Jiang Yaqiang, He Wei, Huo Xinke, Lu Xuelian, Li Kaiyuan, Xiao Fei
Key Laboratory of Fire Protection and Retardant Technology, Ministry of Emergency Management, Chengdu 610036, China.
Sichuan Fire Research Institute of MEM, Chengdu 610036, China.
Polymers (Basel). 2025 May 6;17(9):1273. doi: 10.3390/polym17091273.
To evaluate the fire safety of 110 kV ultra-high-voltage flame-retardant polyvinyl chloride (PVC) cables in the service process, the effects of thermal aging on the pyrolysis and combustion behavior of the cable sheaths were studied using thermogravimetric (TG), limiting oxygen index (LOI), UL-94 vertical burning, cone calorimeter, open flame, and muffle furnace tests. The results showed that thermal aging causes a slight decrease in the LOI value of the cable sheath (28.3% vs. 28.5%), but it also passed the UL-94 V-0 test. The butane torch test showed that the cable sheath was more easily ignited after aging; however, a better char layer was formed in the later stage of burning, which led to a longer failure time. Interestingly, the aging treatment prolonged the ignition time of the cable sheaths and reduced the peak heat release rate (pHRR) and total heat release (THR) by 17.5% and 24.4%, respectively, in the cone calorimeter test, indicating that aging resulted in a reduction in the fire hazard of the cable sheaths. Moreover, aging mechanisms were proposed based on the composition and structural evolution of the cable sheaths. In summary, this work comprehensively evaluated the fire hazard of 110 kV ultra-high-voltage cables and provided theoretical support for the formulation improvement, durability enhancement, and fire protection design of cable sheath materials.
为评估110 kV超高压阻燃聚氯乙烯(PVC)电缆在服役过程中的消防安全性能,采用热重分析(TG)、极限氧指数(LOI)、UL-94垂直燃烧试验、锥形量热仪、明火试验和马弗炉试验,研究了热老化对电缆护套热解和燃烧行为的影响。结果表明,热老化使电缆护套的极限氧指数值略有下降(28.3%对28.5%),但仍通过了UL-94 V-0级试验。丁烷喷枪试验表明,老化后的电缆护套更容易被点燃;然而,在燃烧后期形成了更好的炭层,这导致失效时间延长。有趣的是,在锥形量热仪试验中,老化处理延长了电缆护套的点火时间,并使热释放峰值速率(pHRR)和总热释放量(THR)分别降低了17.5%和24.4%,这表明老化降低了电缆护套的火灾危险性。此外,还基于电缆护套的组成和结构演变提出了老化机理。综上所述,本研究全面评估了110 kV超高压电缆的火灾危险性,为电缆护套材料的配方改进、耐久性增强和防火设计提供了理论支持。