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Silica-reinforced natural rubber for low rolling resistance, energy-saving tires: aspects of mixing, formulation and compatibilization

机译:二氧化硅增强天然橡胶,用于低滚动阻力,节能轮胎:混合,配方和相容性方面

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摘要

Natural rubber (NR) is a renewable material, which combines excellent mechanical and dynamic properties. It has been and still is in use in a variety of applications, mostly in the form of filled vulcanizates. Silica filler technology used for rubber is relatively new, since silica can reinforce rubber and gives high performance of articles, particularly in tires. The major problem of this combination is that silica has a relatively high polarity by nature and can not easily be mixed with NR which is a non-polar material. In addition, NR is rather susceptible to degradation under excessive mixing conditions, compared to its synthetic counterparts. Bifunctional organosilane coupling agents effectively solve the incompatibility drawback as they are able to hydrophobize silica to become more compatible with hydrocarbon rubber and to additionally strengthen the interaction between silica and rubber. Bis-(triethyxysilypropyl) tetrasulfide (TESPT) is the most commonly silane coupling agent in the rubber industry nowadays. However, silane chemistry of rather complicated because of the necessary in-situ reactions during rubber processing. The mixing temperature necessary for silica/silane filled rubber requires a high energy input. In the presented project, the mixing conditions and formulation for the silica/silane/NR system are optimized ad subsequently a search for alternative routes for improving processability and utility of silica-rubber mixes is carried out. Polar-modified natural rubber is of interest in this contex because it may lead to a reduction or a possible replacement of conventional silane coupling agents.
机译:天然橡胶(NR)是一种可再生材料,具有出色的机械和动态性能。它已经并且仍在各种应用中使用,主要是填充的硫化橡胶形式。用于橡胶的二氧化硅填充剂技术相对较新,因为二氧化硅可以增强橡胶并提供高性能的制品,特别是在轮胎中。这种结合的主要问题是二氧化硅本质上具有相对较高的极性,并且不容易与作为非极性材料的NR混合。此外,与合成同类产品相比,NR在过度混合条件下相当容易降解。双官能有机硅烷偶联剂可有效解决不相容性的缺点,因为它们能够疏水化二氧化硅,使其与烃类橡胶更加相容,并额外增强了二氧化硅与橡胶之间的相互作用。双(三乙氧基甲硅烷基丙基)四硫化物(TESPT)是当今橡胶工业中最常见的硅烷偶联剂。但是,由于橡胶加工过程中必须进行的原位反应,硅烷化学相当复杂。二氧化硅/硅烷填充橡胶所需的混合温度需要高能量输入。在提出的项目中,对二氧化硅/硅烷/ NR体系的混合条件和配方进行了优化,随后寻找替代途径来提高二氧化硅-橡胶混合物的可加工性和实用性。极性改性天然橡胶是这一领域的关注者,因为它可能导致传统硅烷偶联剂的减少或可能的替代。

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    Kaewsakul, Wisut;

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  • 年度 2013
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