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首页> 外文期刊>CERAMICS INTERNATIONAL >Influence of SiC ceramic reinforcement size in establishing wear mechanisms and wear maps of ultrafine grained AA6063 composites
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Influence of SiC ceramic reinforcement size in establishing wear mechanisms and wear maps of ultrafine grained AA6063 composites

机译:SiC陶瓷加强尺寸在建立超细颗粒AA6063复合材料的磨损机制和磨损地图中的影响

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摘要

This paper described the influence of varying sizes of SiC ceramic reinforcement (coarse (12 mu m), fine (1 mu m) and nano (45 nm)) in establishing the wear mechanisms and the wear mechanism maps of ultrafine grained (UFG) AA6063/4 wt%SiC composites. The UFG composites were developed by a hybrid manufacturing route of stir casting and cryorolling. The pin-on-disc machine under normal loads of 10-50 N and sliding speeds of 0.5-2 m/s was used to investigate wear behavior. The synergetic effect of cryorolling and varying ceramic reinforcement size has resulted in microstructural modification and has reducing effect on specific wear rate. Microstructural characterization revealed that, cryorolling has accumulated high dislocation density and arrested recovery and recrystallization at liquid nitrogen temperature. Frictional heat generated at wear surface with increase in sliding speed and load has activated the dynamic recovery, recrystallization and precipitation which further increased the hardness and reduced the specific wear rate. The wear mechanisms were established for UFG materials. The wear mechanism maps were constructed and correlated with the microstructures of worn surfaces of UFG materials to identify the dominant wear mechanism.
机译:本文描述了SiC陶瓷增强件(粗(12μm),细(1μm)和纳米(45nm))的不同尺寸的影响建立了超细晶粒(UFG)AA6063的磨损机构和磨损机理图/ 4wt%SiC复合材料。 UFG复合材料是由搅拌和低温的混合制造路径开发的。在10-50 n的正常负载下的磁盘磁盘机和0.5-2m / s的滑动速度用于研究磨损行为。低温和不同陶瓷增强尺寸的协同作用导致微观结构改性,并且对特定磨损率降低了效果。微观结构表征揭示了,低温率积累了液氮温度的高位脱位密度和被阻滞回收和重结晶。在磨损表面产生的摩擦热随着滑动速度和负荷而增加,活化了动态回收,再结晶和沉淀,进一步增加了硬度并降低了特定的磨损率。为UFG材料建立了磨损机制。磨损机制图与UFG材料的磨损表面的微观结构构成和相关,以识别显性磨损机构。

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