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Natural rubber/carbon black nanocomposites prepared by ultrasonically aided extrusion

机译:通过超声波辅助挤出制备的天然橡胶/炭黑纳米复合材料

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Significant efforts were made in rubber research to improve dispersion of carbon black (CB) in rubbers to achieve better processibility and performance of tires and rubber products. In addressing these issues the present study is an attempt to further improve the processibility and dispersion by means of application of ultrasonic waves. Natural rubber (NR)/CB nanocomposites at loadings from 15 to 60 phr were prepared by ultrasonically aided extrusion at ultrasonic amplitudes up to 7.5 μm. A die pressure significantly decreased with an increase of amplitude, especially at higher loadings indicating an improvement in processibility. Ultrasonic power consumption was almost insensitive to loadings. The complex dynamic viscosity, storage and loss moduli of compounds and vulcanizates at loadings of 15, 25, 35 and 60 phr were reduced by the ultrasonic treatment at an amplitude of 7.5 μm, indicating NR chain scission. Bound rubber in compounds decreased by the ultrasonic treatment. The maximum torque in curing curves, crosslink density, gel fraction, hardness, M100, M300, tensile strength and abrasion resistance of vulcanizates at loadings of 15, 25, 35 and 60 phr decreased at an amplitude of 7.5 μm, due to the NR chain scission, while the elongation at break increased. AFM studies of vulcanizates showed a penetration of rubber chains into agglomerates at an amplitude of 7.5 μm, indicating an improvement of dispersion of CB. Based on AFM images, a dispersion index was introduced, showing that the ultrasonic treatment at an amplitude of 7.5 |im led to a better dispersion of CB in vulcanizates. Comparison of NR/CB compounds and vulcanizates with those of NR/CNT of an earlier study was carried out. In general, the CB-containing NR showed significantly lower modulus and abrasion resistance, but higher tensile strength and bound rubber, than CNT-containing NR.
机译:橡胶研究中提出了重大努力,以改善橡胶中的炭黑(CB)的分散,以实现轮胎和橡胶制品的更好的加工性和性能。在解决这些问题时,目前的研究是通过应用超声波的应用进一步提高加工性和分散。通过超声波振荡的超声波振缩在高达7.5μm的超声波升蚀,制备来自15至60phr的加载下的天然橡胶(NR)/ Cb纳米复合材料。随着振幅的增加,芯片压力显着降低,尤其是在更高的载荷处,较高的载荷表示加工性的提高。超声波功耗几乎对负载量不敏感。通过在7.5μm的幅度下的超声波处理减少了15,25,35和60phr的载荷下的复合动态粘度,储存和损失模量,其幅度为7.5μm,表明NR链扩张。通过超声波处理减少化合物中的粘合橡胶。固化曲线的最大扭矩,交联密度,凝胶级分,硬度,M100,M300,硫化酸盐的抗拉强度和耐磨性在15,25,35和60phr的载荷上,由于NR链,在7.5μm的幅度下降易于释放,而断裂伸长率增加。对硫化酸盐的AFM研究表明橡胶链的渗透到幅度为7.5μm,表明CB分散的改善。基于AFM图像,介绍了分散指数,显示超声波处理在7.5 | IM的幅度下导致CB在硫化胶中更好地分散。进行NR / Cb化合物和硫化酸盐与早期研究的NR / CNT的硫化胶。通常,含CB的NR显示出显着较低的模量和耐磨性,但抗拉强度较高,结合橡胶,而不是含CNT的NR。

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