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Effect of rare-earth species on the wear properties of α sialon and β silicon nitride ceramics under tribochemical type conditions

机译:摩擦化学类型条件下稀土种类对α赛隆和β氮化硅陶瓷磨损性能的影响

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摘要

The wear properties under low loads of β Si_3N_4 and a sialon materials sintered with different rare-earth oxide sintering additives have been studied under dry sliding conditions using block-on-ring wear tests. All the worn surfaces showed an absence of fracture and smooth surfaces with the presence of an oxygen-rich filmlike debris indicating tribochemically induced oxidation of the surfaces. Extensive grain boundary removal was observed on the worn surfaces thought to be due to adhesion between this silicate phase and the tribochemically oxidized surfaces. The resistance to such oxidation and the properties of the residual grain boundary phase are thought to be important parameters affecting the wear behavior under the present testing conditions. For both the β Si_3N_4 and α sialon materials, there was an increase in wear resistance with decreasing cationic radius of the rare earth, thought to be due to improved oxidation resistance, and this was more remarkable in the case of the sialon materials where the incorporation of the sintering additives into the Si_3N_4 structure results in a lower amount of residual boundary phase.
机译:研究了βSi_3N_4和采用不同稀土氧化物烧结添加剂烧结的赛隆材料在低载荷下的磨损性能,采用环对块磨损试验,在干燥滑动条件下进行了研究。所有磨损的表面都没有断裂和光滑的表面,并且存在富氧的薄膜状碎屑,表明摩擦化学诱导了表面的氧化。在磨损的表面上观察到了广泛的晶界去除,这被认为是由于该硅酸盐相与摩擦化学氧化的表面之间的粘附所致。这种抗氧化性和残余晶界相的性质被认为是影响在当前测试条件下的磨损行为的重要参数。对于βSi_3N_4和α赛隆材料,随着稀土阳离子半径的减小,耐磨性均增加,这被认为是由于提高的抗氧化性所致,在掺入了赛隆材料的情况下,这种现象更为明显。烧结添加剂进入Si_3N_4结构导致残余边界相的量降低。

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