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Ab Initio Molecular Dynamics Simulation of Tribochemical Reactions Involving Phosphorus Additives at Sliding Iron Interfaces

机译:滑铁界面上涉及磷添加剂的摩擦化学反应的从头算分子动力学模拟

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We performed, for the first time to our knowledge, fully ab initio molecular dynamics simulations of additive tribochemistry in boundary lubrication conditions. We consider an organophosphourus additive that has been experimentally shown to reduce friction in steel-on-steel sliding contacts thanks to the tribologically-induced formation of an iron phosphide tribofilm. The simulations allow us to observe in real time the molecular dissociation at the sliding iron interface under pressure and to understand the mechanism of iron phosphide formation. We discuss the role played by the mechanical stress by comparing the activation times for molecular dissociation observed in the tribological simulations at different applied loads with that expected on the basis of the dissociation barrier.
机译:据我们所知,我们第一次在边界润滑条件下对添加剂摩擦化学进行了从头开始的分子动力学模拟。我们认为有机磷添加剂已通过实验证明可减少摩擦,这是由于摩擦学上引起的磷化铁摩擦膜的形成,从而降低了钢对钢滑动接触中的摩擦。模拟使我们能够实时观察在压力下滑动铁界面上的分子解离,并了解磷化铁形成的机理。我们通过比较在不同载荷下的摩擦学模拟中观察到的分子解离的激活时间与根据解离势垒预期的时间,来讨论机械应力所起的作用。

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