首页> 外文会议>ASME international mechanical engineering congress and exposition >IMPACT OF BOLT-NUT INTERFACE MODELING ASSUMPTIONS ON THE CALCULATED LOW CYCLE FATIGUE LIFE OF AIRCRAFT ENGINE TURBINE ROTOR BOLTED JOINTS
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IMPACT OF BOLT-NUT INTERFACE MODELING ASSUMPTIONS ON THE CALCULATED LOW CYCLE FATIGUE LIFE OF AIRCRAFT ENGINE TURBINE ROTOR BOLTED JOINTS

机译:螺栓-螺母界面建模假设对飞机发动机涡轮转子接合点计算的低周疲劳寿命的影响

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Finite element analysis is used extensively in the aircraft turbine engine industry to predict stresses to calculate low cycle fatigue (LCF) life of life-limited parts (LLP's). A failure of an LLP can lead to a potentially catastrophic event such as a non-containment of high energy debris. Under-predicted stress can cause the life limits to be set too high, which is a safety hazard. Over-predicted stress can cause the life limits to be set too low, which adds cost due to the need to replace expensive engine hardware more frequently. As such, high fidelity stress analysis is necessary to appropriately set LCF life limits. This study focuses on the nut-bolt interface modeling assumptions associated with a rotor bolted joint stress analysis for LCF predictions. A 3D finite element model of an actual aircraft engine rotor bolted joint is created. Different cases are analyzed and compared to investigate how the thread modeling assumptions might affect the calculated life in the mated rotor LLP hardware. Walker-adjusted alternating stress, σ_(0,alt), is used to measure the affect on life impact. It is shown that elastic versus elastic-plastic nut/bolt materials properties and the inclusion of the helical thread shape have minor impact on the calculated stresses. However, inclusion of contact elements with friction at the thread interface instead of couples has a moderate impact on the calculated stresses and therefore expected life.
机译:有限元分析在飞机涡轮发动机行业中广泛使用,以预测应力以计算有限寿命零件(LLP)的低周疲劳(LCF)寿命。 LLP的故障可能导致潜在的灾难性事件,例如不包含高能碎屑。压力不足会导致寿命极限设置过高,这是安全隐患。过度预测的压力会导致寿命限制设置得太低,由于需要更频繁地更换昂贵的发动机硬件而增加了成本。因此,高保真度应力分析对于适当设置LCF寿命极限是必要的。这项研究集中在与螺母螺栓接口建模假设有关的转子螺栓连接应力分析,以进行LCF预测。创建了实际飞机发动机转子螺栓连接的3D有限元模型。分析并比较了不同的情况,以研究螺纹建模假设可能如何影响配对转子LLP硬件中的计算寿命。沃克调整后的交变应力σ_(0,alt)用于衡量对生活影响的影响。结果表明,弹性与弹塑性螺母/螺栓材料的性能以及螺旋螺纹形状的包含对所计算的应力影响很小。但是,在螺纹界面处使用摩擦代替接触件的接触元件对算出的应力和预期寿命有中等程度的影响。

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