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首页> 外文期刊>Journal of Composite Materials >Optimising processing conditions of flax fabric reinforced Acrodur biocomposites
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Optimising processing conditions of flax fabric reinforced Acrodur biocomposites

机译:优化亚麻织物增强的Acrodur生物复合材料的加工条件

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摘要

Acrodur solution and dispersion have been developed as alternative wood adhesives to phenolic and urea formaldehyde resins. They are non-corrosive and do not emit carcinogenic gases. Contrary to most resins used in natural plant fibre composites, Acrodur has superior tolerance to moisture during composite fabrication and thus drying of the preforms may be minimised or eliminated. The aim of this study was to produce optimised flax fabric reinforced Acrodur biocomposites by varying the ratio between Acrodur solution and dispersion, relative humidity, curing time and temperature. The optimised biocomposites provided a combination of specific tensile strength 57.9 MPa-cm~3/g and specific Young's modulus 5.5 GPa-cm~3/g at a low density 0.91 g/cm~3. Thermogravimetric analysis and contact angle measurement showed that the biocomposites had higher thermal stability and hydrophobicity than the fabrics. The low loss of tensile properties upon water immersion was explained by tortuous wicking path in the biocomposites.
机译:已经开发了Acrodur溶液和分散体,作为酚醛和脲醛树脂的替代木材粘合剂。它们无腐蚀性,不会散发致癌气体。与天然植物纤维复合材料中使用的大多数树脂相反,Acrodur在复合材料制造过程中具有出色的耐湿性,因此可以最大程度地减少或消除预成型坯的干燥。这项研究的目的是通过改变Acrodur溶液与分散体的比例,相对湿度,固化时间和温度来生产优化的亚麻织物增强的Acrodur生物复合材料。优化的生物复合材料在低密度0.91 g / cm〜3时提供了57.9 MPa-cm〜3 / g的比拉伸强度和5.5 GPa-cm〜3 / g的比杨氏模量的组合。热重分析和接触角测量表明,该生物复合材料比织物具有更高的热稳定性和疏水性。生物复合物中曲折的芯吸路径解释了浸入水中时拉伸性能的低损失。

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