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Enhancement of tribological performance of centrifuge cast functionally graded Cu–10Sn–5Ni alloy with ceramic reinforcements

机译:陶瓷增强功能铸造功能分级Cu-10Sn-5Ni离心铸造机的摩擦学性能增强

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Functional grade composites Cu–10Sn–5Ni reinforced with 10?wt%SiC and 10?wt%Al2O3, respectively, and their alloy was developed through horizontal centrifuge cast technique. Sample composites and alloy were cast at cylindrical dimensions of Φout100?×?Φin70?×?100?mm. They were later subjected to tribology analysis during non-lubricated sliding. Anti-wear performance variations at inner (0–8?mm) and outer (8–15?mm) wall thicknesses of both composites and alloy were experimented using pin-on-disc tribo-tester. Experimentation with increasingly varied parameters like load and slid distance showed a rising trend of wear and friction. This was observed while comparing between the least (10?N, 500?m) and highest (60?N, 3000?m) varied parameter; for both alloy and composites. Also, a proportional decline in coefficient of friction with increase in slid velocity was exhibited for both composites; whereas alloy showed a linear rise. Worn specimen analysis using scanning electron microscopy on both composites revealed Mechanically Mixed Layer formation at both zones. This caused reduction in friction coefficient at high velocity (6?m/s).
机译:功能性复合材料分别用10wt%SiC和10wt%Al2O3增强的Cu-10Sn-5Ni,其合金是通过水平离心铸造技术开发的。样品复合材料和合金的铸件尺寸为Φout100××Φin70××100μmm。他们后来在非润滑滑动过程中进行了摩擦学分析。复合材料和合金的内壁厚度(0–8?mm)和外壁厚度(8–15?mm)的抗磨性能变化是使用圆盘摩擦试验仪进行的。在不断变化的参数(例如载荷和滑移距离)下进行的实验显示出磨损和摩擦的上升趋势。在比较最小(10?N,500?m)和最高(60?N,3000?m)变化参数时观察到了这一点。适用于合金和复合材料。同样,两种复合材料的摩擦系数均随滑移速度的增加而成比例下降。而合金显示出线性上升。使用扫描电子显微镜对两种复合材料进行的磨损样品分析表明,在两个区域均形成了机械混合层。这导致高速(6μm/ s)时的摩擦系数降低。

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