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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Compatibilization of natural rubberitrile rubber blends by sol-gel nano-silica generated by in situ method
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Compatibilization of natural rubberitrile rubber blends by sol-gel nano-silica generated by in situ method

机译:原位生成的溶胶-凝胶纳米二氧化硅对天然橡胶/丁腈橡胶混合物的相容性

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摘要

Controlled growth of in situ silica, into natural rubber (NR)itrile rubber (NBR) blend (40/60 composition by weight) following solution sol-gel method, results in a coherent blend morphology with enhanced composite properties. Similar composites, i.e., in situ silica-filled NR/NBR blend (40/60 by weight), showed better mechanical properties than any other composition that were prepared by soaking sol-gel method in earlier study. However, silica content in the rubber blend was limited to 20 phr (parts per hundred parts of rubber) and could not be increased under experimental condition following soaking sol-gel method. In the present work, silica content is increased (up to 30 phr) beyond that limit for the same blend composition. Accordingly, mechanical properties of the NR/NBR composites are improved. Use of a silane coupling agent, viz., bis-(3-triethoxysilylpropyl)-tetra sulfide, in the reactive sol-gel system during in situ silica generation brings in remarkable effect in silica distribution, rubber-filler interaction and mechanical properties of the composites. TEM micrographs of the selected composites reveal that silica is mostly grown at the interfacial region, when silane is used in particular. This results in further enhancement in mechanical properties and compatibility of the blend at the same silica content as evident from stress-strain and dynamic mechanical analysis studies. The reinforcement of effect in situ silica is assessed by Guth-Gold equation and modified form of Guth equation (with shape factor f = 2.53). The results are supported by the detailed studies on rheological, morphological, mechanical and viscoelastic properties of the composites.
机译:溶液溶胶-凝胶法控制下原位二氧化硅向天然橡胶(NR)/丁腈橡胶(NBR)共混物(按重量计40/60组成)中的生长,产生具有增强复合性能的连贯共混物形态。类似的复合材料,即原位填充二氧化硅的NR / NBR共混物(重量比为40/60),比早期研究中通过浸泡溶胶-凝胶法制备的任何其他组合物都具有更好的机械性能。然而,橡胶共混物中的二氧化硅含量被限制在20phr(每100份橡胶中的份数),并且在浸泡溶胶-凝胶法的实验条件下不能增加。在本工作中,对于相同的共混物组合物,二氧化硅含量增加(最多30 phr)超过该限制。因此,改善了NR / NBR复合材料的机械性能。在原位生成二氧化硅的过程中,在反应性溶胶-凝胶体系中使用硅烷偶联剂,即双-(3-三乙氧基甲硅烷基丙基)-四硫化物,对二氧化硅的分布,橡胶与填料的相互作用以及其力学性能产生了显着影响。复合材料。所选复合材料的TEM显微照片显示,特别是使用硅烷时,二氧化硅主要在界面区域生长。从应力应变和动态力学分析研究中可以明显看出,在相同的二氧化硅含量下,共混物的机械性能和相容性进一步提高。用Guth-Gold方程和Guth方程的修正形式(形状因子f = 2.53)评估原位二氧化硅的增强作用。对复合材料的流变,形态,机械和粘弹性特性的详细研究为结果提供了支持。

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