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A Comparison of the Prediction of Fatigue Damage and Crack Growth in Adhesively Bonded Joints Using Fracture Mechanics and Damage Mechanics Progressive Damage Methods

机译:用断裂力学和渐进损伤方法对胶接接头疲劳损伤和裂纹扩展的预测比较

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摘要

Lifetime prediction of adhesively bonded joints under constant amplitude fatigue has been carried out using two finite element-based, progressive damage modelling methods. The first method used a fracture mechanics (FM)-based crack growth law in which the relationship between strain energy release rate and crack growth rate under fatigue was determined from experiments using compound double cantilever beam specimens. It was found that the FM approach predicted the fatigue life well at higher fatigue loads but under-predicted the fatigue life at lower fatigue loads. This was attributed to the increasing importance of crack initiation at lower fatigue loads. This problem was solved in the second predictive method, which was based on a continuum damage mechanics approach. A power law relationship to plastic strain was used to define the damage rate. The damage law was able to simulate damage evolution prior to crack growth and excellent predictions of fatigue life were found at all fatigue loads.
机译:使用两种基于有限元的渐进式损伤建模方法,可以对恒定振幅疲劳下的胶接接头进行寿命预测。第一种方法使用基于断裂力学(FM)的裂纹扩展定律,其中疲劳强度下的应变能释放速率与裂纹扩展速率之间的关系是通过使用复合双悬臂梁试样进行的实验确定的。结果发现,调频方法可以很好地预测较高疲劳载荷下的疲劳寿命,但不能充分预测较低疲劳载荷下的疲劳寿命。这归因于在较低疲劳载荷下裂纹萌生的重要性日益增加。第二种预测方法解决了这个问题,该方法基于连续损伤力学方法。使用幂律与塑性应变的关系来定义损伤率。损伤定律能够模拟裂纹扩展之前的损伤演变,并且在所有疲劳载荷下均能获得出色的疲劳寿命预测。

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