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首页> 外文期刊>Indian journal of engineering and materials sciences >Effect of process parameters on the formation of Fe-Al intermetallic coating fabricated by mechanical alloying
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Effect of process parameters on the formation of Fe-Al intermetallic coating fabricated by mechanical alloying

机译:工艺参数对机械合金化制备Fe-Al金属间化合物涂层的影响

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摘要

Fe-Al intermetallic coatings have relatively high corrosion resistance, superior electrical resistivity and low thermal conductivity at elevated temperatures under oxidizing atmosphere. In this study, the Fe-Al coatings are fabricated on the steel substrate by mechanical alloying method. The steel substrate surface is hardened and activated as a result of the high-energy impact of balls. Formation of such intermetallic phase increase the local temperature and Fe-Al intermetallic phases are formed in the coating layer. The effects of milling speed, particle size and milling time on thickness of Fe-Al coatings in a planetary ball-mill are investigated by Taguchi method to determine the optimal conditions. Coating thickness is employed as the response to evaluate the effect of the coating parameters. It is found that an increase in the applied milling time and milling speed significantly affected the coating thickness and densification level of the deposited coatings while the particle size is found to be statistically insignificant. The results indicated that the milling time has the most significant contribution (81%) on the coating process while the milling speed time has a lower effect (19 %).
机译:Fe-Al金属间化合物涂层在高温下在氧化气氛下具有相对较高的耐腐蚀性,优异的电阻率和较低的导热率。在这项研究中,通过机械合金化方法在钢基底上制备Fe-Al涂层。钢球表面由于钢球的高能冲击而硬化和活化。这种金属间相的形成增加了局部温度,并且在涂层中形成了Fe-Al金属间相。利用Taguchi方法研究了球磨机中研磨速度,粒度和研磨时间对Fe-Al涂层厚度的影响,以确定最佳条件。涂层厚度用作响应以评估涂层参数的影响。发现所施加的研磨时间和研磨速度的增加显着影响了涂层厚度和沉积涂层的致密化水平,而发现粒度在统计学上是无关紧要的。结果表明,铣削时间对涂层工艺的影响最大(81%),而铣削速度时间的影响较小(19%)。

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