Assessment of the drying behaviour of young and mature Bambusa vulgaris from Ghana

Michael Awotwe-Mensah , Stephen Jobson Mitchual , Emmanuel Appiah-Kubi , Peter Kessels Dadzie , Prosper Mensah , Mark Bright Donkor
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引用次数: 1

Abstract

This study assessed the drying behaviour of young and mature Bambusa vulgaris culms and evaluated their utilisation potential. Two and four-year old Bambusa vulgaris culms were harvested and prepared to the required length of 21 internodes. The first seven internodes were taken as the bottom, the second seven were taken as middle and the last seven internodes were taken as the top. The study used samples from the bottom and top. Physical properties, including basic density and moisture content, were determined in accordance with ISO 13061–2 (ISO 2014) and EN 13183–1 (EN 2002), respectively, while shrinkage properties (radial, tangential, longitudinal and volumetric) were determined following established procedures. For the bottom and top portions of the mature bamboo after 18 days of drying, radial shrinkage values were 3.31% and 5.01%, tangential values were 4.95% and 5.78%, and longitudinal values were 0.28% and 0.35%, respectively. For the bottom and top portion of two-year-old culms, the values were 15.0% and 18.6% for radial shrinkage, 20.5% and 25.8% for tangential shrinkage and 0.46% and 0.47% for longitudinal shrinkage, respectively. The tangential shrinkage values were higher than the radial and longitudinal shrinkage values. The moisture content of the bottom part of the mature bamboo culm after 3 and 18 days of drying were 31.4% and 12.2%, while the young culms had values of 53.5% and 27.8%, respectively. Mature bamboo culms had better drying behaviour than young culms. Consequently, mature bamboo culms are more suitable for use in engineered composite materials.

加纳青壮年斑竹干燥行为的评价
本研究评估了幼年和成熟斑竹秆的干燥行为,并评估了其利用潜力。收获2年和4年生的斑竹秆,并将其制备至21个节间的所需长度。前7个节间为底部,后7个节间居中,最后7个节间顶部。这项研究使用了底部和顶部的样本。物理性能,包括基本密度和含水量,分别根据ISO 13061-2(ISO 2014)和EN 13183-1(EN 2002)进行测定,而收缩性能(径向、切向、纵向和体积)则根据既定程序进行测定。干燥18天后,成熟竹子的底部和顶部的径向收缩值分别为3.31%和5.01%,切向收缩值为4.95%和5.78%,纵向收缩值为0.28%和0.35%。对于两年生秆的底部和顶部,径向收缩的值分别为15.0%和18.6%,切向收缩的值为20.5%和25.8%,纵向收缩的值则分别为0.46%和0.47%。切向收缩值高于径向和纵向收缩值。干燥3天和18天后,成熟竹秆底部的水分含量分别为31.4%和12.2%,而年轻竹秆的水分含量值分别为53.5%和27.8%。成熟的竹秆比年轻的竹秆具有更好的干燥性能。因此,成熟的竹竿更适合用于工程复合材料。
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