洞察振动源在涡轮机

Q4 Engineering
G. Moneta, J. Jachimowicz, M. Pietrzakowski, Adam Doligalski, J. Szwedowicz
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引用次数: 2

摘要

尽管涡轮发动机经过了近100年的发展和设计,但叶片振动仍然是一个巨大的工程挑战。在高温高压的恶劣环境下,旋转涡轮叶片的振动导致循环振荡,从而产生交变应力和应变。在现代航空发动机中,高热流速度可能会在金属表面产生侵蚀和腐蚀点,从而产生非常平均的应力。平均应力和交变应力的结合可能导致意外的发动机故障,特别是在共振条件下。然后,交变应力幅值会超过安全耐久极限,加速高循环疲劳,导致叶片灾难性失效。根据现有的最新技术和新的市场需求,本文对与三个设计水平相关的激励机制进行了修改:(i)叶片设计等组件,(ii)由叶片和叶片组成的涡轮级设计,(iii)燃烧室和涡轮的系统设计。本文综述了在设计过程中防止旋转涡轮和压气机叶片高循环疲劳的最佳实践。最后,对试验验证的利弊和所需的测量设备进行了简要的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Insight Into Vibration Sources in Turbines
Abstract Despite of nearly 100 years of turbine engine development and design, blade vibrations remain a great engineering challenge. The rotating turbine blades’ vibrations lead to cyclic oscillations, which result in alternating stress and strain in harsh environments of high temperature and pressure. In modern aeroengines, high hot flow velocities might generate erosion and corrosion pitting on the metal surfaces, that leverage remarkably mean stresses. The combination of both mean and alternating stresses can lead to unexpected engine failures, especially under resonance conditions. Then, alternating stress amplitudes can exceed the safety endurance limit, what accelerates the high cyclic fatigue leading quickly to catastrophic failure of the blade. Concerning the existing state-of-the-art and new market demands, this paper revises forced vibrations with respect to excitation mechanisms related to three design levels: (i) a component like the blade design, (ii) turbine stage design consisting of vanes and blades and (iii) a system design of a combustor and turbine. This work reviews the best practices for preventing the crotating turbine and compressor blades from High Cyclic Fatigue in the design process. Finally, an engine commissioning is briefly weighed up all the pros and cons to the experimental validations and needed measuring equipment.
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来源期刊
Fatigue of Aircraft Structures
Fatigue of Aircraft Structures Engineering-Safety, Risk, Reliability and Quality
CiteScore
0.40
自引率
0.00%
发文量
0
期刊介绍: The publication focuses on problems of aeronautical fatigue and structural integrity. The preferred topics include: full-scale fatigue testing of aircraft and aircraft structural components, fatigue of materials and structures, advanced materials and innovative structural concepts, damage tolerant design of aircraft structure, life extension and management of ageing fleets, structural health monitoring and loads, fatigue crack growth and life prediction methods, NDT inspections, airworthiness considerations.
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