Investigations on transitions of lubrication states for water lubricated bearing. Part II: further insight into the film thickness ratio lambda

Author:

Xie Zhongliang,Rao Zhu-shi,Ta Na,Liu Ling

Abstract

Purpose As the companion paper of Part I, this paper aims to get more insight into the essence of lambda and to reveal its nature and role in the transition of lubrication states. Mixed lubrication (ML) model with micro-asperities contacts has been discussed in details in Part I. Design/methodology/approach Mimetic algorithm is used to get numerical solutions. Relationships between film thickness ratios and lubrication states transition with different external loads, rotating speeds, radial clearances, elastic modulus, surface hardness and roughness parameters are obtained. Findings The characteristic parameters of transitions from boundary lubrication (BL) to ML and ML to hydrodynamic lubrication (HL) are studied to determine how these parameters change with above factors. Finally, the essence and major influencing factors of lambda are summarized for such bearings. Originality/value In Part II, the authors believe that the paper presents for the first time: further insight into the essence of the lambda ratio, and its role in the lubrication states transition are given; the determinations of the characteristic parameters of transition from BL to ML and ML to HL are investigated for the first time; the characteristic parameters of transitions from BL to ML and ML to HL are also studied to determine how parameters (external load, rotating speed, radial clearance, elastic modulus, surface hardness and roughness parameter) change with above factors; a summary of the essence and major influencing factors of lambda for such bearings is given.

Publisher

Emerald

Subject

Surfaces, Coatings and Films,General Energy,Mechanical Engineering

Reference33 articles.

1. The lambda ratio – a critical re-examination;Wear,1994

2. Calculation of stribeck curves for (water) lubricated journal bearings;Tribology International,2007

3. Lubrication mode analysis of articular cartilage using Stribeck surfaces;Journal of Biomechanic,2008

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