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Structural analysis of continuous fiber wound composite impellers of a multistage high-speed counter rotating axial compressor for compressing water vapor (R-718) as refrigerant using Finite Element Analysis

机译:多级高速逆转轴流压气机连续纤维缠绕复合叶轮结构的有限元分析

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摘要

In this study a low cost, light weight and high performance novel filament wound axial impeller of a multistage counter rotating axial compressor for compressing water vapor (R718) as refrigerant is investigated structurally. Three different fiber types were chosen as suitable materials for this study (Kevlar-49, S-Glass & Carbon fiber) with a standard epoxy resin for the composite matrix. Through means of FEA (Finite Element Analysis) method; stress, displacement and vibration analysis procedure is developed to assess the maximum stress, change in dimensions and natural frequencies of these impellers under constant operating conditions. The finite element modeling was performed on commercially available software Abaqus. The modeling technique is explained in detail with regards to static structural and dynamic analysis of the impellers. Operating stresses, maximum shroud deflections, modal frequencies and effect of centrifugal stiffening is calculated and discussed in detail along with Campbell plots for each fiber material type. The study provides critical details about the structural behavior of the impellers and aims to provide a methodology to the compressor designer to support his decision in choosing the type of impeller and designing the housing.
机译:在这项研究中,研究了一种低成本,轻质,高性能的多级反向旋转轴向压缩机的新型细丝缠绕轴向叶轮,该压缩机用于压缩作为制冷剂的水蒸气(R718)。选择了三种不同的纤维类型作为适用于本研究的材料(凯夫拉尔49,S玻璃和碳纤维),并使用标准环氧树脂作为复合基质。通过FEA(有限元分析)方法;制定了应力,位移和振动分析程序,以评估在恒定工作条件下这些叶轮的最大应力,尺寸变化和固有频率。在市售软件Abaqus上进行了有限元建模。关于叶轮的静态结构和动态分析,详细说明了建模技术。计算并详细讨论了每种纤维材料类型的工作应力,最大护罩挠度,模态频率和离心刚度的影响,并进行了详细讨论。该研究提供了有关叶轮结构行为的关键细节,旨在为压缩机设计人员提供一种方法,以支持他的选择叶轮类型和设计外壳的决定。

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  • 来源
    《Materials & design》 |2013年第9期|683-693|共11页
  • 作者

    Mohit Patil; Norbert Mueller;

  • 作者单位

    Turbomachinery Laboratory, Department of Mechanical Engineering, Michigan State University, East Lansing, MI 48824-1226, USA;

    Turbomachinery Laboratory, Department of Mechanical Engineering, Michigan State University, East Lansing, MI 48824-1226, USA;

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