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Substantial reduction of carbon black and balancing the technical properties of styrene butadiene rubber compounds using nanoclay

机译:炭黑大幅减少,使用纳米粘土平衡苯乙烯丁二烯橡胶化合物的技术性质

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摘要

Carbon black is the prime component used in tyre manufacturing. Normally, 40-60 phr of carbon black is added in rubbers to enhance their physico-mechanical properties. Utilisation of high amounts of carbon black during tyre manufacturing will certainly lead to more fly loss, which may create several health hazards to humans involved in the mixing operation. This research work aims to partially replace carbon black with minimal nanoclay and balance the technical properties of styrene butadiene rubber (SBR) compounds. Organically modified polar nanoclay namely, Cloisters 30B was used in this study. Compatibility between SBR and Cloisite 30B was enhanced by introducing carboxylated styrene butadiene rubber (XSBR) as compatibiliser. Compatibilised SBR nanocomposites were developed by means of a two-step mixing process, where the required quantity of Cloisite 30B was dispersed in XSBR through a solution mixing technique. Further, the dried XSBR-Cloisite 30B films were incorporated in the bulk SBR matrix along with carbon black and curing agents through a mechanical mixing technique. For comparison, carbon black filled SBR compounds and dual filler (carbon black and cloisite 30B) filled uncompatibilised SBR compounds were prepared directly via a mechanical mixing method. Cure characteristics, morphology, wear behaviour and mechanical properties were analysed for the prepared rubber compounds. Compatibilised styrene butadiene rubber nanocomposite containing a dual filler exhibited an increase in maximum torque, tensile strength, modulus of elasticity, storage modulus and resistance to wear proving to be potential candidature for tyre applications. The obtained results confirmed that a minimal quantity of nanoclay (3.5 phr) and carbon black (20 phr) contributed to achieve desired technical properties of SBR compounds. In addition, it was observed that the addition of carbon black enhances the distribution of nanoclay bybreaking the nanoclay agglomerates in the SBR matrix, which indeed elevates the technical properties of the related compounds.
机译:炭黑是轮胎制造中使用的主要部件。通常,在橡胶中加入40-60phr的炭黑以增强其物理机械性能。轮胎制造期间利用大量炭黑肯定会导致更多飞失,这可能会对参与混合操作的人类产生几种健康危害。该研究工作旨在部分地用最小的纳米粘土替代炭黑,平衡苯乙烯丁二烯橡胶(SBR)化合物的技术性质。有机修饰的极性纳米粘土即,在该研究中使用克隆静脉30b。通过将羧化苯乙烯丁二烯橡胶(XSBR)作为相容液引入CARBOTED苯乙烯丁二烯橡胶(XSBR)来增强SBR和Cloisite 30b之间的相容性。通过两步混合方法开发了相容的SBR纳米复合材料,其中通过溶液混合技术将所需量的克洛亚钛矿30b分散在XSBR中。此外,通过机械混合技术将干燥的XSBR-Cloisite 30B膜掺入块状SBR基质中,用炭黑和固化剂。对于比较,通过机械混合方法直接制备炭黑填充的SBR化合物和双填料(炭黑和炭黑和炭黑和炭黑)填充的未键入的SBR化合物。为制备的橡胶化合物分析了固化特征,形态,磨损行为和机械性能。含有双填料的相容性苯乙烯丁二烯橡胶纳米复合材料表现出最大扭矩,拉伸强度,弹性模量,储存模量和耐磨性的耐磨损是轮胎应用的潜在候选的增加。所得结果证实,最小量的纳米粘土(3.5phr)和炭黑(20phr)有助于达到SBR化合物的所需技术性质。另外,观察到炭黑增强了纳米粘土的分布,爆破了SBR基质中的纳米粘土附聚物,其实际上升高了相关化合物的技术性质。

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