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Impact of carbon black substitution with nanoclay on microstructure and tribological properties of ternary elastomeric composites

机译:纳米粘土替代炭黑对三元弹性复合材料微观结构和摩擦学性能的影响

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Various particulate composites based on epoxidised natural rubber (ENR), carbon black (CB), and nanoclay (NC) were prepared keeping the total filler content constant at 35 phr (parts per 100 g rubber). Tri-bology and hysteretic (stress-strain) properties of the composites were analyzed. Morphology of these composites were also characterized by small angle X-ray scattering (SAXS), transmission electron microscopy (TEM), scanning electron microscopy (SEM) to establish the structure-property correlations. SAXS results reveal enhancement in overall interfacial roughness {ds) with the increased substitution of CB by NC. Increased CB-NC interface causes enhancement in ds, leading to reduction in wear resistance of ternary composites. Reduction of wear resistance for NC populated samples is attributed to lower dispersion parameter (D0,i) values of NC in the matrix, realized through image analysis of TEM photomicrographs. Thus, for ternary particulate samples, a definite interrelation among the extent of wear, ds and D0.i is realized. Frictional force {FT) and its adhesive component {FA) increase when CB is substituted by NC up to 15 phr. When NC fraction exceeds 15 phr, both FT and FA decrease substantially. This is attributed to the lubricity offered by the modified NC at higher NC concentration, which is explained using a predictive mechanism.
机译:制备各种基于环氧化天然橡胶(ENR),炭黑(CB)和纳米粘土(NC)的颗粒状复合材料,以使总填料含量恒定为35 phr(每100 g橡胶的份数)。分析了复合材料的摩擦学和滞后性能(应力应变)。这些复合材料的形貌还通过小角X射线散射(SAXS),透射电子显微镜(TEM),扫描电子显微镜(SEM)进行表征,以建立结构-性能相关性。 SAXS结果显示,随着NC替代CB的增加,整体界面粗糙度(ds)增强。 CB-NC界面的增加导致ds的提高,从而导致三元复合材料的耐磨性降低。 NC填充样品的耐磨性降低归因于基质中NC的较低分散参数(D0,i)值,这是通过TEM显微照片的图像分析实现的。因此,对于三元颗粒样品,在磨损程度,ds和D0.i之间实现了明确的相互关系。当CB被NC取代至15 phr时,摩擦力(FT)及其粘合成分(FA)会增加。当NC分数超过15phr时,FT和FA均显着降低。这归因于改进的NC在较高NC浓度下提供的润滑性,这可通过预测机制进行解释。

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