Shrinking and swelling of moso bamboo with different gradient variations: Effects of culm height and presence of pith

IF 5.6 1区 农林科学 Q1 AGRICULTURAL ENGINEERING Industrial Crops and Products Pub Date : 2024-11-17 DOI:10.1016/j.indcrop.2024.120052
Jianyi Zhu , Yiding Fan , Kaiwen Chen , Yujing Tan , Hui Peng , Zhu Li , Jiali Jiang , Jianxiong Lyu , Tianyi Zhan
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Abstract

The hygroscopicity of bamboo leads to shrinking and swelling, which affects the processing and utilization of bamboo and its products. To enhance the understanding of the shrinking and swelling behavior, high-resolution microscopy and the digital image correlation technique were combined to investigate the differences in shrinking and swelling during the desorption and absorption processes at various internodes (No.3, 8 and 13). In addition, the effects of factors such as fiber distribution density and the presence of the pith ring on shrinking and swelling were analyzed. The shrinking and swelling in the radial direction varied with internode position, exhibiting a quasi-linear tangential deformation and a saddle-shaped radial deformation. As the internode position increased, the position of the maximum value of differential shrinking/swelling shifted closer to the interior of the bamboo. Upon removing the pith ring, a reduction in hygro-deformation in the inner part of bamboo was observed, while the outer part experienced an increase. The extent of this influence was directly related to the development of the pith ring. When the moisture content exceeded 10 %, hysteresis was noted in both tangential and radial deformations, as well as in the presence of pith ring. The gradient coefficient of deformation showed a pattern of initially increasing and then decreasing along the height of the culm, peaking at internode No. 8. This study explores the hygro-deformation phenomenon of bamboo and the impact of gradient levels, providing insights for understanding the bamboo-water relations, and optimizing the manufacturing of bamboo-based productions.
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毛竹在不同坡度变化下的收缩和膨胀:秆高和髓心的影响
竹子的吸湿性会导致收缩和膨胀,从而影响竹子及其制品的加工和利用。为了加深对收缩和膨胀行为的理解,我们结合高分辨率显微镜和数字图像相关技术,研究了不同节间(3 号、8 号和 13 号)在解吸和吸收过程中收缩和膨胀的差异。此外,还分析了纤维分布密度和髓环的存在等因素对收缩和膨胀的影响。径向的收缩和膨胀随节间位置的变化而变化,表现出准线性切向变形和马鞍形径向变形。随着节间位置的增加,差异收缩/膨胀最大值的位置向竹子内部靠近。去掉髓环后,竹子内部的湿度变形减小,而外部的湿度变形增大。这种影响的程度与髓环的发展直接相关。当水分含量超过 10%时,切向和径向变形以及髓环的存在都会产生滞后现象。变形梯度系数沿着茎秆的高度呈现先增大后减小的模式,在第 8 节间达到峰值。这项研究探讨了竹子的湿度变形现象和梯度水平的影响,为理解竹子与水的关系以及优化竹制产品的生产提供了启示。
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来源期刊
Industrial Crops and Products
Industrial Crops and Products 农林科学-农业工程
CiteScore
9.50
自引率
8.50%
发文量
1518
审稿时长
43 days
期刊介绍: Industrial Crops and Products is an International Journal publishing academic and industrial research on industrial (defined as non-food/non-feed) crops and products. Papers concern both crop-oriented and bio-based materials from crops-oriented research, and should be of interest to an international audience, hypothesis driven, and where comparisons are made statistics performed.
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