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首页> 外文期刊>Journal of Tribology >A lattice-based cellular automata modeling approach for granular flow lubrication
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A lattice-based cellular automata modeling approach for granular flow lubrication

机译:基于晶格的细胞自动机建模方法用于颗粒流润滑

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Liquid lubricants break down at extreme temperatures and promote stiction in micro-anoscale environments. Consequently, using flows of solid granular particles as a "dry" lubrication mechanism in sliding contacts was proposed because of their ability to carry loads and accommodate surface velocities. Granular flows are highly complex flows that in many ways act similar to fluids, yet are difficult to predict because they are not well understood. Granular flows are composed of discrete particles that display liquid and solid lubricant behavior with time. This work describes the usefulness of employing lattice-based cellular automata (CA), a deterministic rule-based mathematics approach, as a tool for modeling granular flows in tribological contacts. In the past work, granular flows have been modeled rising the granular kinetic lubrication (GKL) continuum modeling approach. While the CA modeling approach is constructed entirely from rules, results art in good agreement with results front the GKL model benchmark results. Velocity results of the CA model capture the well-known slip behavior of granular flows near boundaries. Solid fraction results capture the well-known granular flow characteristic of a highly concentrated center region. CA results for slip versus roughness also agree with GKL theory.
机译:液体润滑剂在极端温度下会分解,并在微/纳米级环境中促进粘连。因此,提出了使用固体颗粒流作为滑动接触中的“干”润滑机制,因为它们具有承载载荷和适应表面速度的能力。颗粒流是高度复杂的流,其行为在许多方面都类似于流体,但由于无法很好地理解而难以预测。颗粒流由离散的颗粒组成,这些颗粒随时间显示液体和固体润滑剂的行为。这项工作描述了使用基于格的细胞自动机(CA)(一种基于确定性规则的数学方法)作为对摩擦接触中的颗粒流进行建模的工具的有用性。在过去的工作中,已经对颗粒流动进行了建模,从而提高了颗粒动力学润滑(GKL)连续介质建模方法。虽然CA建模方法完全由规则构成,但结果与GKL模型基准测试结果之间的一致性很好。 CA模型的速度结果捕获了边界附近颗粒流的众所周知的滑动行为。固体分数结果捕获了高度集中的中心区域的众所周知的颗粒流动特性。滑移与粗糙度的CA结果也与GKL理论一致。

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