首页> 外文会议>International Conference on "Times of Polymers and Composites" >In-phase and out-of-phase tensile properties of polypropylene/polyamide 6 blends modified by a succinic anhydride industrial waste based interfacial agent as determined at the glass transition temperature of the olefinic phase
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In-phase and out-of-phase tensile properties of polypropylene/polyamide 6 blends modified by a succinic anhydride industrial waste based interfacial agent as determined at the glass transition temperature of the olefinic phase

机译:聚丙烯/聚酰胺6的相位和异相拉伸性质由琥珀酸酐工业废物基界界面改性的共混物,如确定在烯烃相的玻璃化转变温度下

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This work deals with the study of the evolution at the glass transition temperature of the polypropylene of both the in-phase and the out-of-phase responses of polypropylene/polyamide-6 blends by considering the compatibilization due to the presence of an industrial waste based interfacial modifier, a succinic anhydride acid (SA) grafted atactic polypropylene (aPP-SA/SA) with 3% w/w grafted SA (3.0·10~(-4) g.mol~(-1)). The novelty of this is that it contains terminal, backbone and bridge SA grafts. The combined effects of both the polyamide and the interfacial agent are assumed to cause changes in the glass transition temperature (T_g) of the polypropylene phase. In fact, this study explores the changes in both the elastic and the viscous behavior of the iPP/PA 6 blend considering all the possible composition range (0 up to 100%) of each polymer phase in the blend. The work has been twofold planned. On one hand, we have used dynamic mechanical parameters to evidence the interfacial modifications caused by the presence of aPP-SA/SA in the iPP/PA6 system as determined at the iPP Tg. On the other, obtaining a mathematical model capable to predict the overall behavior of the blend for whatever compositional range considered. So, and assuming that the components of the blend interact each other, a Box-Wilson experimental design considering the amount of iPP (and indirectly of PA6) and of the aPP-SA/SA interfacial agent was used to obtain the mathematical model.
机译:这项工作涉及通过考虑由于工业废物的存在而认为相容化来研究聚丙烯/聚酰胺-6共混物的聚丙烯的聚丙烯的玻璃化转变温度的进化。基于界面改性剂,琥珀酸酐酸(SA)接枝的acrafted attactiC聚丙烯(APP-SA / SA),其中3%w / w接枝Sa(3.0·10〜(-4)g.mol〜(-1))。这个新颖的是它包含终端,骨干和桥梁SA移植物。假设聚酰胺和界面剂两种聚酰胺和界面剂的组合效果导致聚丙烯相的玻璃化转变温度(T_g)的变化。实际上,本研究探讨了IPP / PA 6混合物的弹性和粘性行为的变化,考虑到共混物中的每种聚合物相的所有可能的组成范围(0至100%)。这项工作已经有双重计划。一方面,我们使用动态机械参数来证明在IPP TG上确定的IPP / PA6系统中的App-SA / SA引起的界面修改。另一方面,获得能够预测混合物的整体行为的数学模型,以为所考虑的任何组成范围。因此,并假设混合物的组分彼此相互作用,考虑到IPP的量(和间接的PA6)和APP-SA / SA界面剂的盒威尔逊实验设计用于获得数学模型。

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