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Thermoplastic/thermoset multilayer composites: A way improve the impact damage tolerance of thermosetting resin matrix to composites

机译:热塑性/热固性多层复合材料:一种改善热固性树脂基体对复合材料的冲击破坏耐受性的方法

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We present a method to improve the impact damage tolerance of thermoset resin matrix composites by exploiting thermoplastic material impact resistance properties. Two configurations of thermoplastic/thermoset multilayer composites are considered: (a) thermoplastic material is used on sample surface as shock absorber and (b) thermoplastic film is inserted in between thermoset layers to act as interlayer. We aim at increasing adhesion strength between thermoplastic and thermoset resin matrix. We show that mode I critical strain energy release rate, determined by the wedge double cantilever beam fracture test, increases significantly when a third amorphous polymer interlayer compatible with both thermoplastic and thermoset resin is inserted. The analysis of scanning electron microscope fracture surfaces helps us to clarify the adhesion mechanism involved. The high adhesion between thermoplastic and thermoset resins obtained with this method, together with the ability of thermoplastics to dissipate the impact damage in the first plies ensure the reliability of this stacked configuration. Finally, we show that these multilayer composite significantly increases the impact resistance of composite materials. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们提出了一种方法,通过利用热塑性材料的耐冲击性来提高热固性树脂基复合材料的耐冲击损伤性。考虑了热塑性/热固性多层复合材料的两种配置:(a)热塑性材料在样品表面上用作减震器,并且(b)热塑性薄膜插入热固性层之间以充当中间层。我们旨在提高热塑性塑料和热固性树脂基体之间的粘合强度。我们显示,当插入与热塑性塑料和热固性树脂均兼容的第三个非晶态聚合物中间层时,由楔形双悬臂梁断裂试验确定的模式I临界应变能释放速率显着提高。扫描电子显微镜断裂表面的分析有助于我们弄清所涉及的粘附机理。用这种方法获得的热塑性树脂和热固性树脂之间的高粘合力,以及热塑性塑料消除第一层中冲击破坏的能力,确保了这种堆叠结构的可靠性。最后,我们表明这些多层复合材料显着提高了复合材料的抗冲击性。 (C)2017 Elsevier Ltd.保留所有权利。

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