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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Microstructure and tribological properties of iron-based metallic glass coatings prepared by atmospheric plasma spraying
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Microstructure and tribological properties of iron-based metallic glass coatings prepared by atmospheric plasma spraying

机译:大气等离子喷涂制备铁基金属玻璃涂层的组织和摩擦学性能

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摘要

Iron-based metallic glass coatings (denoted as FeWCrNiMoBSiC) were prepared on 1Cr18Ni9Ti stainless steel cylinders by atmospheric plasma spraying at different parameters. The morphology, microstructure, and crystalline structure of as-prepared Fe-based metallic glass coatings were analyzed by scanning electron microscopy, transmission electron microscopy, and X-ray diffraction. A Pycnometer and a Vickers hardness tester were adopted to measure the porosity and microhardness of iron-based metallic glass coatings. Moreover, differential scanning calorimetry analysis was conducted to investigate the crystallization behavior of various iron-based metallic glass coatings, and a ball-on-disk tribometer was performed to evaluate the tribological properties of the coatings coupled with silicon nitride ceramic balls under unlubricated conditions. It has been found that the microhardness of iron-based metallic glass coatings increases with increasing plasma arc power, which is related to the degree of melting of feedstock powders and the compactness of as-prepared coatings. Besides, the phase compositions of assprayed coatings consist of amorphous structure and limited crystalline structure, and the contents of the amorphous structure and crystalline structure vary with plasma arc power. Moreover, iron-based metallic glass coatings deposited at different plasma arc powers show similar steady-state friction coefficients (0.8-0.9), but their wear rate varies with varying plasma arc power. Particularly, iron-based metallic glass coating with next to the highest hardness exhibits the best anti-wear ability, which is the outcome of the compromise between the hardness and brittle fracture as well as abrasive wear of the coatings during sliding process.
机译:通过大气等离子喷涂在不同参数下在1Cr18Ni9Ti不锈钢圆柱上制备了铁基金属玻璃涂层(称为FeWCrNiMoBSiC)。通过扫描电子显微镜,透射电子显微镜和X射线衍射分析了所制备的Fe基金属玻璃涂层的形貌,微观结构和晶体结构。采用比重瓶和维氏硬度计测量铁基金属玻璃涂层的孔隙率和显微硬度。此外,进行了差示扫描量热分析以研究各种铁基金属玻璃涂层的结晶行为,并用圆盘摩擦计测量了在未润滑条件下结合氮化硅陶瓷球的涂层的摩擦学性能。已经发现,铁基金属玻璃涂层的显微硬度随着等离子弧功率的增加而增加,这与原料粉末的熔融程度和所制备的涂层的致密性有关。此外,喷涂涂层的相组成由非晶结构和有限的晶体结构组成,非晶结构和晶体结构的含量随等离子弧功率而变化。此外,以不同等离子弧功率沉积的铁基金属玻璃涂层显示出相似的稳态摩擦系数(0.8-0.9),但是它们的磨损率随等离子弧功率的变化而变化。特别地,具有最高硬度的铁基金属玻璃涂层表现出最佳的抗磨损能力,这是在滑动过程中硬度与脆性断裂以及涂层的磨耗之间折衷的结果。

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