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Temperature dependence of interfacial strength of carbon-fiber-reinforced temperature-resistant polymer composites

机译:碳纤维增强耐热聚合物复合材料的界面强度与温度的关系

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In the present study, the temperature-dependence of fiber/matrix interfacial strength is discussed through temperature-controlled microbond testing and its numerical simulation. The tests are carried out from room temperature to 100 °C. The micromechanical testing machine debonds the interface and the load at which debonding occurs is measured. In the numerical simulation, thermal residual stress is calculated by considering the relaxation modulus and the time–temperature superposition principle for the resin, i.e. thermo-viscoelasticity, in order to obtain an accurate thermal residual stress. In order to reproduce the damage of resin unique to the microbond test, continuum damage mechanics and Christensen’s failure criterion for multi-axial stress states are applied from ambient temperature to 100 °C. Interfacial debonding is simulated using a cohesive zone model. The interfacial strength is determined by comparing the analysis results with the experimental results. Results show that there is no obvious temperature dependence on interfacial strength; similar interface strengths are obtained over the range of temperatures studied.
机译:在本研究中,通过温度控制的微粘结测试及其数值模拟,讨论了纤维/基体界面强度的温度依赖性。测试从室温到100 toC进行。微机械测试机将界面剥离,并测量发生剥离的负载。在数值模拟中,通过考虑树脂的松弛模量和时间-温度叠加原理(即热粘弹性)来计算热残余应力,以便获得准确的热残余应力。为了重现微粘结试验所特有的树脂损伤,在环境温度至100 C的温度范围内采用了连续损伤力学和Christensen多轴应力状态的破坏准则。使用内聚区模型模拟界面剥离。通过将分析结果与实验结果进行比较来确定界面强度。结果表明,温度对界面强度没有明显的依赖性。在研究的温度范围内可获得相似的界面强度。

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