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Effect of ultrasonic-assisted impregnation parameters on the preparation and interfacial properties of MWCNT/glass-fiber reinforced composites

机译:超声浸渍参数对MWCNT /玻璃纤维增​​强复合材料制备及界面性能的影响

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In this study, an ultrasonic-assisted impregnation method was employed to deposit carboxyl multiwalled carbon nanotubes (MWCNTs) onto the E-glass fiber fabric (GFf) for the preparation of the MWCNT-GFf reinforcer. The effects of ultrasonic power, duration and temperature on the dispersion of MWCNTs onto GFf were investigated, and the mechanical properties, interlaminar adhesion, and dynamic viscoelasticity of the resulting MWCNT-GFf-reinforced composites (MGCs) were evaluated. The results indicated that an effective dispersion of MWCNTs onto GFf without obvious breakage of the MWCNTs was achieved under an ultrasonic power of 600 W, duration of 6 min, and processing temperature of about 0°C. Compared with the GFf-reinforced composite, the tensile strength, flexural strength and interlaminar shear strength of the MGCs exhibited maximum increments of 38.4%, 34.6% and 47.1%, respectively. Moreover, the storage moduli and glass-transition temperatures of the MGCs were significantly enhanced. The ultrasonic parameters were of key importance for dispersing MWCNTs onto GFf and improving the interfacial properties of the composites.
机译:在这项研究中,采用超声辅助浸渍方法将羧基多壁碳纳米管(MWCNT)沉积到E玻璃纤维织物(GFf)上,以制备MWCNT-GFf增强剂。研究了超声波功率,持续时间和温度对MWCNTs在GFf上分散的影响,并评估了所得MWCNT-GFf增强复合材料(MGCs)的力学性能,层间粘附力和动态粘弹性。结果表明,在600 W的超声功率,6分钟的持续时间和约0℃的加工温度下,实现了MWCNT在GFf上的有效分散而没有明显破坏。与GFf增强的复合材料相比,MGC的拉伸强度,弯曲强度和层间剪切强度分别表现出最大增量,分别为38.4%,34.6%和47.1%。而且,MGC的储能模量和玻璃化转变温度显着提高。超声参数对于将MWCNT分散到GFf上并改善复合材料的界面特性至关重要。

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