半纤维素
木质素
纤维素
复合材料
细胞壁
肿胀 的
纤维
聚合物
纳米尺度
微观力学
基质(化学分析)
各向异性
化学
材料科学
次生细胞壁
纳米技术
有机化学
量子力学
物理
生物化学
复合数
作者
Chi Zhang,Mingyang Chen,Sinan Keten,Benoît Coasne,Dominique Derome,Jan Carmeliet
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2021-09-08
卷期号:7 (37)
被引量:52
标识
DOI:10.1126/sciadv.abi8919
摘要
Despite the thousands of years of wood utilization, the mechanisms of wood hygromechanics remain barely elucidated, owing to the nanoscopic system size and highly coupled physics. This study uses molecular dynamics simulations to systematically characterize wood polymers, their mixtures, interface, and composites, yielding an unprecedented micromechanical dataset including swelling, mechanical weakening, and hydrogen bonding, over the full hydration range. The rich data reveal the mechanism of wood cell wall hygromechanics: Cellulose fiber dominates the mechanics of cell wall along the longitudinal direction. Hemicellulose glues lignin and cellulose fiber together defining the cell wall mechanics along the transverse direction, and water severely disturbs the hemicellulose-related hydrogen bonds. In contrast, lignin is rather hydration independent and serves mainly as a space filler. The moisture-induced highly anisotropic swelling and weakening of wood cell wall is governed by the interplay of cellulose reinforcement, mechanical degradation of matrix, and fiber-matrix interface.
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