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Simulation and measurement of the self-heating phenomenon of carbon/epoxy laminated composites under fatigue loading

机译:疲劳负荷下碳/环氧叠层复合材料自加热现象的仿真和测量

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In the present research, the self-heating phenomenon in laminated composites under fatigue loading was studied. The generated-dissipated energy (GDE) model was developed to calculate the generated energy due to the viscoelastic nature of the matrix, and the dissipated energy through the convection and conduction mechanisms. To consider the effects of irreversible fatigue failure modes in laminated composites, the GDE model was coupled with the progressive fatigue damage (PFD) model. By coupling these two models, the self-heating (S-H) model was developed to simulate the self-heating temperature rise in laminated composites under fatigue loadings. An experimental program was conducted to validate the present model. The temperature at the surface of laminated composites was monitored by an infrared thermography camera during the fatigue tests. The experimental results show that the present model can precisely predict the self-heating temperature rise in composite specimens with an arbitrary stacking sequence under fatigue loading conditions.
机译:在本研究中,研究了疲劳负载下层叠复合材料中的自加热现象。开发了产生的消散的能量(GDE)模型以通过对流和传导机制来计算由于基质的粘弹性性质而产生的产生能量。为了考虑叠层复合材料中不可逆疲劳失效模式的影响,GDE模型与渐进式疲劳损伤(PFD)模型相结合。通过耦合这两种型号,开发了自加热(S-H)模型以模拟疲劳负载下层叠复合材料的自加热温度升高。进行实验程序以验证本模型。在疲劳试验期间通过红外热成像摄像机监测层压复合材料表面的温度。实验结果表明,本模型可以精确地预测疲劳负载条件下具有任意堆叠序列的复合标本中的自加热温度升高。

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