Related Experiment Video
Updated: May 10, 2025

Artificial Thermal Ageing of Polyester Reinforced and Polyvinyl Chloride Coated Technical Fabric
Published on: January 29, 2020
Flame Retardancy Evolution Behavior and Molecular Mechanism of Polyvinyl Chloride Under the Action of Damp Heat Aging
Ke Xu1, Chenyu Gao2, Xin Liu1
1State Key Laboratory of Environmental Adaptability for Industrial Products, Guangdong Provincial Key Laboratory of Environmental Adaptability Technology for New Energy Products and Materials, China National Electric Apparatus Research Institute Co., Ltd., Guangzhou 510663, China.
Abstract:
A 56-day aging test of polyvinyl chloride (PVC) cable material under hot and humid conditions was conducted, followed by tests on flame retardancy after varying degrees of wet heat aging, including vertical burning behavior, oxygen index, and afterflame time. Using molecular dynamics simulation theory, the molecular mechanism behind the changes in flame-retardant properties after wet heat aging was investigated based on experimental observations. The results indicate that, as wet heat aging progresses, the flame brightness decreases, the oxygen index increases, and afterflame and afterglow times significantly decrease in vertical combustion tests. These findings suggest that the flame-retardant properties of PVC improve as moist heat aging deepens. After aging, the combustibles within PVC samples diffuse more easily, and the precipitation of CaCO3 on the PVC surface enhances surface density, intermolecular forces, and thermal stability, which are key factors in the improved flame retardant performance.
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