| Literature DB >> 33800874 |
Ildar I Salakhov1, Anatoly E Chalykh2, Nadim M Shaidullin1, Alexey V Shapagin2, Nikita Yu Budylin2, Ramil R Khasbiullin2, Ilya E Nifant'ev3, Vladimir K Gerasimov2.
Abstract
The compositions based on bimodal high-density polyethylene (HDPE, copolymer of ethylene with hexene-1) and in mixture with monomodal tercopolymer of ethylene with butene-1/hexene-1 (LLDPE, low-density polyethylene) have been studied. Phase equilibrium, thermodynamic parameters of interdiffusion in a wide range of temperatures and ratios of co-components were identified by refractometry, differential scanning calorimetry, optical laser interferometry, X-ray phase analysis. The phase state diagrams of the HDPE-LLDPE systems were constructed. It has been established that they belong to the class of state diagrams of "solid crystal solutions with unrestricted mixing of components". The paired parameters of the components interaction and their temperature dependences were calculated. Thermodynamic compatibility of α-olefins in the region of melts and crystallization of one of the components has been shown. The kinetics of formation of interphase boundaries during crystallization of α-olefins has been analyzed. The morphology of crystallized gradient diffusion zones has been analyzed by optical polarization microscopy. The sizes of spherulites in different areas of concentration profiles and values of interdiffusion coefficients were determined.Entities:
Keywords: bimodal high density polyethylene; diffusion; linear low-density polyethylene; phase equilibrium; phase state diagram; solubility
Year: 2021 PMID: 33800874 PMCID: PMC7961435 DOI: 10.3390/polym13050811
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329