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首页> 外文期刊>Journal of Applied Polymer Science >Influence of molecular parameters and processing conditions on degradation of hydrogenated nitrile butadiene rubbers
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Influence of molecular parameters and processing conditions on degradation of hydrogenated nitrile butadiene rubbers

机译:分子参数和加工条件对氢化丁腈橡胶降解的影响

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摘要

The thermomechanical modification of hydrogenated nitrile butadiene rubbers (HNBR) of different molecular parameters was investigated by rheological and light scattering techniques. The influences of acrylonitrile content, degrees of hydrogenation, and Mooney viscosity were examined. A melt blender with Banbury-type mixing blades was used to condition the rubber samples in the temperature range from 190 to 260 degrees C. Light scattering was used to determine the effect of conditioning on MW and hydrodynamic radius of the rubber molecules. Dynamic viscosity (eta') and storage modulus (G') were measured for the as-received and conditioned samples. Experimental results showed that degradation in these rubbers occurred through chain scission and crosslinking. Depending on the molecular parameter, it was found that one of these two mechanisms dominated the degradation process in most brands. Addition of adequate amounts of antioxidants (Irganox 1010 and Irgafos 1.68) was successful only in preventing degradation by crosslinking. Compared to thermal degradation, thermomechanical degradation was found to be much more severe and progressed at much higher rates. Rheology was found to be a very sensitive technique to structural parameters of the polymers and could be used to detect and identify the mechanism of degradation. (c) 2005 Wiley Periodicals, Inc.
机译:通过流变和光散射技术研究了不同分子参数的氢化丁腈橡胶(HNBR)的热机械改性。考察了丙烯腈含量,氢化度和门尼粘度的影响。使用具有班伯里(Banbury)型混合叶片的熔融共混机在190至260摄氏度的温度范围内调节橡胶样品。光散射用于确定调节对橡胶分子的分子量和流体力学半径的影响。测量了接收和处理后的样品的动态粘度(η')和储能模量(G')。实验结果表明,这些橡胶的降解是通过断链和交联而发生的。根据分子参数,发现在大多数品牌中,这两种机理之一主导了降解过程。仅在防止交联降解方面,成功添加适量的抗氧化剂(Irganox 1010和Irgafos 1.68)是成功的。与热降解相比,发现热机械降解要严重得多,并且进展速度要快得多。发现流变学是对聚合物的结构参数非常敏感的技术,并且可以用于检测和识别降解机理。 (c)2005年Wiley Periodicals,Inc.

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