Nagy Dorottya, Weltsch Zoltán
Department of Innovative Vehicles and Materials, Faculty of Engineering and Computer Science, John von Neumann University, 10 Izsáki Street, 6000 Kecskemét, Hungary.
Vehicle Industry Research Center, Széchenyi István University, Egyetem Tér 1, 9026 Győr, Hungary.
Materials (Basel). 2023 Sep 26;16(19):6402. doi: 10.3390/ma16196402.
Crystallinity and rheological behavior are significant for processing semi-crystalline polymers with fine mechanical properties. There is always an economical need to create a less expensive new material with better properties. Non-isothermal crystallization and oscillatory shear rheology of different branch-type polyethylene-polyethylene blends were investigated. Samples of high-density and low-density polyethylene (HDPE/LDPE) (20/80, 40/60, 60/40 and 80/20 weight ratios) and two types of high-density and linear low-density polyethylene (HDPE/LLDPE) (40/60 and 60/40 weight ratios) were prepared via extrusion. The materials were tested by differential scanning calorimetry (DSC) at several cooling rates (5, 10, 20, 30 and 40°/min) and by oscillation rheometry (ARES G2) at low angular frequency range to prove their miscibility or immiscibility. It was found that the one-peak melting endotherm of the 80-20% HDPE-LDPE blend could indicate miscibility in the solid phase, while the other HDPE-LDPE blends with two-peak curves are partially or not miscible. In contrast, all the HDPE-LLDPE blends indicate co-crystallization, but the 40-60% HDPE-LLDPE butylene blend is probably immiscible. It was revealed that complex viscosity decreases with angular frequency: linearly for HD-LD blends and not linearly for HD-LLDPE blends. The complex viscosity shows linear behavior with composition for HD-LLDPE blends, while there is a positive-negative deviation for HD-LD blends. In the liquid phase, according to rheological measurements, the HDPE-LDPE blends are not or partially miscible, while the HDPE-LLDPE blends are probably miscible.
结晶度和流变行为对于加工具有良好机械性能的半结晶聚合物至关重要。一直以来,出于经济需求,人们希望创造出一种性能更优但成本更低的新材料。研究了不同支化型聚乙烯 - 聚乙烯共混物的非等温结晶和振荡剪切流变学。通过挤出制备了高密度聚乙烯和低密度聚乙烯(HDPE/LDPE)(重量比为20/80、40/60、60/40和80/20)以及两种类型的高密度聚乙烯和线性低密度聚乙烯(HDPE/LLDPE)(重量比为40/60和60/40)的样品。通过差示扫描量热法(DSC)在几种冷却速率(5、10、20、30和40℃/分钟)下以及通过振荡流变仪(ARES G2)在低角频率范围内对材料进行测试,以证明它们的混溶性或不混溶性。结果发现,80 - 20% HDPE - LDPE共混物的单峰熔融吸热峰可能表明在固相中具有混溶性,而其他具有双峰曲线的HDPE - LDPE共混物则部分或不混溶。相比之下,所有的HDPE - LLDPE共混物都表明有共结晶现象,但40 - 60% HDPE - LLDPE丁烯共混物可能不混溶。结果表明,复数粘度随角频率降低:HD - LD共混物呈线性降低,而HD - LLDPE共混物则呈非线性降低。对于HD - LLDPE共混物,复数粘度随组成呈线性变化,而对于HD - LD共混物则存在正负偏差。在液相中,根据流变学测量结果,HDPE - LDPE共混物不混溶或部分混溶,而HDPE - LLDPE共混物可能混溶。