首页> 外文会议>Conference on Technologies for Synthetic Environments: Hardware-in-the-Loop Testing VIII Apr 21-22, 2003 Orlando, Florida, USA >An application of holographic interferometry for dynamic vibration analysis of a jet engine turbine compressor rotor
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An application of holographic interferometry for dynamic vibration analysis of a jet engine turbine compressor rotor

机译:全息干涉术在喷气发动机涡轮压缩机转子动态振动分析中的应用

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Holographic Interferometry has been successfully employed to characterize the materials and behavior of diverse types of structures under dynamic stress . Specialized variations of this technology have also been applied to define dynamic and vibration related structural behavior. Such applications of holographic technique offer some of the most effective methods of modal and dynamic analysis available. Real-time dynamic testing of the modal and mechanical behavior of jet engine turbine, rotor, vane, and compressor structures has always required advanced instrumentation for data collection in either simulated flight operation test or computer-based modeling and simulations. Advanced optical holography techniques are alternate methods which result in actual full-field behavioral data in a noninvasive, noncontact environment. These methods offer significant insight in both the development and subsequent operational test and modeling of advanced jet engine turbine and compressor rotor structures and their integration with total vehicle system dynamics. Structures and materials can be analyzed with very low amplitude excitation and the resultant data can be used to adjust the accuracy of mathematically derived structural and behavioral models. Holographic Interferometry offers a powerful tool to aid in the developmental engineering of turbine rotor and compressor structures for high stress applications. Aircraft engine applications in particular must consider operational environments where extremes in vibration and impulsive as well as continuous mechanical stress can affect both operation and structural stability. These considerations present ideal requisites for analysis using advanced holographic methods in the initial design and test of turbine rotor components. Holographic techniques are nondestructive, real-time, and definitive in allowing the identification of vibrational modes, displacements, and motion geometries. Such information can be crucial to the determination of mechanical configurations and designs as well as critical operational parameters of turbine structural components or unit turbine components fabricated from advanced and exotic new materials or using new fabrication methods. Anomalous behavioral characteristics can be directly related to hidden structural or mounting anomalies and defects.
机译:全息干涉法已经成功地用于表征在动态应力下不同类型结构的材料和行为。该技术的特殊变体也已应用于定义动态和振动相关的结构行为。全息技术的这种应用提供了一些最有效的模态和动态分析方法。喷气发动机涡轮,转子,叶片和压缩机结构的模态和机械性能的实时动态测试一直需要先进的仪器来进行模拟飞行操作测试或基于计算机的建模和仿真中的数据收集。先进的光学全息技术是可替代的方法,可在非侵入性,非接触式环境中产生实际的全场行为数据。这些方法在先进喷气发动机涡轮和压缩机转子结构的开发,后续运行测试和建模以及它们与整个车辆系统动力学的集成方面都提供了重要的见识。可以使用非常低的振幅激励来分析结构和材料,并且可以使用所得数据来调整数学上得出的结构和行为模型的准确性。全息干涉术提供了一种强大的工具,可帮助开发用于高应力应用的涡轮转子和压缩机结构。特别是飞机发动机的应用必须考虑到这样的运行环境,其中极端的振动和冲击以及持续的机械应力会影响运行和结构稳定性。这些考虑因素为涡轮转子组件的初始设计和测试中使用高级全息方法进行分析提供了理想的条件。全息技术在确定振动模式,位移和运动几何形状方面是无损的,实时的和确定的。这样的信息对于确定机械结构和设计以及由先进的新奇材料或使用新的制造方法制造的涡轮机结构部件或单元涡轮机部件的关键运行参数至关重要。异常行为特征可能直接与隐藏的结构或安装异常和缺陷有关。

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