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Effect of nano-size nickel particles on wear resistance and high temperature oxidation resistance of ultrafine ceramic coating

机译:纳米镍颗粒对超细陶瓷涂层耐磨性和高温抗氧化性能的影响

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摘要

In order to improve the wear resistance and high temperature oxidation resistance of titanium and titanium alloy, the high temperature ultra fine ceramic coating containing nano-size nickel particles was prepared by flow coat method on the surface of industrially pure titanium TB1-0. The effects of nano-size nickel particles on the wear resistance and high temperature oxidation resistance of coating substrate system were investigated through oxidation kinetics experiment and wear resistance test. The morphologies of the specimens were examined by means of optical microscopy, scanning electron microscopy and X-ray diffraction. The results show that the high temperature ultra fine ceramic coating has notable protection effect on industrially pure titanium TB1-0 from oxidation. The oxidation and wear resistance properties of the coating can be effectively improved by adding nano-size nickel particles. The decreases from 1. 1 to 0. 6 by adding nano-size nickel particles, and the coating containing 10% (mass fraction) nano-size nickel shows the optimum properties.
机译:为了提高钛和钛合金的耐磨性和高温抗氧化性,通过流涂法在工业纯钛TB1-0的表面上制备了包含纳米级镍颗粒的高温超细陶瓷涂层。通过氧化动力学实验和耐磨性试验研究了纳米镍颗粒对涂层基体系统耐磨性和高温抗氧化性的影响。通过光学显微镜,扫描电子显微镜和X射线衍射检查样品的形态。结果表明,高温超细陶瓷涂层对工业纯钛TB1-0具有显着的抗氧化保护作用。通过添加纳米尺寸的镍粒子,可以有效地改善涂层的抗氧化和耐磨性能。通过添加纳米级镍颗粒,从1. 1到0. 6的减少,并且包含10%(质量分数)纳米级镍的涂层显示出最佳性能。

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