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Nanocomposite Ni-TiN coatings prepared by ultrasonic electrodeposition

机译:超声电沉积制备的纳米复合Ni-TiN涂层

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摘要

Nanocomposite Ni-TiN coatings were prepared by ultrasonic electrodeposition and the effects of ultrasonication on the coatings were studied. X-ray diffraction analysis was utilized to detect the crystalline and amorphous characteristics of the composite coatings. The surface morphology and metallurgical structure were observed by scanning electron microscopy, high-resolution transmission electron microscopy and scanning probe microscopy. The results showed that ultrasonication had great effects on TiN nanoparticles in composite TiN particles in the coatings. Moreover. the TiN nanocoatings. The moderate ultrasonication conduced to homogeneous dispersion of TiN particles that entered and homogeneously dispersed in the composite coating led to an Increase in the number of nuclei for nucleation of nickel grains and inhibition of grain growth. Therefore, the introduction of ultrasonication and TiN nanoparticles resulted In the formation of smaller nickel grains. The average grain diameter of TiN particles was similar to 33 nm, while Ni grains measured approximately 53 nm.
机译:通过超声电沉积制备了纳米复合Ni-TiN涂层,研究了超声对涂层的影响。 X射线衍射分析用于检测复合涂层的结晶和非晶特性。通过扫描电子显微镜,高分辨率透射电子显微镜和扫描探针显微镜观察表面形态和冶金结构。结果表明,超声处理对涂层中复合TiN颗粒中的TiN纳米颗粒有很大影响。此外。 TiN纳米涂层。适度的超声处理导致进入复合涂层中并均匀分散在复合涂层中的TiN颗粒均匀分散,从而导致用于镍晶粒成核的晶核数量增加,并抑制了晶粒生长。因此,超声和TiN纳米粒子的引入导致形成较小的镍晶粒。 TiN颗粒的平均粒径类似于33 nm,而Ni颗粒约为53 nm。

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