首页> 外文期刊>Scientific Journal of Silesian University of Technology: Series Transport >VIBRATION ANALYSIS OF A TURBOCHARGER WITH AN ADDITIVELY MANUFACTURED COMPRESSOR WHEEL
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VIBRATION ANALYSIS OF A TURBOCHARGER WITH AN ADDITIVELY MANUFACTURED COMPRESSOR WHEEL

机译:涡轮增压器的振动分析,带有含有瘾制造的压缩机轮

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This article presents the vibration analysis of a turbocharger, whose compression wheel was manufactured using a high-precision additive manufacturing technology. Currently, there are advance studies around the world for the development of parts of innovative fluid-flow machines using additive manufacturing techniques. The experimental research was carried out under conditions of reduced flow temperatures. The tests and the analysis were performed on a wheel manufactured using a 3D printing technology and on a conventionally used aluminium wheel. Apart from an FFT analysis of the vibration signal during machine operation, a machine run-up test was conducted (up to a speed of 105,000 rpm). The results showed the positive impact of the use of a plastic wheel on the dynamics of the system at a certain speed range, which might contribute to the development of a new method to optimise the geometry of flow systems in small high-speed turbomachines. A modified automotive turbocharger was subjected to experiments on a test stand.
机译:本文介绍了涡轮增压器的振动分析,其压缩轮使用高精度添加制造技术制造。目前,世界各地的研究采用添加剂制造技术的创新流体流量机部件的开发。实验研究是在减少流动温度的条件下进行的。在使用3D打印技术和常规使用的铝轮上的轮轮上进行测试和分析。除了在机器操作期间振动信号的FFT分析外,还进行机器升降测试(直至105,000rpm的速度)。结果表明,在一定速度范围内使用塑料轮对系统动力学的积极影响,这可能有助于开发新方法,以优化小型高速涡轮机中的流量系统的几何形状。对测试支架进行改进的汽车涡轮增压器进行实验。

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