首页> 外文期刊>Transactions of the Indian Institute of Metals >Effect of Centrifugal Speed in Abrasive Wear Behavior of Al-Si5Cu3/SiC Functionally Graded Composite Fabricated by Centrifugal Casting
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Effect of Centrifugal Speed in Abrasive Wear Behavior of Al-Si5Cu3/SiC Functionally Graded Composite Fabricated by Centrifugal Casting

机译:离心速度在离心铸造制造的Al-Si5Cu3 / SiC功能梯度复合材料中的磨料磨损行为的影响

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Centrifugal casting was adopted for fabricating AlSi5Cu3/10 wt% SiC functionally graded metal matrix composite under three different centrifugal speeds of 800, 1000 and 1200 rpm, and hollow cylindrical components (phi(out) 150 x phi(in) 132 x 150 mm) were obtained. Microstructures of outer and inner periphery of all composites were observed through optical microscope and micro hardness of outer, intermediate and inner region of composite was tested using Vicker's hardness tester. Results revealed that outer region of the composites centrifuged at all speeds have particle rich region with higher hardness. Abrasive wear experiments were conducted only on surface of particle rich region based on Taguchi's technique by varying parameters such as centrifugal speed of casting process, rotating speed and applied load of abrasive wear tester. Analysis of variance results revealed that, centrifugal speed had highest significance on wear rate. Abraded surfaces were examined using scanning electron microscope and the maximum wear resistance was observed on particle rich zone of composite centrifuged at 1200 rpm.
机译:采用离心铸件在800,000和1200rpm的三种不同离心速度下制造Alsi5Cu3 / 10wt%SiC功能梯度金属基质复合材料,以及中空圆柱形部件(PHI(OUT)150 x PHI(IN)132×150mm)获得了。通过光学显微镜观察所有复合材料的外周和内周的微观结构,使用维基硬度测试仪测试复合材料的外部和内部区域的微硬度。结果表明,在所有速度下离心的复合材料的外部区域具有富含硬度的粒子富颗粒。通过不同的参数,仅基于Taguchi的技术进行粒子富粒子区域的颗粒状磨损区域进行磨料磨损实验,例如铸造工艺的离心速度,旋转速度和磨料磨损测试仪的施加载荷。方差率的分析显示,离心速度对磨损率具有最高意义。使用扫描电子显微镜检查磨损表面,并在1200rpm以1200rpm离心的复合材料区域上观察到最大耐磨性。

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