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Reinforcement of Multiwalled Carbon Nanotube in Nitrile Rubber: In Comparison with Carbon Black, Conductive Carbon Black, and Precipitated Silica

机译:丁腈橡胶中多壁碳纳米管加固:与炭黑,导电炭黑和沉淀二氧化硅相比

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摘要

The properties of nitrile rubber (NBR) reinforced by multiwalled carbon nanotube (MWCNT), conductive carbon black (CCB), carbon black (CB), and precipitated silica (PSi) were investigated via viscoelastic behavior, bound rubber content, electrical properties, cross-link density, and mechanical properties. The filler content was varied from 0 to 15 phr. MWCNT shows the greatest magnitude of reinforcement considered in terms of tensile strength, modulus, hardness, and abrasion resistance followed by CCB, CB, and PSi. The MWCNT filled system also exhibits extremely high levels of filler network and trapped rubber even at relatively low loading (5 phr) leading to high electrical properties and poor dynamic mechanical properties. Although CCB possesses the highest specific surface area, it gives lower level of filler network than MWCNT and also gives the highest elongation at break among all fillers. Both CB and PSi show comparable degree of reinforcement which is considerably lower than CCB and MWCNT.
机译:丁腈橡胶(NBR)的性质增强由多壁碳纳米管(MWCNT),导电炭黑(CCB),炭黑(CB),和沉淀二氧化硅(PSI)通过粘弹性性能,结合橡胶量,电性能,横进行了研究-link密度,和机械性能。填料的含量是变化的,从0到15份。 MWCNT示出加强件的中的拉伸强度,模量,硬度和耐擦伤性方面考虑的最大量值,然后CCB,CB和PSI。的MWCNT填充系统还甚至在相对低的负载量(5份),从而导致高的电性能和动态机械性能差表现出极高水平的填料网络和截留的橡胶。虽然建行具有最高的比表面积,它比碳纳米管填料网络的较低水平,并且还给出了最高的伸长率在所有填料中休息。无论CB和PSI显示出相当的程度增强,其显着低于建行和多壁碳纳米管降低。

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