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Tribological behaviour of Si3N4–BN ceramic materials for dry sliding applications

机译:Si3N4–BN陶瓷材料在干式滑动应用中的摩擦学行为

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摘要

The main objective of this paper is to help on the clarification of the lack of consensus in the bibliographic data concerning the tribological behaviour of Si3N4–BN omposites. Unlubricated sliding tests by pin-on-disc were carried out with three grades of composite materials with 10, 18 and 25 vol.% of BN. The addition of BN to the Si3N4 matrix resulted in a slight reduction of the friction coefficient, which decreased from 0.82 for monolithic Si3N4 to 0.67 for Si3N4–10%BN materials. Wear coefficients (K) were above 10−5 mm3 N−1 m−1 for all materials tested and increased sharply with increases in BN volume fraction greater than 10%, e.g. K ∼ 10−3 mm3 N−1 m−1 for Si3N4–25%BN. The lowest values of friction and wear coefficients were obtained when the composites were tested with the BNplatelets oriented parallel to the sliding direction. The morphological study of the worn surfaces revealed generalised brittle intergranular icrocracking at the dispersoid/matrix interface as the main wear mechanism. Under the experimental conditions of this study, the formation of stable protective layers of the soft lubricious oxide H3BO3, or the solid lubricant BN·H2O, was not observed.
机译:本文的主要目的是帮助澄清关于Si3N4–BN复合材料的摩擦学行为的书目数据缺乏共识。使用三种等级的复合材料(含10%,18%和25%的BN)通过销钉盘进行了无润滑的滑动测试。在Si3N4基体中添加BN导致摩擦系数略有降低,从整体式Si3N4的0.82降低至Si3N4-10%BN材料的0.67。对于所有测试材料,磨损系数(K)均在10-5 mm3 N-1 m-1以上,并且随着BN体积分数的增加(例如大于10%)而急剧增加。对于Si3N4-25%BN,K〜10-3 mm3 N-1 m-1。当使用平行于滑动方向取向的BN板测试复合材料时,获得最低的摩擦系数和磨损系数。磨损表面的形态研究表明,弥散性的晶间裂纹是在弥散体/基体界面的主要磨损机理。在这项研究的实验条件下,未观察到形成稳定的润滑性软氧化物H3BO3或固体润滑剂BN·H2O的保护层。

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