首页> 美国卫生研究院文献>Polymers >Influence of Accelerated Weathering on the Mechanical Fracture Morphology Thermal Stability Contact Angle and Water Absorption Properties of Natural Fiber Fabric-Based Epoxy Hybrid Composites
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Influence of Accelerated Weathering on the Mechanical Fracture Morphology Thermal Stability Contact Angle and Water Absorption Properties of Natural Fiber Fabric-Based Epoxy Hybrid Composites

机译:加速风化对天然纤维织物环氧杂交复合材料的机械断裂形态热稳定性接触角和吸水性能的影响

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摘要

Epoxy-based biocomposites are a good alternative for metals in lightweight applications. This research has been focused on the effect of accelerated weathering on the mechanical, thermal, contact angle, and water absorption behavior of neat epoxy, individual kenaf and sisal, and kenaf/sisal hybrid epoxy composites. The composite was fabricated by hand layup method. Among the various composites studied, sisal/kenaf/sisal hybrid epoxy composites showed the best properties and retained the thermo-mechanical properties with the lowest water absorption properties even after the weathering test. Thus, composites with hybridized kenaf and sisal with sisal outer layer are encouraging semistructural materials in outdoor applications.
机译:基于环氧基的生物复合材料是轻量级应用中的金属的替代品。该研究一直专注于加速风化对整齐环氧树脂,单独kEnaf和剑麻的机械,热,接触角和吸水行为的影响,以及KENAF / Sisal杂交环氧复合材料的机械,热,接触角和吸水行为。通过手持式制造复合材料。在研究的各种复合材料中,Sisal / Kenaf / Sisal杂交环氧基复合材料表明,即使在耐候性测试之后,即使在风化试验之后,也可以通过最低吸水性的热机械性能保留热机械性能。因此,具有杂交的keNaf和Sisal的复合材料和Sisal外层的Xisal在户外应用中令人鼓舞的晶体材料。

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