Deng Jiangang, Song You, Xu Zhuolin, Nie Yu, Lan Zhenbo
Wuhan Nari Limited Liability Company of State Grid Electric Power Research Institute, Wuhan 430074, China.
State Grid Electric Power Research Institute, Nanjing 210000, China.
Polymers (Basel). 2022 Mar 22;14(7):1275. doi: 10.3390/polym14071275.
In this article, the thermal aging behavior of polyphenylene sulfide (PPS) composites, reinforced by 20% glass fibers (GFs), in thermal aging temperatures ranging from 85 to 145 °C was studied. Tensile and bending properties and color changes in the thermally aged samples were investigated. The results showed that thermal aging at this temperature range resulted in the degradation of mechanical properties. Both the tensile and flexural strength of the GF/PPS composites were significantly reduced after thermal aging at 145 °C. Decreased strength and brittle fracture were observed because thermal aging at high temperatures resulted in the deterioration of the interfaces between the GFs and PPS matrix. The degradation of the mechanical properties of the composite samples can be reflected by the color change, which means that the mechanical properties of the GF/PPS composite samples under thermal aging are predictable using color change analysis.
在本文中,研究了由20%玻璃纤维(GFs)增强的聚苯硫醚(PPS)复合材料在85至145°C热老化温度范围内的热老化行为。对热老化样品的拉伸和弯曲性能以及颜色变化进行了研究。结果表明,在此温度范围内的热老化导致了机械性能的降解。在145°C热老化后,GF/PPS复合材料的拉伸强度和弯曲强度均显著降低。观察到强度降低和脆性断裂,因为高温下的热老化导致了GFs与PPS基体之间界面的劣化。复合材料样品机械性能的降解可以通过颜色变化来反映,这意味着使用颜色变化分析可以预测热老化下GF/PPS复合材料样品的机械性能。