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Role of interfacial adhesion and fiber length on the mechanical performance fiber reinforced thermoplastic elastomers

机译:界面粘附和纤维长度对机械性能纤维增强热塑性弹性体的作用

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摘要

Thermoplastic elastomers combine inherent benefits such as the processability and recyclability of thermoplastics and the elasticity, toughness, and flexibility of elastomers. In this work, polyester based thermoplastic elastomers have been reinforced with carbon and poly(p-phenylene-2,6-benzobisoxazole) (PBO) fibers of similar strength and stiffness. Testing of the respective mechanical properties revealed that the PBO reinforced composites yielded higher tensile strength. Single fiber pullout testing was also performed to evaluate the respective interfacial and mechanical properties where it was found that the apparent interfacial shear strength for carbon fibers was two to three times greater than their PBO counterparts. Further analysis revealed that the fiber length of the PBO composites was much greater than for carbon fiber, resulting in superior strength of the PBO reinforced elastomers.
机译:热塑性弹性体结合了固有的益处,例如热塑性塑料的可加工性和可回收性以及弹性体的弹性,韧性和柔韧性。 在这项工作中,已经用碳和聚(对亚苯基-2,6-苯并二苯并二苯并唑)(PbO)纤维增强了聚酯基热塑性弹性体。 对各自的机械性能的测试显示PbO增强复合材料产生较高的拉伸强度。 还进行了单纤维拉伸测试以评估各自的界面和机械性能,发现碳纤维的表观界面剪切强度大于其PbO对应物的两到三倍。 进一步的分析表明,PbO复合材料的纤维长度大得多大于碳纤维,导致PbO增强弹性体的优异强度。

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