首页> 外文会议>Symposium on Modeling and Numerical Simulation of Materials Behavior and Evolution, Apr 2-5, 2002, San Francisco, California >Model Compound Vulcanization And IGC As Prediction Tools In Carbon Black Effect On Vulcanization
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Model Compound Vulcanization And IGC As Prediction Tools In Carbon Black Effect On Vulcanization

机译:模型复合硫化和IGC作为预测炭黑对硫化作用的工具

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The influence of carbon black (CB) in a rubber formulation can be observed during the vulcanization process. However, looking through literature there seems to be a lack of information related to the role of CBs in vulcanization reaction. The present work is focused on the application of Model Compound Vulcanization (MCV) approach and Inverse Gas Chromatography (IGC) to predict the role of carbon black on vulcanization. Squalene was chosen as the model molecule of natural rubber to undergo the vulcanization in the presence of carbon black. This methodology gives rise to several advantages. On one hand, the model allows following the accelerator, vulcanization intermediate compounds, and even the crosslinked model molecule. Moreover, the similarity between the model and the polymer chain allows further extrapolation to discover the real sample's performance. In order to complete the information required IGC analysis was used. IGC has been performed using both dispersive and specific probes to elucidate a wide range of CB surface active sites. The application of this prediction tool to special grades revealed different effects that have been verified with real formulations in both cases.
机译:在硫化过程中,可以观察到橡胶配方中炭黑(CB)的影响。但是,从文献中看,似乎缺乏与CB在硫化反应中的作用有关的信息。目前的工作集中在模型化合物硫化(MCV)方法和逆气相色谱(IGC)的应用上,以预测炭黑在硫化中的作用。选择角鲨烯作为天然橡胶的模型分子,使其在炭黑存在下进行硫化。这种方法产生了几个优点。一方面,该模型允许跟踪促进剂,硫化中间化合物,甚至是交联的模型分子。此外,模型与聚合物链之间的相似性允许进一步推断以发现真实样品的性能。为了完成所需的信息,使用了IGC分析。已经使用分散探针和特异性探针进行了IGC,以阐明各种CB表面活性位点。该预测工具在特殊等级上的应用显示了两种情况下均已通过实际配方验证的不同效果。

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