首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Investigation of T4 and T6 heat treatment on the wear properties of sillimanite reinforced LM30 aluminium alloy composites
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Investigation of T4 and T6 heat treatment on the wear properties of sillimanite reinforced LM30 aluminium alloy composites

机译:Sillimanite加强LM30铝合金复合材料磨损性能T4和T6热处理研究

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摘要

In the present work, an attempt has been made to study the effects of heat treatment on the dry sliding wear properties of sillimanite reinforced LM30 aluminium matrix composites. Stir casting process was used for the processing of the composites. Composites with two different particle sizes (fine 1-20 mu m and coarse 75-106 mu m) and different weight ratio (3-15 wt% in the step size of 3 wt%) were fabricated. Further, the fabricated composites were subjected to the heat treatment as per T4 and T6 process. The composites were heated (at 540 degrees C), held at that temperature for 0.5-2 h and quenched in water. For T4, the composites were subjected to natural aging of 10-30 days at room temperature and for T6, composites were artificially aged by reheating to a temperature of 150-250 degrees C, holding there for 1-5 h, followed by air cooling. Hardness testing revealed that the composites subjected to T6 heat treatment exhibited superior hardness in comparison to normal composites and T4 heat treated composites. Further, wear analysis revealed that heat treatment of the composites affected the wear properties of the composites. Maximum improvement in the wear rate was observed for T6 heat treated composites. Also, the coefficient of friction of T6 heat treated composites was lower than other composites. Finally, SEM analysis revealed that the surface damage observed for T6 composites was lesser in comparison to other. In the initial period of wear abrasive wear was dominant and with increase in the sliding distance adhesive/delamination wear mechanism was dominant. Therefore, T6 composites revealed a superior combination of wear properties, and found to be in close comparison to grey cast iron used in the brake drum applications. Hence, 15 wt% reinforced T6 composites can be used as an alternate material for brake drum applications.
机译:在本作本作中,已经尝试研究热处理对Sillimanite加强LM30铝基基复合材料的干式滑动磨损性能的影响。搅拌铸造工艺用于加工复合材料。制造具有两种不同粒径的复合材料(细1-20μm和粗75-106μm)和不同的重量比(步长3wt%的3-15wt%)。此外,根据T4和T6工艺对制造的复合材料进行热处理。将复合材料(在540℃)中加热,在该温度下保持0.5-2小时并在水中淬灭。对于T4,将复合材料在室温下进行10-30天的自然老化,对于T6,通过再加热至150-250℃的温度,将复合材料在其中保持1-5小时,然后是空气冷却。硬度测试显示,与正常复合材料和T4热处理复合材料相比,经过T6热处理的复合材料表现出优异的硬度。此外,磨损分析显示复合材料的热处理影响了复合材料的磨损性质。对于T6热处理复合材料,观察到磨损率的最大改善。而且,T6热处理复合材料的摩擦系数低于其他复合材料。最后,SEM分析表明,与其他相比,对T6复合材料观察到的表面损伤较小。在磨损磨损磨损的初始时段中,占据主导,随着滑动距离粘合剂/分层磨损机理的占优势。因此,T6复合材料揭示了磨损性质的优异组合,并且发现与制动鼓应用中使用的灰铸铁相比紧密相比。因此,15wt%增强T6复合材料可用作制动鼓应用的替代材料。

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