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METHOD FOR STRAIN-HARDENING OF LINEAR POLYMERS AND STRAIN-HARDENED LINEAR POLYMER COMPOSITIONS

机译:线性聚合物的应变硬化和应变硬化的线性聚合物组成的方法

摘要

The present invention relates to a method for strain-hardening of linear polymers and strain-hardened linear polymer compositions. According to the method for strain-hardening of a linear polymer of the present invention, to introduce a branching structure or a network structure to a linear polymer, a compatibilizer that is compatible with the linear polymer and surface-treated fine particles functioning as a core of the network structure are added to the linear polymer and mixed together. In this way, the linear polymer is endowed with a strain hardening capability exhibiting a rapid increase of viscosity with respect to elongation. Because of this, a polymer experiences a uniform thickness transformation at the time of elongation flow, the thickness at the edge of a molded article remains uniform and a breakage phenomenon is suppressed. In addition, compared with a case where fine particles are added without going through the surface treatment, much improved mechanical properties are observed.
机译:线性聚合物的应变硬化方法和线性硬化的聚合物组合物技术领域本发明涉及线性聚合物的应变硬化的方法和应变硬化的线性聚合物组合物。根据本发明的线性聚合物的应变硬化方法,将支链结构或网状结构引入线性聚合物中,与线性聚合物相容的增容剂和经表面处理的细颗粒用作核。网络结构的一部分被加入到线性聚合物中并混合在一起。以此方式,线性聚合物具有应变硬化能力,表现出相对于伸长率的粘度快速增加。因此,聚合物在伸长流动时经历均匀的厚度变化,成型品的边缘处的厚度保持均匀,并且抑制了断裂现象。另外,与不进行表面处理而添加微粒的情况相比,观察到机械特性大为提高。

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