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Mode I Fracture Toughness of CNT-Reinforced PMMA

机译:CNT增强的PMMA的I型断裂韧性

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The influence of carbon nanotube ( CNT) concentration on the fracture toughness of poly( methyl methacrylate) ( PMMA) was examined on single- edge V- notched- beam ( SEVNB) specimens. Six groups of SEVNB specimens containing 0.5, 1, 2, 4, 8.5 wt% of CNTs and neat PMMA as a reference were tested. First, a notch was introduced into the specimens by a specially made disk whose edge is V- shaped with a 30 mu angle and a 30 mu m tip width. As suggested by an American Society for Testing and Materials Standard for polymers, induction of a natural crack was attempted, without success. Therefore, fracture toughness values were determined with the `sharp' machined notch by means of a calibration formula. These were compared to values obtained using a stress concentration factor and found to differ by less than 3%. The latter calculation takes into account the geometry of the notch. Results showed a decrease in the fracture toughness values with an increase in the CNT concentration. For specimens in which a natural crack was attempted, referred to as a razor- cut notch, a significant increase in the apparent fracture toughness was observed, as a result of the induced damage.
机译:在单边V型缺口梁(SEVNB)样品上检查了碳纳米管(CNT)浓度对聚甲基丙烯酸甲酯(PMMA)断裂韧性的影响。测试了六组包含0.5、1、2、4、8.5 wt%CNT和纯PMMA作为参考的SEVNB标本。首先,通过特制的圆盘将缺口引入样品中,圆盘的边缘为V形,边缘为30微米,尖端宽度为30微米。如美国聚合物测试和材料协会标准所建议,试图诱导天然裂缝,但没有成功。因此,断裂韧性值通过“尖锐”机加工的缺口通过校准公式确定。将这些与使用应力集中系数获得的值进行比较,发现相差不到3%。后面的计算考虑了凹口的几何形状。结果显示,随着CNT浓度的增加,断裂韧性值降低。对于试图造成自然裂缝的试样(称为剃刀切口),由于诱发的损伤,其表观断裂韧性明显提高。

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