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'Silane-Terminated Liquid Poly(butadienes) in Tread Formulations: A Mechanistic Study'

机译:“胎烷 - 封端的液体聚(丁二烯)在胎面制剂中:机械研究”

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Liquid poly(butadienes) are materials which exhibit flow properties as their molecular weights are at or below that for significant chain entanglement. When applied to tire compound formulating in additive amounts, these low molecular weight oligomers are compatible with the elastomeric phase and can influence the viscoelastic behavior. The present paper will catalogue the history of the use of liquid poly(butadiene) materials in tire compounding, linking their varied application to the evolution of structure-property relationships as a function of microstructure changes. The result of this evolution is the commercialization of functionalized liquid polybutadienes, specifically silane-terminated grades designed for silica-filled systems. It has been found that these materials are not replacements for the typical silane coupling agents ubiquitously used in silica formulating, but rather synergistic with the established technology. The application of silane-terminated liquid poly(butadienes) can improve both traction indicators as well as limit the negative hysteresis effect commonly associated with the use of liquid poly(butadiene) resins. The mechanism behind the specific changes in viscoelastic and mechanical properties attributed to the addition of silane-terminated liquid poly(butadienes) is explored. It is found that the terminal silane function of the liquid poly(butadienes) may both interact with the silane coupling agent-modified surface of the dispersed silica particles as well as be available to condense with each other, forming a higher molecular weight structure that may effectively increase apparent crosslink density and therefore bound rubber as an interpenetrating network that extends well into the elastomer phase.
机译:液体聚(丁二烯)是表现出流动性质的材料,因为它们的分子量在或低于显着的链缠结。当施加到成型量的轮胎化合物时,这些低分子量低聚物与弹性体相兼容,并且可以影响粘弹性行为。本文将在轮胎复合中对液体聚(丁二烯)材料的使用历史目录,将它们不同的应用与结构性关系的演变连接到微观结构变化的函数。该进化的结果是官能化液体聚浆的商业化,特别是用于二氧化硅系统的硅烷封端等级。已经发现,这些材料不替代普遍存在的二氧化硅配制的典型硅烷偶联剂,而是与已建立的技术协同协同。硅烷封端的液体聚(丁二烯)的施用可以改善牵引指示剂以及限制与使用液态聚(丁二烯)树脂的负相关的负滞后效果。探讨了粘弹性和机械性能的特定变化背后的机制,归因于添加硅烷封端的液体聚(丁二烯)。发现液体聚(丁二烯)的末端硅烷功能可以与分散的二氧化硅颗粒的硅烷偶联剂改性表面相互作用,也可以彼此冷凝,形成可能的较高分子量结构有效地提高表观交联密度,因此将橡胶结合为互穿网络,其井穿入弹性体相中。

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