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EFFECT OF APPLIED PRESSURE ON THE TRIBOLOGICAL BEHAVIOUR OF DUAL PARTICLE SIZE RUTILE REINFORCED LM13 ALLOY COMPOSITE

机译:施加压力对双粒径金红石增强LM13合金复合材料摩擦学行为的影响

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The tribological behavior of Dual Particles Size (DPS) rutile reinforced LM13 alloy composite was investigated under varying applied pressure from 125 kPa to 625 kPa at a constant sliding speed of 1.6 m/s. In the present studies, 15 wt.% of rutile particles of different sizes (50-75 μm and 106-125 μm) are reinforced in the Al-12Si alloy (LM13) by liquid metallurgy route. Micro-hardness of the prepared samples was measured in different phases. Microstructure, wear mechanism and surface morphology of the wear surfaces and debris was observed under optical and scanning electron microscope. The change in wear behavior has been explained with reference to the observed EDS analysis of the wear track and debris. However, an interesting change in wear feature, mild to severe wear transition at critical pressure was noticed in wear behavior of the composite. The Al-DPS composite has immense potential to be used as a component material for tribological applications.
机译:双颗粒尺寸(DPS)金红石增强LM13合金复合物的摩擦学行为在0.6m / s的恒定滑动速度下从125kPa至625kPa的不同施加压力进行研究。在本研究中,通过液体冶金途径在Al-12Si合金(LM13)中加强了不同尺寸(50-75μm和106-125μm)的熔融颗粒的金红石颗粒的百分比。在不同的相中测量制备样品的微硬度。在光学和扫描电子显微镜下观察到磨损表面和碎片的微观结构,磨损机理和表面形态。已经参考了磨损轨道和碎片的观察到的EDS分析来解释磨损行为的变化。然而,在复合材料的磨损行为中,注意到磨损特征的有趣变化,轻度至严重磨损过渡。 Al-DPS复合材料具有巨大的潜力,可用作摩擦学应用的组件材料。

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