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首页> 外文期刊>International Journal of Rotating Machinery >Coupled Vibration of Unshrouded Centrifugal CompressorImpellers. Part I: Experimental Investigation
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Coupled Vibration of Unshrouded Centrifugal CompressorImpellers. Part I: Experimental Investigation

机译:无罩离心式压缩机叶轮的耦合振动。第一部分:实验研究

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摘要

The increased use of small gas turbines and turbochargers in different technical fields has led to the development of highly-loaded centrifugal compressors with extremely thin blades. Due to the high rotational speed and the corresponding centrifugal load, the shape of the impeller hub must also be optimized. This has led to a reduction of the thickness of the impeller disc in the outlet region. The thin parts of the impeller are very sensitive and may be damaged by the excitation of dangerous blade vibrations.dangerous blade vibrations. Experimental investigations by means of holographic interferometry and telemetry were carried out for two different impeller types; one with radial-ending blades and the other with backswept blades. The results presented in Part I of the paper are able to explain the dominance of coupling effects between the blades and the disc in the middle and higher frequency range of the two tested impellers. Especially excitations caused by downstream sources such as vaned diffusers can endanger the blades and the impeller.The finite element (FE) code computations presented in Part II of the paper to investigate the coupled vibration behavior of the whole impeller were found to be in close agreement with the experimental results.
机译:小型燃气轮机和涡轮增压器在不同技术领域的使用增加,导致了具有超薄叶片的高负荷离心压缩机的发展。由于高转速和相应的离心负荷,叶轮毂的形状也必须优化。这导致叶轮盘在出口区域的厚度减小。叶轮的细小部分非常敏感,可能会由于危险的叶片振动和危险的叶片振动而被损坏。通过全息干涉法和遥测法对两种不同类型的叶轮进行了实验研究。一个带有径向末端的刀片,另一个带有后掠刀片。本文第一部分介绍的结果能够解释在两个被测试叶轮的中频和高频范围内,叶片与圆盘之间的耦合效应的优势。特别是由下游源(如叶片扩压器)引起的激振会危害叶片和叶轮。本文第二部分提出的用于研究整个叶轮耦合振动特性的有限元(FE)代码计算被发现是非常一致的。与实验结果。

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