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首页> 外文期刊>Journal of Applied Polymer Science >Thermal aging performance of glass fiber/polyphenylene sulfide composites in high temperature
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Thermal aging performance of glass fiber/polyphenylene sulfide composites in high temperature

机译:玻璃纤维/聚苯硫醚复合材料在高温下的热老化性能

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摘要

In order to use the glass fiber reinforced polyphenylene sulfide composites (GF/PPS) in high temperature environments, thermal aging performance of two kinds of commercial grade PPS composites, reinforced by 40% glass fiber, PPS-G40 HM and 1140L4, in thermal aging temperature of 250 degrees C was compared by tensile strength, oxidized layer, color, crystallization and melting behavior. The results showed that tensile strength of GF/PPS composites is significantly decreased with increasing of aging time below 200 h and the tensile strength of aged PPS-G40 HM is higher than that of aged 1140L4. The thickness of dark color area is increased with increasing of aging time. The thickness of oxidized layer of 1140L4 is thinner than that of PPS-G40 HM. However, the color of oxidized layer of PPS-G40 HM is lighter than that of 1140L4. The recrystallization in thermal aging results in the formation of crystal with higher melting point and increased melting temperature of GF/PPS composites. It is found that addition of epoxy resin can increase the initial mechanical property and improve the thermal aging performance of GF/PPS composites. A novel modified GF/PPS composite with higher thermal aging properties was obtained.
机译:为了在高温环境下使用玻璃纤维增强聚苯硫醚复合材料(GF/PPS),比较了40%玻璃纤维增强PPS-G40 HM和1140L4两种商品级PPS复合材料在250℃热老化温度下的拉伸强度、氧化层、颜色、结晶和熔融行为。结果表明,在200小时以下,随着时效时间的延长,GF/PPS复合材料的拉伸强度显著降低,老化后的PPS-G40 HM的拉伸强度高于老化后的1140L4。随着老化时间的延长,深色区域的厚度增加。1140L4的氧化层厚度比PPS-G40 HM薄,但PPS-G40 HM的氧化层颜色比1140L4浅。热时效过程中的再结晶导致GF/PPS复合材料形成熔点较高的晶体,熔融温度升高。研究发现,环氧树脂的加入可以提高GF/PPS复合材料的初始力学性能,改善其热老化性能。获得了一种具有较高热老化性能的新型改性GF/PPS复合材料。

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