首页> 外文会议>ASME gas turbine India conference >STRUCTURAL DESIGN AND ANALYSIS OF CYLINDRICAL SQUIRREL CAGE TO MEET STIFFNESS, STRENGTH AND HIGH CYCLE FATIGUE LIFE FOR AN AERO ENGINE
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STRUCTURAL DESIGN AND ANALYSIS OF CYLINDRICAL SQUIRREL CAGE TO MEET STIFFNESS, STRENGTH AND HIGH CYCLE FATIGUE LIFE FOR AN AERO ENGINE

机译:圆柱型鼠笼满足航空发动机刚度,强度和高疲劳寿命的结构设计与分析

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Squeeze film dampers have traditionally been used in aircraft engine to overcome stability and vibration problems that are not adequately handled with conventional style bearings. One of the key design features in a squeeze film damper [1] configuration is the introduction of flexibility in the bearing support. The simplest means to provide the support flexibility in the squeeze film damper is through the use of squirrel cage [2]. This paper deals with structural design analysis of cylindrical squirrel cage of an aircraft engine. Design of the squirrel cage needs a balance between stiffness and strength requirements. To meet the strength, stiffness and fatigue life requirements, squirrel cage web dimensions and fillet radius are modified. The various configurations of the squirrel cage have been evaluated to arrive at the optimum design. Stress analysis of the bearing has been carried out for axial, radial unbalance loads. Stress distribution in the web region has been studied in detail. High cycle fatigue life margins are estimated using Goodman diagram. The squirrel cage web dimensions and fillet radius are modified to improve HCF life requirements. The operating stresses in the squirrel cage are reduced while meeting the stiffness and HCF life requirements of the component.
机译:传统上,挤压膜减震器已用于飞机发动机中,以克服传统轴承无法充分解决的稳定性和振动问题。挤压油膜阻尼器[1]配置的主要设计特征之一是在轴承支架中引入了柔韧性。在挤压膜阻尼器中提供支撑灵活性的最简单方法是使用松鼠笼[2]。本文对飞机发动机圆柱鼠笼的结构设计进行了分析。鼠笼的设计需要在刚度和强度要求之间取得平衡。为了满足强度,刚度和疲劳寿命要求,对松鼠笼腹板尺寸和圆角半径进行了修改。评估了鼠笼的各种配置以达到最佳设计。已经对轴向,径向不平衡载荷进行了轴承应力分析。已详细研究了腹板区域的应力分布。使用Goodman图估算高循环疲劳寿命。修改了鼠笼腹板的尺寸和圆角半径,以提高HCF寿命要求。在满足组件的刚度和HCF寿命要求的同时,减小了鼠笼的工作应力。

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