A comprehensive review on advancements in compliant structures of gas foil journal bearings

Srusti Priyadarshini, Suraj K Behera
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Abstract

Gas foil journal bearings (GFJBs) are widely considered technically advanced bearings and a viable alternative to conventional rolling element and oil-lubricated bearings in high-speed rotating machinery. GFJBs offer advantages such as reduced maintenance, improved efficiency, and the ability to operate in challenging environments. A traditional GFJB consists of (i) a smooth top foil for the generation of hydrodynamic pressure, (ii) a compliant corrugated foil beneath the top foil for tailoring stiffness, and (iii) a bearing base to hold the foils together. The shape and geometry of corrugated thin foil are primarily designed for the essential stiffness and load-carrying capacity of the bearings. The thickness of thin foils is in the range of 100–150 μm. The fabrication of complaint thin foils to their desired shapes and sizes is quite challenging. Engineers and researchers around the world have designed and published various advanced design structures of GFJBs to improve their static and dynamic characteristics. The corrugated or compliant structure is the most significant component of GFJBs from design and fabrication point of view. Therefore, a modest attempt is made by the authors to review and report systematically on various foil journal bearings reported in open literature. The study covers four primary categories, which are centered around the design of compliant structures, materials, manufacturing processes, and coatings over the years. By analyzing the state-of-the-art advancements, this review aims to identify key areas for further research, explain technological trends, and underline the pivotal role of GFJBs in various high-speed applications across industries.
全面回顾气膜轴颈轴承顺应结构的进展
气浮轴颈轴承(GFJB)被广泛认为是技术先进的轴承,是高速旋转机械中传统滚动轴承和油润滑轴承的可行替代品。GFJB 具有减少维护、提高效率和在恶劣环境中工作的能力等优点。传统的 GFJB 由以下部分组成:(i) 用于产生流体动力压力的光滑顶箔;(ii) 位于顶箔下方用于调整刚度的顺应性波纹箔;(iii) 用于将波纹箔固定在一起的轴承底座。波纹薄箔的形状和几何结构主要是为轴承的基本刚度和承载能力而设计的。薄箔的厚度在 100-150 μm 之间。要将投诉薄片制作成所需的形状和尺寸,难度相当大。世界各地的工程师和研究人员设计并发布了各种先进的 GFJB 设计结构,以改善其静态和动态特性。从设计和制造角度来看,波纹或顺从结构是 GFJB 最重要的组成部分。因此,作者尝试对公开文献中报道的各种箔轴颈轴承进行系统回顾和报告。本研究涵盖四个主要类别,分别围绕多年来的顺应结构、材料、制造工艺和涂层设计。通过分析最新进展,本综述旨在确定进一步研究的关键领域,解释技术趋势,并强调 GFJB 在各行业各种高速应用中的关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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