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首页> 外文期刊>Journal of the European Ceramic Society >Microstructural effects on the sliding wear of transparent magnesium-aluminate spinel
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Microstructural effects on the sliding wear of transparent magnesium-aluminate spinel

机译:微观结构对透明铝酸镁尖晶石滑动磨损的影响

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摘要

Grain size effects have been investigated in the lubricated sliding wear of three transparent magnesium aluminate (MgAl_2O_4) spinel materials with different grains sizes identified as: Nano, Fine, and Coarse. Only Fine spinel shows classical wear behavior, which is characterized by initial mild wear followed by a sharp transition to severe fracture-controlled wear. Worn surfaces of Fine spinel show extensive grain pullout, consistent with intergranular mode of fracture found in that spinel. Nano and Coarse spinels both show gradual transition from mild wear to severe wear, and both have significantly lower overall wear rates compared to Fine spinel. Worn surfaces in both Nano and Coarse spinels show transgranular fracture and material removal, which is reminiscent of lateral-crack induced chipping. The transgranular fracture mode in Nano spinel can be attributed to stronger grain boundaries in that spinel, which could be due to the Y_2O_3 sintering additive used for grain refinement. Whilst the large scale of the grains in Coarse spinel could be responsible for the transgranular fracture observed in that spinel.
机译:研究了三种透明铝酸镁(MgAl_2O_4)尖晶石材料的润滑滑动磨损中的晶粒尺寸效应,这些材料的不同晶粒尺寸分别为:纳米,精细和粗大。只有细尖晶石表现出经典的磨损行为,其特征是最初的轻微磨损,然后急剧过渡到严重的断裂控制磨损。细尖晶石的磨损表面显示出广泛的晶粒拉出,与该尖晶石中的晶间断裂模式一致。纳米尖晶石和粗尖晶石均显示出从轻度磨损到严重磨损的逐渐过渡,并且与精细尖晶石相比,两者的整体磨损率均明显降低。纳米尖晶石和粗尖晶石的磨损表面均显示出晶间断裂和材料去除现象,这让人想起了横向裂纹引起的碎裂。纳米尖晶石中的跨晶断裂模式可归因于该尖晶石中更强的晶界,这可能是由于用于晶粒细化的Y_2O_3烧结添加剂所致。粗尖晶石中大量晶粒可能是该尖晶石中观察到的经晶断裂的原因。

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