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Enhancing the Mechanical Toughness of Epoxy-Resin Composites Using Natural Silk Reinforcements

机译:使用天然丝增强剂增强环氧树脂复合材料的机械韧性

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摘要

Strong and tough epoxy composites are developed using a less-studied fibre reinforcement, that of natural silk. Two common but structurally distinct silks from the domestic B. mori/Bm and the wild A. pernyi/Ap silkworms are selected in fabric forms. We show that the toughening effects on silk-epoxy composites or SFRPs are dependent on the silk species and the volume fraction of silk. Both silks enhance the room-temperature tensile and flexural mechanical properties of the composite, whereas the more resilient Ap silk shows a more pronounced toughening effect and a lower critical reinforcement volume for the brittle-ductile transition. Specifically, our 60 vol.% Ap-SFRP displays a three-fold elevation in tensile and flexural strength, as compared to pure epoxy resin, with an order of magnitude higher breaking energy via a distinct, ductile failure mode. Importantly, the 60 vol.% Ap-SFRP remains ductile with 7% flexural elongation at lower temperatures (−50 °C). Under impact, these SFRPs show significantly improved energy absorption, and the 60 vol.% Ap-SFRP has an impact strength some eight times that of pure epoxy resin. The findings demonstrate both marked toughening and strengthening effects for epoxy composites from natural silk reinforcements, which presents opportunities for mechanically superior and “green” structural composites.
机译:使用研究较少的天然丝纤维增强材料来开发强韧的环氧复合材料。从织物形式中选择了来自家蚕B./Bm和野生A. pernyi / Ap的两种常见但结构上不同的丝。我们表明,对丝绸-环氧树脂复合材料或SFRP的增韧效果取决于丝绸种类和丝绸的体积分数。两种丝都增强了复合材料的室温拉伸和挠曲机械性能,而更具弹性的Ap丝则表现出更明显的增韧效果,并且对于脆性-延展性转变具有较低的临界增强量。具体而言,与纯环氧树脂相比,我们的60%(体积)Ap-SFRP的抗张强度和抗弯强度提高了三倍,并且通过独特的延展性失效模式,其断裂能更高。重要的是,在较低温度(-50°C)下,60%(体积)的Ap-SFRP仍具有延展性,弯曲伸长率为7%。在冲击下,这些SFRPs表现出显着改善的能量吸收,并且60 vol。%Ap-SFRP的冲击强度约为纯环氧树脂的八倍。研究结果表明,天然丝增强材料对环氧复合材料具有明显的增韧作用,这为机械性能优异的“绿色”结构复合材料提供了机遇。

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