Effect of Cenosphere Fly Ash on the Thermal, Mechanical, and Morphological Properties of Rigid PVC Foam Composites

P. Khoshnoud, N. Abu-Zahra
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引用次数: 20

Abstract

Cenosphere fly ash is a byproduct of coal combustion processes of power plants. It is composed of hollow, hard shelled, minute spheres, which are made up of silica, iron, and alumina. In this study, cenosphere fly ash is incorporated into rigid PVC foam to improve thermal and mechanical properties of their composites. Microstructural, physical, mechanical, and thermal properties of rigid PVC foam extruded with different loadings of cenosphere fly ash (6, 12, 18phr) are characterized. The measured density of the extruded PVC foam composites increased with cenosphere content, indicating a hindrance to the foaming process. Tensile and flexural mechanical properties improved at higher cenosphere content, while the impact strength decreased at initial loading of 6 phr of cenosphere particles and remained steady at higher loadings. Thermal characterization of the extruded samples showed that glass transition temperature remained almost unaffected, while TGA analysis revealed no change in the initial degradation temperature and significant improvement in the final degradation temperature. Thermo-mechanical properties measured by DMA revealed a remarkable improvement in the viscoelastic properties of the composites reinforced with cenosphere particles. SEM analysis of the composites microstructure confirmed that the cenosphere particles were mechanically interlocked with good interfacial interaction in the PVC matrix.
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空心球粉煤灰对硬质PVC泡沫复合材料热、力学和形态性能的影响
空心圈粉煤灰是电厂煤燃烧过程的副产品。它是由中空的、坚硬的、微小的球体组成的,这些球体由二氧化硅、铁和氧化铝组成。在本研究中,将空心球粉煤灰掺入硬质PVC泡沫塑料中,以改善其复合材料的热性能和力学性能。研究了不同掺量(6、12、18phr)的空心球粉煤灰挤压硬质PVC泡沫塑料的微观结构、物理、机械和热性能。挤出聚氯乙烯泡沫复合材料的测量密度随空心球含量的增加而增加,表明发泡过程受到阻碍。随着空心球含量的增加,拉伸和弯曲力学性能得到改善,而冲击强度在初始加载6phr的空心球颗粒时下降,在更高加载时保持稳定。热表征表明,挤压样品的玻璃化转变温度几乎未受影响,而TGA分析显示,初始降解温度没有变化,最终降解温度有显著提高。热力学性能测试表明,空心球颗粒增强复合材料的粘弹性性能有显著改善。复合材料微观结构的SEM分析证实,空心球颗粒在PVC基体中具有良好的机械联锁作用。
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