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首页> 外文期刊>Strength of Materials >STUDY ON THE FABRICATION OF NANO-SiC/Ni-P COMPOSITE COATINGS WITH THE ASSISTANCE OF ELECTROMAGNETIC-ULTRASONIC COMPOUND FIELD
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STUDY ON THE FABRICATION OF NANO-SiC/Ni-P COMPOSITE COATINGS WITH THE ASSISTANCE OF ELECTROMAGNETIC-ULTRASONIC COMPOUND FIELD

机译:电磁超声复合田纳米SiC / Ni-P复合涂层制备的研究

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摘要

Electroless nanocomposite platings were fabricated with the assistance of electromagneticultrasonic fields with controlled parameters. The effect of the complex field on the composite platings' deposition process was investigated. The results show that composite coatings fabricated by a complex magnetic field have better density and homogeneity than those produced without the above external fields. The time-step deposition studies indicate that the extra magnetic field accelerates the motion of the composite particulates in the bath through the action of the Lorentz force and promotes the nucleation and growth process of composite particulate clusters. The energy generated by the ultrasonic vibration activates the substrate surface and promotes the deposition of Ni2+ in the plating solution at the substrate surface. The nanoindentation hardness of these composite coatings is approximately 0.15 GPa. While the complex field is functioning, ultrasonic and magnetic interactions play an important role in the fabrication of the uniform and dense nano-SiC/Ni-P composite coatings, which consist of amorphous spherical Ni-P/SiC particle clusters of 200 nm diameter.
机译:通过具有受控参数的电磁特拉内田的辅助制造无电纳米复合夹。研究了复杂场对复合镀层沉积过程的影响。结果表明,由复杂磁场制造的复合涂层具有比没有上述外部领域所生产的密度和均匀性的更好的密度和均匀性。时间步沉积研究表明,额外的磁场通过洛伦兹力的作用加速了浴中复合颗粒在浴中的运动,并促进复合颗粒簇的成核和生长过程。由超声波振动产生的能量激活基板表面并促进在基板表面的电镀溶液中的Ni2 +沉积。这些复合涂层的纳米凸缘硬度约为0.15gPa。虽然复杂的场是运作的,但超声波和磁相互作用在制造均匀和致密的纳米SiC / Ni-P复合涂层中起重要作用,其由直径为200nm的非晶球形Ni-P / SiC颗粒组成。

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