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Application of total fatigue life model to T700 carbon/vinyl ester composite

机译:全疲劳寿命模型在T700碳/乙烯基酯复合材料中的应用

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摘要

A fracture mechanics based total fatigue life model using the methodology proposed previously by the authors was applied to T700 carbon/vinyl ester composite laminate for marine applications. The model included the delamination growth in subcritical, linear, and unstable domains. The increasing fracture resistance effect as the delamination grows was included in the model. Mode-I fracture test was conducted to obtain the fracture resistance G_(IR) as a function of delamination growth. Fatigue onset life test was conducted to determine the threshold energy release rate G_(Ith). Constant amplitude cyclic opening displacement fatigue test with displacement ratio R = 0.1 was conducted to establish the delamination growth rate, da/dN, as a function of maximum cyclic energy release rate normalized by fracture resistance, G_(Imax)/G_(IR). The total life equation was generated and the constants in the equation were determined. The equation fits the test data very well in both subcritical and linear domains while gives limiting solution in unstable domain, because of lack of test data in this domain.
机译:使用作者先前提出的方法,基于断裂力学的总疲劳寿命模型被应用于船舶应用的T700碳/乙烯基酯复合层压板。该模型包括亚临界,线性和不稳定域中的分层增长。该模型包括随着分层的增长而增加的抗断裂效果。进行I型断裂试验以得到抗断裂强度G_(IR)与分层生长的关系。进行疲劳开始寿命试验以确定阈值能量释放速率G_(Ith)。进行了位移比R = 0.1的等幅循环张开位移疲劳试验,以建立分层生长率da / dN,该值是最大断裂能量G_(Imax)/ G_(IR)归一化的最大循环能量释放率的函数。生成了总寿命方程,并确定了方程中的常数。该方程在亚临界和线性域中都非常适合测试数据,而在不稳定域中则提供了极限解,这是因为该域中缺少测试数据。

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