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首页> 外文期刊>Journal of Applied Polymer Science >Modeling of creep for multiwall carbon nanotube/epoxy nanocomposite
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Modeling of creep for multiwall carbon nanotube/epoxy nanocomposite

机译:多壁碳纳米管/环氧树脂纳米复合材料的蠕变建模

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摘要

The effect of multiwall carbon nanotubes (MWCNTs) on creep of epoxy matrix was evaluated on the basis of short-term creep-recovery tests performed at different stresses and temperatures. Six different compositions of MWCNT and bisphenol A epoxy resin (0-3.8 wt % of MWCNTs) were investigated. Slight reduction of creep compliance, strain rate, and residual strain were revealed experimentally for nanocomposite comparing to the neat resin. The development of viscoelastic strain for creep stage was described by the use of time-temperature-strain superposition principle with the parameters obtained from the approximation of recovery stage using modified Schapery model. The model accounted for the effect of strain on the viscoelastic strain rate for recovery stage. Its application gave better results for approximation of a series of recovery curves at different temperatures and stresses than of time-stress superposition model.
机译:基于在不同应力和温度下进行的短期蠕变恢复测试,评估了多壁碳纳米管(MWCNT)对环氧基质蠕变的影响。研究了六种不同的MWCNT和双酚A环氧树脂的组成(MWCNT的0-3.8 wt%)。与纯树脂相比,纳米复合材料的蠕变柔顺性,应变速率和残余应变略有降低。利用时间-温度-应变叠加原理描述了蠕变阶段粘弹性应变的发展,并使用改进的Schapery模型从恢复阶段的近似值中获得了参数。该模型考虑了应变对恢复阶段的粘弹性应变速率的影响。与时间-应力叠加模型相比,其应用在不同温度和应力下的一系列恢复曲线的逼近效果更好。

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