Improved performance of hydrodynamic bearings by proactive adjustment

J. K. Martin
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引用次数: 8

Abstract

There has been a number of initiatives launched in the field of lubrication as potential sources of improvements in energy efficiency in a wide range of engineering products, plant and processes. Attention is being focussed on bearings to improve both performance and efficiency in fields such as automotive, machine tools, industrial and power generation plant. This paper reviews some of the background to these drives and illustrates how a novel design of adjustable fluid film hydrodynamic journal type bearing shows promise to both improve performance and save energy. Theoretical modelling and practical tests have demonstrated clear improvements over conventional fluid film bearings, along with a number of other characteristics offering benefits that may be of interest to designers and users of such bearings.
通过主动调整提高了流体动力轴承的性能
在润滑领域已经推出了许多举措,作为在广泛的工程产品、工厂和工艺中提高能源效率的潜在来源。人们的注意力集中在轴承上,以提高汽车、机床、工业和发电厂等领域的性能和效率。本文回顾了这些驱动器的一些背景,并说明了一种新型的可调液膜流体动力轴颈式轴承的设计如何既能提高性能又能节约能源。理论建模和实际测试表明,明显优于传统的流体膜轴承,以及一些其他特性提供的好处,可能是感兴趣的设计师和用户的这种轴承。
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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来源期刊
Mecanique & Industries
Mecanique & Industries 工程技术-工程:机械
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