrason ic wave. The mass-transfer efficiency of electrolyte is raised, the co - deposition of nanoparticles and metal ions is accelerated, the nanoparticles are well distributed in composite layer as a strength ening phase, the nucleation multiplication of matrix metal is en hanced and the crystalline growth is hindered by combining ultra sonic wave with high frequency and narrow-width pulse current. The nano Ni - Si3 N4-x composite layer consisted of nanocrystalline nickel (20 -60 nm) and nano Si3N4-xparticles is obtained.

【基金】 国家自然科学基金资助项目(50275014)
  • 【文献出处】 材料保护 ,Materials Protection , 编辑部邮箱 ,2004年07期
  • 【分类号】TQ153.2
  • 【被引频次】28
  • 【下载频次】309
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