首页> 外文会议>Technical Meeting of the Rubber Division, American Chemical Society >Structure Development in Thermoplastic Elastomers from Blends of Plastics and Rubber, Interfacial Phenomena and their Relationship with Properties
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Structure Development in Thermoplastic Elastomers from Blends of Plastics and Rubber, Interfacial Phenomena and their Relationship with Properties

机译:来自塑料和橡胶混合物的热塑性弹性体的结构开发,界面现象及其与性质的关系

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Structure development is an important aspect of thermoplastic elastomers from blends of plastics and rubber, which is guided by the interaction between the components and rheology of the individual polymers. The present research would discuss structure development in typical immiscible rubber-plastic blends and its theoretical modelling. The interface that is generated due to the interaction would be examined. The influence of the above on mechanical and dynamic mechanical properties would be discussed in detail. Structure development of a series of polymer blends from polyamide 6 (PA6) and fluoroelastomer (FKM) was undertaken. Further variation of processing conditions and processing techniques gave nanostructured polymer blends. Development of morphology and properties at different stages of mixing and dynamic vulcanization of such nanostructured thermoplastic elastomers from polyamide 6 (PA6)/fluoroelastomer (FKM) were investigated. Tensile strength and Young's modulus increased (60 % and 65 %, respectively) with increasing mixing time (1 min and 4 min). Significant improvement of tensile properties was observed after micro-injection molding of the sample when compared to the specimen before injection molding. Prediction of the size of the dispersed phase using the mixing conditions was done. The morphology and interaction between components of Polyamide 6 (PA6) / Fluoroelastomer (FKM) at 40/60 composition was investigated by atomistic simulation and mesoscale dissipative dynamics simulation. The simulation results were very similar to the experimental observations.
机译:结构发展是来自塑料和橡胶混合物的热塑性弹性体的一个重要方面,其通过各个聚合物的组分和流变之间的相互作用为引导。本研究将讨论典型不混溶的橡胶塑料混合物及其理论建模的结构发展。将检查由于交互而产生的接口。将详细讨论上述上述对机械和动态机械性能的影响。采用聚酰胺6(PA6)和含氟弹性体(FKM)的一系列聚合物共混物的结构发展。进一步的加工条件和加工技术的变化具有纳米结构的聚合物共混物。研究了从聚酰胺6(PA6)/含氟弹性体(FKM)的这种纳米结构热塑性弹性体的混合和动态硫化的不同阶段的形态和性质的发展。抗拉强度和杨氏模量分别增加(分别为60%和65%),随着混合时间(1分钟和4分钟)增加。当样品在注射成型前的样品比较时,在样品的微注射成型后观察到拉伸性能的显着改善。使用混合条件预测分散相的尺寸。通过原子模拟和Mescle耗散动力学模拟研究了40/60组合物的聚酰胺6(PA6)/含氟弹性体(FKM)组分之间的形态和相互作用。仿真结果与实验观察非常相似。

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