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Effect of load on the tribological properties of Si3N4-hBN composite ceramics sliding against Si3N4

机译:载荷对Si3N4滑动Si3N4-HBN复合陶瓷摩擦学性能的影响

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Purpose The effect of the load on the tribological properties of Si3N4-hBN sliding against Si3N4 were investigated under dry and water lubrication condition. Design/methodology/approach Using a MMU-5G type pin-on-disc friction and wear tester. Findings Under the dry friction, the wear mechanism was dominated by ploughing and abrasive wear, and the contact status was elastic contact under the load less than 25 N. With the increase of the load, the friction coefficient decreased; the main wear mechanism was fatigue fracture, and the contact status turned into plastic contact. Under water lubrication, effective lubrication film could be produced on the worn surface, and it had a function of fluid lubrication under the load less than 15 N. With the increase of the load, the pin and the disc came into direct contact, and the friction and wear of the pairs were aggravated; the wear mechanism changed from chemical wear into abrasive wear and brittle spalling. Originality/value The study on the effect of the load on the tribological properties of Si3N4-hBN sliding against Si3N4 was investigated under dry and water lubrication condition in the way of contact stress.
机译:目的,在干燥和水润滑条件下研究了负荷对Si3N4滑动抗Si3N4的摩擦学特性的影响。使用MMU-5G型引脚盘式摩擦和磨损测试仪设计/方法/方法。在干摩擦下的发现,磨损机构通过耕作磨损主导,并且接触状态在小于25n的负载下弹性接触。随着负荷的增加,摩擦系数减小;主磨损机制是疲劳骨折,接触状态变成塑料接触。在水润滑下,可以在磨损的表面上产生有效的润滑膜,并且在载荷下的流体润滑的函数在小于15n的载荷下。随着负载的增加,销和盘直接接触,并且对成对的摩擦和磨损加剧;磨损机构从化学磨损变为磨料磨损和脆性剥落。原创性/值在干燥和水润滑条件下研究了对Si3N4-HBN的摩擦学特性对Si3N4滑动摩擦学性质的研究,以接触应力。

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