顶箔刚度变化对空气箔止推轴承(AFTB)性能的影响

H. E. Abhishek, Dr. R. N. Ravikumar
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引用次数: 0

摘要

气膜推力轴承 (AFTB) 是燃气轮机和涡轮增压器等各种旋转机械中的重要部件,旨在承受更大载荷的同时最大限度地减少摩擦和磨损。该项目旨在研究顶箔刚度的变化对气箔推力轴承性能的影响。顶箔刚度是影响轴承承载能力、稳定性和整体效率的关键参数。顶箔几何形状、顶箔扇形角、顶箔初始角和顶箔厚度等几何参数以及转轮速度、顶箔与转轮之间的间隙等运行参数都会影响推力轴承的承载能力。研究包括静态分析和动态分析,以全面评估顶箔刚度的变化如何影响轴承的运行特性。研究考虑了顶箔几何形状、顶箔扇形角、顶箔初始角和顶箔厚度等几何参数。这些分析结果将用于验证不同的几何参数如何影响空气箔推力轴承的刚度。这将为具有不同顶箔刚度的气膜推力轴承的实际性能提供实用的见解。这项研究的结果将对各种工业应用中气膜推力轴承的设计和优化产生重大影响。通过了解顶箔刚度的变化如何影响轴承的性能,工程师和研究人员可以提高旋转机械的效率和可靠性,最终有助于提高能源效率和降低维护成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of varying stiffness of top foil on the performance of Air foil thrust bearing (AFTB)
Air foil thrust bearings (AFTB) are essential components in various rotating machinery, such as gas turbines and turbochargers, designed to support higher loads while minimizing friction and wear. The project aims to investigate the effect of varying stiffness of the top foil on the performance of air foil thrust bearings. The stiffness of the top foil is a critical parameter that influences the bearing's load-carrying capacity, stability, and overall efficiency. The geometric parameters like foil geometry, sector angle of top foil, initial angle of top foil and thickness of top foil and operating parameters like runner speed, gap between top foil and runner, will affect the load carrying capacity of the thrust bearing. The study involves both static analysis and dynamic analysis to comprehensively evaluate how changes in top foil stiffness affect the bearing's operational characteristics. The geometric parameters like foil geometry, sector angle of top foil, initial angle of top foil and thickness of top foil are considered for the study. The results of these analyses will be used to validate how the varying geometrical parameters impact the stiffness of the Air foil thrust bearing. This will provide practical insights into the real-world performance of air foil thrust bearings with varying top foil stiffness. The findings of this research will have significant implications for the design and optimization of air foil thrust bearings in various industrial applications. By understanding how changes in top foil stiffness affect the bearing's performance, engineers and researchers can enhance the efficiency and reliability of rotating machinery, ultimately contributing to improved energy efficiency and reduced maintenance costs.
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