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Solution‐polymerized rubbers with superior breakdown properties

机译:具有优异分解性能的溶液聚合橡胶

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AbstractNatural rubber breaks down readily during mechanical mixing, and rubber processors have traditionally made good use of this property. Emulsion SBR rubber breaks down with greater difficulty and some polybutadiene rubbers, not at all. This paper describes a new class of solution elastomers, both polybutadiene and butadiene–styrene copolymers, designed to undergo controlled breakdown during processing. They can be made by reacting active polymer lithium molecules with tin compounds to produce star‐shaped molecules containing a central tin atom connected by tin–carbon bonds. When such a product is mixed with an organic (stearic) acid, some of the tin bonds are ruptured and the desired breakdown occurs. The extent of breakdown can be controlled by the mixing conditions and the amount of organic acid employed. There are numerous applications in which these rubbers process more easily and display better properties than conventional rubbers. Data on breakdown under various conditions and physical properties of the compounds are presented in this paper.In addition to the superior processing characteristics, these products introduce a new concept of elastomer breakdown. The breaking of a polymer chain at a carbon–tin bond by a chemical agent eliminates the need for breaking carbon–carbon bonds by mechanical energy or oxidative degradation. Accomplishing polymer breakdown by a controlled reaction, rather than by conventional means, has long been an unsolved problem of the rubber
机译:摘要天然橡胶在机械混炼过程中易分解,橡胶加工商历来充分利用这一特性。乳液SBR橡胶更难分解,有些聚丁二烯橡胶则完全没有。本文介绍了一类新型溶液弹性体,包括聚丁二烯和丁二烯-苯乙烯共聚物,设计用于在加工过程中进行受控分解。它们可以通过活性聚合物锂分子与锡化合物反应产生星形分子,其中包含通过锡-碳键连接的中心锡原子。当这种产品与有机(硬脂酸)混合时,一些锡键破裂并发生所需的分解。分解的程度可以通过混合条件和所用有机酸的量来控制。在许多应用中,这些橡胶比传统橡胶更容易加工并显示出更好的性能。本文介绍了化合物在各种条件下的分解和物理性质数据。除了卓越的加工特性外,这些产品还引入了弹性体分解的新概念。化学试剂在碳-锡键处断裂聚合物链,无需通过机械能或氧化降解来破坏碳-碳键。长期以来,通过受控反应而不是通过传统方法完成聚合物分解一直是橡胶界尚未解决的问题

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