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Nanocharacterization of creep behavior of multiwall carbon nanotubes/epoxy nanocomposite

机译:纳米碳纳米管/环氧树脂纳米复合材料蠕变行为的纳米表征

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High temperature instrumented indentation testing was used to evaluate the mechanical properties of multiwall carbon nanotubes/epoxy nanocomposite system. Reference neat epoxy samples were also tested and compared with the results obtained for the nanocomposite. The nanoindentation creep tests were utilized to provide the creep strain rate sensitivity parameter, the contact creep compliance and the time-dependent deformation under constant loads. Different thermo-mechanical conditions comprising three temperatures of 25, 40 and 55 °C and three loads of 1, 2 and 3 mN were utilized. The improvements in the properties were not as high as anticipated through the use of mixture rule, indicating insufficient dispersion. However, variations in modulus, hardness and creep strain rate sensitivity parameter obtained using nanoindentation showed quantifiable differences between the MWCNTs nanocomposite and epoxy specimens. The comparison of the creep strain rate sensitivity A/d(0) from short term, 60 s, creep tests and the creep compliance J(t) from the long term, 1800 s, creep tests suggests that former parameter is a more useful comparative creep parameter than the creep compliance. The analysis of the creep strain rate sensitivity clearly revealed that the addition of MWCNTs to a commercial epoxy reduced the creep rate. This reduction of creep rate sensitivity parameter was observed particularly at thermal environments just below the glass transition temperature.
机译:高温仪器压痕测试用于评估多壁碳纳米管/环氧树脂纳米复合材料体系的机械性能。还测试了参考纯净环氧样品,并将其与纳米复合材料的结果进行了比较。纳米压痕蠕变试验用于提供恒定载荷下的蠕变应变速率敏感性参数,接触蠕变柔度和随时间变化的变形。利用包括25、40和55°C的三个温度以及1,2和3 mN的三个负载的不同热机械条件。通过使用混合法则,性能的改善没有预期的高,表明分散性不足。然而,使用纳米压痕获得的模量,硬度和蠕变应变速率敏感性参数的变化显示了MWCNTs纳米复合材料和环氧树脂样品之间的可量化差异。短期(60 s)蠕变试验的蠕变应变率灵敏度A / d(0)与长期(1800 s)蠕变试验的蠕变柔量J(t)的比较表明,前一个参数是比较有用的比较蠕变参数要比蠕变柔量好。对蠕变应变速率敏感性的分析清楚地表明,向商用环氧树脂中添加MWCNT会降低蠕变速率。特别是在刚好低于玻璃化转变温度的热环境下,观察到蠕变速率敏感性参数的降低。

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