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VARIABLE LOADING SEQUENCE EFFECT FOR THERMAL FATIGUE AT A MIXING TEE

机译:混合三通处的热疲劳的可变加载顺序效应

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Mixing flow causes fluctuations in fluid temperature near the pipe wall and may result in fatigue crack initiation. In a previous study, the authors reported the characteristics of the thermal stress to cause thermal fatigue at a mixing tee. A large stress fluctuation was caused by movement of the hot spot, at which the pipe wall was heated by hot flow from the branch pipe. According to a general procedure, fatigue damage is calculated by the linear damage accumulation rule. However, it has been reported that Miner s rule does not always predict the fatigue life conservatively for variable stress amplitude. In this study, we investigated the change in fatigue life due to variable strain around the hot spot. The time histories of the strain around the hot spot were estimated by finite element analysis (FEA) for which the temperature condition was determined by wall temperature measured in a mock-up test. Strain-controlled fatigue tests were conducted using smooth cylindrical specimens made of stainless steel. The fatigue damage at failure of the specimen was calculated using Miner's rule. The calculated fatigue damage around the hot spot became less than unity and the minimum value was 0.18. Therefore, Miner s rule predicted non-conservative fatigue life. In addition, the calculated fatigue damage inside the hot spot was larger than those outside the hot spot and at the position of maximum stress fluctuation. Fatigue tests using strain with periodic overload were also conducted in order to investigate the effect of the loading history on fatigue life. It was shown that the strain with periodic overload reduced the fatigue life. The calculated fatigue damage for the strain at the maximum position of stress fluctuation range seemed to be smaller than those at other positions. This implies that the fatigue life can be estimated conservatively from the viewpoint of the loading sequence effect by calculating the fatigue damage using Miner s rule for the strain at the maximum position of stress fluctuation range.
机译:混合流会导致管壁附近的流体温度波动,并可能导致疲劳裂纹萌生。在先前的研究中,作者报告了导致混合三通处热疲劳的热应力特性。热点的移动引起了很大的应力波动,在热点处,管壁被来自支管的热流加热。根据一般程序,疲劳损伤是通过线性损伤累积规则来计算的。但是,据报道,对于可变的应力振幅,Miner法则并不总是保守地预测疲劳寿命。在这项研究中,我们调查了由于热点附近应变变化而引起的疲劳寿命的变化。通过有限元分析(FEA)估算热点附近应变的时间历史,有限元分析的温度条件由模拟测试中测量的壁温确定。使用由不锈钢制成的光滑圆柱形试样进行了应变控制的疲劳测试。使用Miner法则计算出试样破坏时的疲劳损伤。计算出的热点周围的疲劳损伤小于1,最小值为0.18。因此,Miner规则预测了非保守疲劳寿命。此外,计算出的热点内部的疲劳损伤要大于热点外部以及最大应力波动位置处的疲劳损伤。为了研究加载历史对疲劳寿命的影响,还进行了使用周期性过载的应变疲劳试验。结果表明,具有周期性过载的应变会降低疲劳寿命。应力波动范围最大位置处的应变所计算出的疲劳损伤似乎小于其他位置处的应变。这意味着,通过使用Miner规则计算应力波动范围最大位置处的应变的疲劳损伤,可以从加载顺序效应的角度保守地估计疲劳寿命。

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