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Effect of Heat Treatment on the Mechanical and Tribological Properties of Polyphenylene Sulfide Fiber Materials

机译:热处理对聚苯硫醚纤维材料力学和摩擦学性能的影响

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摘要

Polyphenylene sulfide (PPS) fiber materials, whose raw fibers had been heat treated previously for 1 to 5 days, were prepared by a hot-pressing method. The tribological properties of PPS resin and fiber materials against an AISI 1045 steel ring were evaluated using a block-on-ring wear tester. The results showed that the sample whose raw fibers had been heated at 240 degrees C for 1 day (S1) exhibited the highest impact strength as well as the lowest friction coefficient and wear rate. The friction coefficient of S1 was 39% lower than that of the PPS resin material, and its wear rate was 1 to 2 orders of magnitude lower than those of the other samples. DSC analysis results indicated that the condensed structure of the samples gradually changed from the crystalline to the amorphous state with the increase of heat-treatment time of the raw fibers. DMA and DSC analysis results proved that severe, oxidative cross-linking reactions occurred when the raw fibers were heated over 3 days. It is concluded that proper heat treatment of the raw fibers is advantageous to improve the degree of crystallinity and appropriate oxidative cross-linking; therefore, the prepared PPS fiber material can exhibit better mechanical and tribological performances.
机译:通过热压法,准备将原纤维预先进行了1〜5天的热处理的聚苯硫醚(PPS)纤维材料。使用环对块磨损测试仪评估了PPS树脂和纤维材料对AISI 1045钢环的摩擦学性能。结果表明,将原始纤维在240摄氏度下加热1天(S1)的样品表现出最高的冲击强度以及最低的摩擦系数和磨损率。 S1的摩擦系数比PPS树脂材料低39%,磨损率比其他样品低1-2个数量级。 DSC分析结果表明,随着原料纤维热处理时间的增加,样品的压缩结构逐渐从晶态转变为非晶态。 DMA和DSC分析结果证明,当将原始纤维加热3天以上时,会发生严重的氧化交联反应。结论是,对粗纤维进行适当的热处理有利于提高结晶度和适当的氧化交联。因此,所制备的PPS纤维材料可以表现出更好的机械和摩擦性能。

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