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Investigation and Optimization of Sn/Gr Lubricants Effects on Cold Extrudability of Fe-TiC Nanocomposite Using Taguchi Robust Design Method

机译:Taguchi稳健设计方法研究和优化Sn / Gr润滑剂对Fe-TiC纳米复合材料冷挤压性能的影响

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The present study deals with the effects of both tin (Sn) and graphite (Gr) powders on the cold extrudability of Fe-TiC nanocomposites as lubricant. The production process includes low-energy ball milling, powder metallurgy and cold direct Extrusion. Due to various factors influencing the extrudability of the Fe-TiC nanocomposites, such as milling time, rate of extrusion, type and content of lubricant and etc, Taguchi robust design method of system optimization was used to determine the approximate contribution percent (% ρ) of each factor. In order to investigation of Fe-TiC properties, samples with best quality of extrusion were analyzed by XRD and SEM investigations. The results indicate that, sitting the atomic layers of Sn lubricant between Fe and TiC particles leads to decreasing the friction. In this case sliding the particles on each other is easier and a part of the load is applied on lubricant. The results of extrusion of samples indicate that using 2% Sn admixed and die wall graphite lubrication can improve cold extrudability of Fe-TiC nanocomposites.
机译:本研究涉及锡(Sn)和石墨(Gr)粉末对Fe-TiC纳米复合材料作为润滑剂的冷挤压性能的影响。生产过程包括低能球磨,粉末冶金和冷直接挤出。由于各种因素会影响Fe-TiC纳米复合材料的可挤出性,例如研磨时间,挤出速率,润滑剂的类型和含量等,因此使用Taguchi系统优化的稳健设计方法确定近似贡献百分比(%ρ)。每个因素。为了研究Fe-TiC的性能,通过XRD和SEM研究分析了具有最佳挤出质量的样品。结果表明,将Sn润滑剂的原子层置于Fe和TiC颗粒之间可降低摩擦。在这种情况下,颗粒之间的滑动比较容易,并且一部分负载会施加在润滑剂上。样品的挤出结果表明,使用2%Sn混合和模壁石墨润滑可以改善Fe-TiC纳米复合材料的冷挤出性。

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