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Fabrication of Ti-Cu-Al coatings with amorphous microstructure on Ti-6Al-4 V alloy substrate via high-energy mechanical alloying method

机译:高能机械合金化法在Ti-6Al-4 V合金基体上制备非晶态结构的Ti-Cu-Al涂层

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摘要

A high-energy planetary ball mill was applied to fabricate Ti-Cu-Al coating on Ti-6Al-4 V alloy substrate. The microstructure and elemental and phase composition of coatings were studied. The surface SEMimages showed that the rough but densified coating surfaces, the cross-section microstructures as well as the related EDS line scan results illustrated different structures in the coatings, and the XRD results aswell as TEMand corresponding SEAD pattern provided evidences of the existence of amorphous phase in the coatings.Mechanical properties including microhardness and friction and wear behavior were tested respectively. The microhardness testing results indicated that the fabricated coatings could largely strengthen the substrate surface. And the friction and wear resistance were testedwith a ball-on-block sliding configuration,with the testing results showing decrease in both friction coefficients and wear weight loss after mechanical alloying treatment. The analysis and testing results also showed that a proper increase in the applied milling time favored the improvement in the thickness, surface smoothness, densification level, microstructural and chemical homogeneity as well as amorphization degree of the deposited coating. On the basis of two significant action mechanisms associated with a planetary ball mill, a reasonable mechanism was presented for the formation of amorphous phase contained coatings on Ti- 6Al-4 V alloy substrate.
机译:应用高能行星式球磨机在Ti-6Al-4 V合金基底上制备Ti-Cu-Al涂层。研究了涂层的微观结构,元素和相组成。表面SEM图像显示出粗糙但致密的涂层表面,横截面微观结构以及相关的EDS线扫描结果说明了涂层中的不同结构,X射线衍射结果以及TEM和相应的SEAD图案提供了非晶态存在的证据。分别测试了包括显微硬度,摩擦和磨损行为在内的机械性能。显微硬度测试结果表明,所制备的涂层可以大大增强基材表面。并采用滚装滑块方式测试了摩擦磨损性能,测试结果表明,经过机械合金化处理后,摩擦系数和磨损失重均降低。分析和测试结果还表明,适当增加所施加的研磨时间有利于厚度,表面光滑度,致密化水平,微观结构和化学均匀性以及沉积涂层的非晶化程度的改善。基于与行星式球磨机相关的两个重要作用机理,提出了一种合理的机理,用于在Ti-6Al-4V合金基底上形成非晶相含涂层。

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