Caban Renata, Gnatowski Adam
Department of Materials Engineering, Faculty of Production Engineering and Materials Technology, Czestochowa University of Technology, 42-201 Czestochowa, Poland.
Department of Technology and Automation, Faculty of Mechanical Engineering and Computer Science, Czestochowa University of Technology, 42-201 Czestochowa, Poland.
Materials (Basel). 2024 Jul 12;17(14):3453. doi: 10.3390/ma17143453.
This paper presents the results of the research on the structure and thermal properties of materials made from fly ash based on high-density polyethylene (HDPE). Composites based on a polyethylene matrix with 5, 10, and 15 wt% fly ash from hard coal combustion content were examined. Fourier transform infrared spectroscopy with attenuated total reflectance (FTIR-ATR) was used to identify characteristic functional groups present in the chemical structure of polyethylene and the composites based on its matrix. Structural analysis was performed using X-ray diffraction (XRD), a differential scanning calorimeter (DSC), and microscopic examinations. Mechanical properties were also examined. Analysis of the thermal effect values determined by the DSC technique, XRD, and FTIR-ATR allowed the evaluation of the crystallinity of the tested materials. Polyethylene is generally considered to be a two-phase system consisting of crystalline and amorphous regions and is a plastic characterized by a significant crystalline phase content. Based on the FTIR-ATR spectra, DSC curves, and XRD, the effect of the filler and the changes occurring in the materials studied resulted in a decrease in the degree of crystallinity and a change in the melting point and crystallization temperature of the polymer matrix were established. Microscopic examinations were carried out to analyze the microstructure of the composites to collect information on the distribution and shape of the filler particles, indicating their size and distribution in the polymer matrix. Furthermore, the use of scanning electron microscopy combined with energy-dispersive X-ray spectroscopy (SEM-EDS) allowed for the microanalysis of the chemical composition of the filler particles.
本文介绍了基于高密度聚乙烯(HDPE)的粉煤灰材料的结构和热性能研究结果。对含有5%、10%和15%(重量)硬煤燃烧产生的粉煤灰的聚乙烯基复合材料进行了研究。采用衰减全反射傅里叶变换红外光谱(FTIR-ATR)来识别聚乙烯及其基复合材料化学结构中存在的特征官能团。使用X射线衍射(XRD)、差示扫描量热仪(DSC)和显微镜检查进行结构分析。还对力学性能进行了研究。通过DSC技术、XRD和FTIR-ATR测定的热效应值分析,能够评估测试材料的结晶度。聚乙烯通常被认为是由结晶区和非晶区组成的两相体系,是一种具有显著结晶相含量的塑料。基于FTIR-ATR光谱、DSC曲线和XRD,确定了填料的影响以及所研究材料中发生的变化导致结晶度降低,聚合物基体的熔点和结晶温度发生变化。进行显微镜检查以分析复合材料的微观结构,收集有关填料颗粒分布和形状的信息,表明其在聚合物基体中的尺寸和分布。此外,结合能量色散X射线光谱的扫描电子显微镜(SEM-EDS)的使用允许对填料颗粒的化学成分进行微观分析。