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MechanicaI Properties and Fracture Mechanisms of Fiber Reinforced PBT/PC/Elastomer Blends

机译:纤维增强PBT / PC /弹性体共混物的力学性能和断裂机理

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摘要

A group of glass fiber (GF) reinforced polymer blends with controlled morphology were designed and prepared by sequential compounding of a poly(butylene terephthaIate)/GF (PBT/GF) composite with an reactive elastomer (IDB) and/or polycarbonate (PC). It was shown that both the (PBT/GF)/PC and (PBT/GF)/IDB composites has a decreased tensile strength, Young's modulus and impact strength, when compared with the PBT/GF composite. However, when the (PBT/GF), PC and IDB were compounded together, a remarkable increase in impact strength was achieved. Microscopic study indicated that the (PBT/GF)/PC/IDB composite fractured in a ductile failure mode at the interphase between the "PBT-sheath" on the GF and the PBT/PC/IDB matrix. Toughening mechanisms for the composite were discussed.
机译:通过依次混合聚对苯二甲酸丁二醇酯/ GF(PBT / GF)复合材料与反应性弹性体(IDB)和/或聚碳酸酯(PC)来设计和制备一组具有受控形态的玻璃纤维(GF)增强聚合物共混物。结果表明,与PBT / GF复合材料相比,(PBT / GF)/ PC和(PBT / GF)/ IDB复合材料均具有降低的拉伸强度,杨氏模量和冲击强度。但是,将(PBT / GF),PC和IDB混合使用时,冲击强度显着提高。显微镜研究表明,(PBT / GF)/ PC / IDB复合材料在GF上的“ PBT-护套”和PBT / PC / IDB基质之间的相间以韧性破坏模式断裂。讨论了复合材料的增韧机理。

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