Insight into Damping Sources in Turbines

Q4 Engineering
G. Moneta
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引用次数: 0

Abstract

Abstract Blade vibrations in aircraft engines are a significant challenge that must be overcome during the design and development of modern turbine engines. Vibrations lead to cyclic displacements and result in alternating stress and strain in undesired environments (high temperatures, erosion, corrosion of the surface, etc.). Under resonance conditions, stress amplitudes can increase and exceed their safety limits, and in extreme cases, can lead to engine failure. One method to reduce resonance vibrations is to increase damping in the turbine assembly. This paper presents and describes vibration damping sources in the turbine, including aerodynamic, material, and friction damping. Additionally, typical damping values for each damping component are presented and compared.
对汽轮机阻尼源的深入了解
摘要航空发动机叶片振动是现代涡轮发动机设计和开发过程中必须克服的一个重大挑战。振动会导致循环位移,并在不期望的环境中(高温、侵蚀、表面腐蚀等)导致交变应力和应变。在共振条件下,应力振幅可能会增加并超过其安全极限,在极端情况下,可能导致发动机故障。减少共振的一种方法是增加涡轮机组件中的阻尼。本文介绍并描述了涡轮机中的振动阻尼源,包括空气动力学阻尼、材料阻尼和摩擦阻尼。此外,给出并比较了每个阻尼部件的典型阻尼值。
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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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