首页> 外文会议>Technical Meeting of the rubber division,American Chemical Society >'Fundamentals of Curing Elastomers with Peroxides and Coagents III: Blending Coagents to Optimize Processing, Vulcanization, and the Physical Properties of Rubber Compounds'
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'Fundamentals of Curing Elastomers with Peroxides and Coagents III: Blending Coagents to Optimize Processing, Vulcanization, and the Physical Properties of Rubber Compounds'

机译:用过氧化物和凝结剂固化弹性体的基本原理:混合凝结,优化橡胶化合物的加工,硫化和物理性质。

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Previous work in the series has demonstrated the addition of coagents affects both the quantity and quality of crosslinks in peroxide-cured elastomeric compounds. Compound vulcanization kinetics and ultimate physical properties were dictated by structure-property relationships unique to the different classes of coagents. In addition, it was shown that the relative impact of coagent addition correlates not only to coagent structure, but also the composition of the elastomer being cured. In the present study, the concept of coagent blending is explored. While previous work has concentrated on establishing the effect of individual coagent structure on final properties, new data demonstrates that binary blends of coagents can act synergistically to balance multiple processing and cured physical properties. By blending certain classes of coagents, it may be possible to optimize physical properties that would be mutually exclusive if only working with a single coagent. Specific examples define the blending rules in operation. By blending Type I and Type II coagents, scorch safety can be extended without a loss in tensile properties. Blends of metallic monomers and liquid monomers can produce adhesion while maintaining compression set. Processing properties can be modified while independently adjusting compound hardness by blending coagents with various functionalities. The utility of coagent blending is demonstrated in NBR, EPDM, HNBR, CM, and FKM model formulations.
机译:本系列的先前工作已经证明了凝结剂的添加影响过氧化物固化的弹性体化合物的交联的数量和质量。化合物硫化动力学和最终的物理性质被不同类别的结构性质关系决定。此外,结果表明,凝固的添加不仅与凝固结构相关的相对影响,还具有所固化的弹性体的组成。在本研究中,探索了凝固混合的概念。虽然以前的工作集中在建立单个凝固结构对最终性质的影响,但是新数据表明凝固者的二进制混合物可以协同行动,以平衡多种加工和固化物理性质。通过混合某些类别的凝固者,可以优化只有使用单个Cogent的互斥的物理属性。具体示例在操作中定义了混合规则。通过混合I型和II型凝固剂,可以在没有拉伸性能的情况下延伸烧焦安全性。金属单体和液体单体的混合物可以在保持压缩集中产生粘附性。可以通过将凝结剂与各种功能混合来独立地调节化合物硬度来修改处理性能。凝固混合的效用是在NBR,EPDM,HNBR,CM和FKM模型配方中进行的。

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