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Fracture behaviour of cracked carbon nanotube-based polymer composites: Experiments and finite element simulations

机译:含裂纹的碳纳米管基聚合物复合材料的断裂行为:实验和有限元模拟

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This paper studies the fracture behaviour of cracked carbon nanotube (CNT)-based polymer composites by a combined numerical-experimental approach. Tensile tests were conducted on single-edge cracked plate specimens of CNT/polycarbonate composites at room temperature and liquid nitrogen temperature (77 K), and the critical loads for fracture instabilities were determined. Elastic-plastic finite element simulations of the tests were then performed to evaluate the J-integrals corresponding to the experimentally determined critical loads. Scanning electron microscopy examinations were also made on the specimen fracture surfaces, and the fracture mechanisms of the CNT-based composites were discussed.
机译:本文采用数值实验的方法研究了含裂纹的碳纳米管(CNT)基聚合物复合材料的断裂行为。在室温和液氮温度(77 K)下,对CNT /聚碳酸酯复合材料的单边缘破裂板试样进行了拉伸试验,确定了断裂失稳的临界载荷。然后进行了测试的弹塑性有限元模拟,以评估与实验确定的临界载荷相对应的J积分。还对样品的断裂表面进行了扫描电子显微镜检查,并讨论了CNT基复合材料的断裂机理。

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