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Mechanical properties of woven glass fabric reinforced in situ polymerized poly(butylene terephthalate) composites

机译:原位聚合聚对苯二甲酸丁二醇酯复合玻璃纤维织物的力学性能

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摘要

Cyclic butylene terephthalate (CBT) has been polymerized in situ at T = 190℃ in the presence and absence of woven glass fabric (WGF). The thermal properties of the in situ polymerized poly(butylene terephthalate) (ISP-PBT) were compared with those of a commercial injection molded PBT (IM-PBT). It was found that the crystallinity of IM-PBT is markedly lower than that of ISP-PBT rendering the latter more brittle. WGF-reinforced (ca. 50 vol.%) ISP-PBT composites were fabricated by compression molding at T = 190℃ using displacement and pressure-controls. Effects of the molding condition were investigated in tensile, three-point bending, short beam shear and dynamic mechanical thermal analysis tests. Both tensile and flexural properties (stiffness and strength), as well as inter-laminar shear strength, were enhanced when the molding occurred under pressure-controlled instead of displacement-controlled conditions. Scanning electron microscopic (SEM) inspection revealed excellent wet-out of the fibers and good interfacial bonding between the fibers and ISP-PBT.
机译:环状对苯二甲酸丁二酯(CBT)在有无玻璃纤维织物(WGF)的情况下,在T = 190℃就地聚合。将原位聚合的聚对苯二甲酸丁二醇酯(ISP-PBT)的热性能与商用注塑PBT(IM-PBT)的热性能进行了比较。发现IM-PBT的结晶度明显低于ISP-PBT的结晶度,从而使后者更脆。 WGF增强(约50 vol。%)的ISP-PBT复合材料是通过使用位移和压力控制在T = 190℃下压缩成型而制成的。在拉伸,三点弯曲,短梁剪切和动态机械热分析测试中研究了成型条件的影响。当在压力控制而不是位移控制的条件下进行成型时,拉伸和弯曲性能(刚度和强度)以及层间剪切强度均得到增强。扫描电子显微镜(SEM)检查显示纤维极佳的润湿性,以及纤维与ISP-PBT之间的良好界面结合。

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