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Variation of Nanostructures Molecular Interactions and Anisotropic Elastic Moduli of Lignocellulosic Cell Walls with Moisture

机译:木质纤维素细胞壁的水分的纳米结构分子相互作用和各向异性弹性模量的变化

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摘要

A combination of experimental, theoretical and numerical studies is used to investigate the variation of elastic moduli of lignocellulosic (bamboo) fiber cell walls with moisture content (MC). Our Nanoindentation results show that the longitudinal elastic modulus initially increased to a maximum value at about 3% MC and then decreased linearly with increasing MC. In contrast, the transverse moduli decrease linearly with MC. We showed that amorphous materials in cell walls have key roles in the variation of elastic modulus with increasing MC. Elastic modulus of lignin, calculated by molecular dynamics simulations, increases initially with increasing MC, and then decreases. In contrast, elastic modulus of hemicellulose decreases constantly with MC. Below 10% MC, water molecules tend to break hydrogen bonds between polymer chains and form new hydrogen bond bridges between the polymer chains, while above 10% MC, water molecules aggregate together and create nano-droplets inside the materials. During the process of bridging, the fractional free volume of lignin decreases. The free volume reduction along with formation of hydrogen bond bridges causes a growth in elastic modulus of lignin at low MC. The constant increase of hemicellulose free volume, however, causes the aggregation of voids in the system and diminution of elastic properties.
机译:实验,理论和数值研究相结合,用于研究木质纤维素(竹纤维)纤维细胞壁的弹性模量随水分含量(MC)的变化。我们的纳米压痕结果表明,纵向弹性模量最初在约3%MC时增加到最大值,然后随着MC的增加而线性下降。相反,横向模量随MC线性减小。我们表明,随着MC的增加,细胞壁中的无定形材料在弹性模量的变化中具有关键作用。通过分子动力学模拟计算,木质素的弹性模量最初随着MC的增加而增加,然后降低。相反,半纤维素的弹性模量随着MC不断降低。 MC低于10%时,水分子往往会破坏聚合物链之间的氢键,并在聚合物链之间形成新的氢键桥,而MC高于10%时,水分子会聚集在一起并在材料内部形成纳米液滴。在桥接过程中,木质素的自由体积分数降低。在低MC下,自由体积的减少以及氢键桥的形成导致木质素的弹性模量增加。但是,半纤维素自由体积的不断增加会导致系统中空隙的聚集并降低弹性。

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