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Investigation of internal friction and fracture fatigue entropy of CFRP laminates with various stacking sequences subjected to fatigue loading

机译:用疲劳载荷对CFRP层压板的内部摩擦和断裂疲劳熵的研究

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摘要

The heat dissipation caused by internal friction plays an important role during fatigue property prediction based on self-heating data but it is still unclear for Carbon Fiber Reinforced Polymer (CFRP). In this paper, fatigue tests and thermal data analysis are carried out in order to investigate internal friction and Fracture Fatigue Entropy (FFE) of CFRP laminates with various stacking sequences. The fatigue limit is firstly estimated based on an improved graphic method developed by our previous study and then used to mark the beginning of fatigue damage occurs. It is found that the relationship between internal friction and applied stress amplitude is non-linear which is different from metals. Quadratic function is employed to characterize the internal friction region below fatigue limit and the trend line is used to separate heat dissipation related to damage and internal friction beyond fatigue limit. Results show that the internal friction effect of cross-ply laminates is significantly greater than that of unidirectional laminates. FFEs estimated by the heat dissipation related to damage are found to be independent of applied stress amplitude, which can be used to predict S-N curve of CFRP laminates efficiently and precisely.
机译:内部摩擦引起的散热耗散在基于自加热数据的疲劳性预测期间起着重要作用,但碳纤维增强聚合物(CFRP)仍然尚不清楚。在本文中,进行了疲劳试验和热数据分析,以研究CFRP层压板与各种堆叠序列的内部摩擦和断裂疲劳熵(FFE)。首先基于我们之前研究开发的改进的图形方法估计了疲劳极限,然后用来标记疲劳损坏的开始。结果发现,内部摩擦和施加应力幅度之间的关系是非线性的,其不同于金属。二次函数用于表征低于疲劳极限的内部摩擦区域,并且趋势线用于将散热与超出疲劳极限的损伤和内部摩擦相关的散热。结果表明,交叉层层压板的内部摩擦效应明显大于单向层压板。通过与损坏相关的散热估计的FFE被发现与施加的应力幅度无关,其可用于有效且精确地预测CFRP层压板的S-N曲线。

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