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Pressure-dependent anti-wear mechanisms of synthetic magnesium silicate hydroxide nanoparticles

机译:合成镁硅酸镁纳米颗粒的压力依赖性抗磨机构

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摘要

The paper describes series of four-ball tribological and dichromatic interference test results obtained under different contact pressures and performed for polyalphaolefin (PAO) suspended synthetic magnesium silicate hydroxide (MSH) nanoparticles. Results show that MSH as additives in oil exhibits excellent anti-wear performance, and even results in 'zero wear' under a maximum Hertzian pressure of 2.71 GPa. Their anti-wear mechanisms are various depending on the contact pressure. Under a relative mild pressure, MSH can effectively increase the oil film thickness, thus to achieve a substantial reduction in wear. As the test pressure becomes severer, a tribofilm containing Mg, Si and O would form on the worn surface to provide a secondary anti-wear guarantee.
机译:本文描述了在不同接触压力下获得的四球摩擦学和二色干涉测试结果,并针对多醛(PAO)悬浮合成镁硅酸盐(MSH)纳米颗粒进行。 结果表明,MSH作为油中的添加剂表现出优异的抗磨损性能,甚至导致在最大偏振压力为2.71GPa的“零磨损”。 它们的抗磨损机构取决于接触压力。 在相对温和的压力下,MSH可以有效地增加油膜厚度,从而实现磨损的显着减少。 随着测试压力变得严重,含有Mg,Si和O的呋喃酚将在磨损的表面上形成,以提供二次抗磨损保证。

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