首页> 外文会议>ASME Pressure Vessels and Piping Division/K-PVP conference;PVP2010 >NUMERICAL INVESTIGATIONS OF PHENOMENA CAUSED BY THE CLOSURE AND GROWTH BEHAVIOR OF SHORT CRACKS UNDER THERMAL CYCLIC LOADING
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NUMERICAL INVESTIGATIONS OF PHENOMENA CAUSED BY THE CLOSURE AND GROWTH BEHAVIOR OF SHORT CRACKS UNDER THERMAL CYCLIC LOADING

机译:循环载荷作用下短裂纹的闭合和生长行为引起的现象的数值研究

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Thermal cyclic loading conditions of nuclear power plant components cause local stress-strain hystereses which are considered to be fatigue relevant events. The contributions of the hysteresis-loops to the fatigue process are evaluated using a damage parameter based on the effective cyclic J-integral which also includes the effects of crack closure. The successful application of such a short crack propagation approach essentially depends on the realistic description of the crack closure. In this context a finite element based algorithm is presented to simulate the opening and closure effects under special consideration of thermal cyclic loading conditions. The concept is based on node release and contact mechanisms. The implications of the crack propagation on the temperature at the crack tip are to be considered. In this context, the consequences of the altered temperature profile as the crack propagates have to be taken into account. It is the aim to formulate Newman-type analytical equations in order to incorporate the influence of crack closure into an engineering approach.Furthermore, the peculiarities of transient thermal loading on the crack propagation behavior are considered. The reduced crack propagation rates due to the temperature gradient in the direction of the wall are investigated numerically in order to describe the reduction of the damage contribution and decelerated crack propagation rates. The effects of changing thermal conditions in the wall on the crack propagation behavior are considered within the numerical algorithm.
机译:核电厂组件的热循环加载条件会导致局部应力应变滞后现象,这些现象被认为是与疲劳相关的事件。使用基于有效循环J积分的损伤参数评估磁滞回线对疲劳过程的贡献,该参数还包括裂纹闭合的影响。这种短裂纹扩展方法的成功应用基本上取决于对裂纹闭合的真实描述。在这种情况下,提出了一种基于有限元的算法来模拟在特殊考虑热循环载荷条件下的开启和关闭效果。该概念基于节点释放和联系机制。应考虑裂纹扩展对裂纹尖端温度的影响。在这种情况下,必须考虑到裂纹扩展时温度分布改变的后果。目的是公式化Newman型解析方程,以便将裂纹闭合的影响纳入工程方法。 此外,考虑了瞬态热载荷对裂纹扩展行为的特殊性。为了描述损伤贡献的降低和裂纹扩展速率的降低,对由于壁方向上的温度梯度而导致的裂纹扩展速率的降低进行了数值研究。在数值算法中考虑了壁中热条件的变化对裂纹扩展行为的影响。

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