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首页> 外文期刊>Journal of Applied Polymer Science >Multiscale thermal study of virgin and aged polyphenylene sulfide reinforced by glass fiber
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Multiscale thermal study of virgin and aged polyphenylene sulfide reinforced by glass fiber

机译:玻璃纤维增强原始和老化聚苯硫醚的多尺度热学研究

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In this study, virgin and thermal aged PPS samples were prepared and tested using different techniques such as thermogravimetric analysis (TGA), coupled TGA-Fourier transform infrared spectroscopy (FTIR), and FTIR as well as optical microscopy. Some interesting research results can be summarized as follows: TGA results prove the PPS composite samples aged at 180 and 200 degrees C have been degraded obviously during the aging period in oven. Moreover, accelerated aging leads to the degradation of PPS composite with the observation of increased thermal oxidation layer from outside to inside. There is a plateau standing at about 350 mu m for the thermal oxidation layer at oxidation temperature of 200 degrees C. Some thermal decomposition models are applied to clarify the degradation kinetics of PPS composite. According to the activation energy value, it appears degradation more easily at the beginning of the heating process in the atmosphere of oxygen than that of nitrogen. Moreover, the related products of PPS composites during pyrolysis are fully discussed with the combined analysis of TGA-FTIR techniques.
机译:在该研究中,使用不同的技术(例如热重分析(TGA),耦合的TGA-Fourier变换红外光谱(FTIR)以及FTIR以及光学显微镜以及光学显微镜以及光学显微镜以及光学显微镜以及光学显微镜以及光学显微镜制备和测试。一些有趣的研究结果可以概括如下:TGA结果证明在烘箱中的老化期间明显地降解了180℃,200摄氏度的PPS复合样品已经显而易见。此外,加速老化导致PPS复合材料的降解随着从外部到内部的增加的热氧化层。在200摄氏度的氧化温度下,有一个平台静置在约350μm的热氧化层,施加一些热分解模型以阐明PPS复合材料的降解动力学。根据活化能量值,在氧气大气的加热过程开始比氮气的开始时更容易降解。此外,通过对TGA-FTIR技术的组合分析充分讨论了热解期间PPS复合材料的相关产品。

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