Effects of hydrothermal–microwave treatment on bending properties of teak in plantation

IF 2.6 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Donghai Huang, Huajie Shen, Jilin Zhang, Xinzhen Zhuo, Liangzhou Dong
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引用次数: 0

Abstract

In order to study the bending properties of tropical tree species rich in organic extracts, the effects of temperature and time on the bending performance of hydrothermal treatment were investigated. The effects of power and time on bending performance under microwave heating conditions were investigated. It is found that the chemical composition does not undergo obvious degradation at 80°C–100°C, and the bending performance gradually becomes better with the increase in heating time; when the hydrothermal time exceeds 4 h, the bending performance varies with heating time. The growth is better than the difference, reaching the maximum at 4 h. When the water temperature is 140°C, the bending performance is negatively correlated with the heating time. When the hydrothermal treatment time is the same, the bending property becomes better as the temperature increases. The most reasonable process for microwave softening heating is with a power of 480 W and a heating time of 4 min. A softening treatment method combining water heat and microwave can achieve a better softening effect. When the final moisture content is controlled to 8%, the bending setting effect is the best. The optimum drying time is 6 h, and the optimum drying temperature is 50°C.
水热微波处理对人工种植柚木弯曲特性的影响
为了研究富含有机提取物的热带树种的弯曲性能,研究了温度和时间对水热处理弯曲性能的影响。研究了微波加热条件下功率和时间对弯曲性能的影响。结果发现,在 80°C-100°C 时,化学成分没有发生明显降解,弯曲性能随加热时间的增加逐渐变好;当水热时间超过 4 h 时,弯曲性能随加热时间的变化而变化。当水温为 140°C 时,弯曲性能与加热时间呈负相关。当水热处理时间相同时,弯曲性能随着温度的升高而变好。最合理的微波软化加热工艺是功率为 480 W,加热时间为 4 min。水热和微波相结合的软化处理方法可以达到更好的软化效果。当最终含水量控制在 8%时,弯曲定型效果最好。最佳干燥时间为 6 小时,最佳干燥温度为 50°C。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Materials
Frontiers in Materials Materials Science-Materials Science (miscellaneous)
CiteScore
4.80
自引率
6.20%
发文量
749
审稿时长
12 weeks
期刊介绍: Frontiers in Materials is a high visibility journal publishing rigorously peer-reviewed research across the entire breadth of materials science and engineering. This interdisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers across academia and industry, and the public worldwide. Founded upon a research community driven approach, this Journal provides a balanced and comprehensive offering of Specialty Sections, each of which has a dedicated Editorial Board of leading experts in the respective field.
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