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Stress analysis of rotating propellers subject to forced excitations.

机译:受强迫激励的旋转螺旋桨的应力分析。

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摘要

Turbine blades experience vibrations due to the flow disturbances. These vibrations are the leading cause for fatigue failure in turbine blades. This thesis presents the finite element analysis methods to estimate the maximum vibrational stresses of rotating structures under forced excitation. The presentation included starts with the derived equations of motion for vibration of rotating beams using energy methods under the Euler Bernoulli beam assumptions. The nonlinear large displacement formulation captures the centrifugal stiffening and gyroscopic effects. The weak form of the equations and their finite element discretization are shown. The methods implemented were used for normal modes analyses and forced vibration analyses of rotating beam structures.;The prediction of peak stresses under simultaneous multi-mode excitation show that the maximum vibrational stresses estimated using the linear superposition of the stresses can greatly overestimate the stresses if the phase information due to damping (physical and gyroscopic effects) are neglected. The last section of this thesis also presents the results of a practical study that involves finite element analysis and redesign of a composite propeller.
机译:涡轮叶片由于流动扰动而遭受振动。这些振动是导致涡轮叶片疲劳失效的主要原因。本文提出了有限元分析方法来估计旋转结构在强迫激励下的最大振动应力。演示包括从在Euler Bernoulli梁假设下使用能量方法得出的旋转梁振动的运动方程开始。非线性大位移公式捕获了离心刚度和陀螺效应。显示了方程的弱形式及其有限元离散化。所采用的方法被用于旋转梁结构的正常模式分析和强迫振动分析。;同时多模式激励下的峰值应力预测表明,如果线性叠加,估计的最大振动应力会大大高估应力。忽略了由于阻尼(物理和陀螺效应)引起的相位信息。本文的最后一部分还介绍了一项实际研究的结果,该研究涉及复合材料螺旋桨的有限元分析和重新设计。

著录项

  • 作者

    Akgun, Ulas.;

  • 作者单位

    San Diego State University.;

  • 授予单位 San Diego State University.;
  • 学科 Aerospace engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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