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Bamboo fiber has engineering properties and performance suitable as reinforcement for asphalt mixture

机译:竹纤维具有工程性能和性能,适用于沥青混合料的加固

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Bamboo is a plant species that features fast-growing characteristics, and bamboo fiber is a kind of environmentally attractive fiber, which is affordable, recyclable, degradable and renewable. This exploratory study entails laboratory tests conducted to evaluate the potential impact of bamboo fiber on the properties of asphalt mastic and mixture, in comparison to that of lignin fiber. To analyze the road performance and reinforcement mechanism of bamboo fiber asphalt mixture, three kinds of fiber asphalt mastics and mixtures, non-fiber, lignin fiber and bamboo fiber, were prepared. The thermal properties of asphalt mastic and the mechanical properties, high-temperature property, low-temperature property, moisture susceptibility and anti-aging property of asphalt mixtures were tested. Finally, the mechanism of interactions between fiber and mixture was revealed using a scanning electron microscope. Both types of plant fiber can improve the degree of crosslinking between asphalt molecules, thus slightly improving the thermal stability of asphalt mastic at high temperature and effectively decrease its temperature sensitivity. The mechanical properties of lignin fiber asphalt mixture outperformed those of bamboo fiber, while the bamboo fiber asphalt mixture exhibited excellent road performance (especially high-temperature stability, low-temperature crack resistance and moisture stability), notably better than that of lignin fiber. Bamboo fiber can form a close connection with mixture and increase the proportion of structural asphalt in the mixture through adsorption. Both adsorption and mechanical anchoring can reduce the temperature sensitivity and moisture sensitivity of the fiber-reinforced asphalt mixture. The distributed fibers can form a three-dimensional network structure in the asphalt mixture, delaying and controlling the occurrence and development of large cracks in the mixture. Bamboo fiber is a viable substitute for lignin fiber, and its beneficial effects on asphalt mixture might be enhanced in the future by further engineering its surface microstructure and chemistry and improving its dispersion. (c) 2021 Elsevier Ltd. All rights reserved.
机译:竹子是一种植物物种,具有快速增长的特性,竹纤维是一种环境吸引力的纤维,可负担得起,可回收,可降解和可再生能力。该探索性研究需要进行实验室测试,以评估竹纤维对沥青胶粘剂和混合物性能的潜在影响,与木质素纤维相比。为了分析竹纤维沥青混合料的道路性能和加固机制,制备了三种纤维沥青胶粘剂和混合物,非纤维,木质素纤维和竹纤维。测试了沥青乳香和机械性能,高温性,低温性,水分敏感性和沥青混合物的抗老化性能的热性能。最后,使用扫描电子显微镜揭示了纤维和混合物之间的相互作用的机制。两种类型的植物纤维可以提高沥青分子之间的交联度,从而略微提高高温下沥青胶粘剂的热稳定性,有效地降低其温度敏感性。木质素纤维沥青混合物的力学性能优于竹纤维,而竹纤维沥青混合料优异的道路性能(尤其是高温稳定性,低温抗裂性和水分稳定性),显着优于木质素纤维。竹纤维可以与混合物形成紧密的连接,并通过吸附增加混合物中结构沥青的比例。吸附和机械锚固均可降低纤维增强沥青混合料的温度敏感性和湿度敏感性。分布式纤维可以在沥青混合物中形成三维网络结构,延迟和控制混合物中大裂缝的发生和发展。竹纤维是一种可行的木质素纤维替代品,其对沥青混合料的有益效果可以通过进一步工程其表面微观结构和化学并改善其分散来增强。 (c)2021 elestvier有限公司保留所有权利。

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