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Gelation and Crystallization Phenomena in Polyethylene Plastomers Modified with Waxes

机译:用蜡改性聚乙烯塑料中的凝胶化和结晶现象

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摘要

Polyethylene (PE) plastomers, single-site catalyst-based homogeneous linear low-density PEs (LLDPEs), combine low crystallinity, softness, and elasticity, making them ideal candidates for numerous applications such as hot-melt adhesives (HMA). As plastomers crystallize rather slowly, a number of possible low molecular weight polyolefin components were tested to accelerate solidification. An ideal modifier should accelerate solidification while maintaining transparency and softness of the base polymer. A Queo plastomer type was modified with different PE and PP waxes at concentrations of 5 to 25 wt.-%. Next to conventional calorimetry, a rheological technique was applied to study solidification. The resulting morphology was studied by atomic force microscopy, and the final compositions were investigated regarding their mechanical and optical performance. Accelerated solidification was observed in all cases, but a quite different course of structure formation could be concluded. PE waxes dissolve in the melt state, forming a lamellar network during cooling, whereas PP waxes form a heterogeneous blend in the melt for which the wax droplets solidify before the matrix. The particulate-type modification by the PP wax also affects stiffness less while retaining transparency better.
机译:聚乙烯(PE)塑性体,单现位催化剂基均匀线性低密度PES(LLDPES),结合低结晶度,柔软度和弹性,使其成为诸如热熔粘合剂(HMA)之类的许多应用的理想候选者。随着塑性体相当慢慢地结晶,测试了许多可能的低分子量聚烯烃组分以加速凝固。理想的改性剂应加速凝固,同时保持基础聚合物的透明度和柔软性。用不同的PE和PP蜡改性Queo塑性体类型,浓度为5-25重量%.-%。在传统的热量测定旁,应用流变技术研究凝固。通过原子力显微镜研究所得的形态,研究了其机械和光学性能的最终组合物。在所有情况下观察到加速凝固,但可以得出完全不同的结构形成过程。 PE蜡溶解在熔体状态下,在冷却过程中形成层状网络,而PP蜡在熔体中形成异质混合物,蜡液滴在基质之前固化。 PP蜡的颗粒式修饰也影响刚度,同时保持透明度更好。

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