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Poroelastic Mechanical Effects of Hemicelluloses on Cellulosic Hydrogels under Compression

机译:半纤维素对压缩状态下纤维素水凝胶的孔隙弹性力学效应

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摘要

Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which in plant cell walls are incompletely understood. We report the mechanical properties of cell wall analogues based on cellulose hydrogels to elucidate the contribution of xyloglucan or arabinoxylan as examples of two hemicelluloses displaying different interactions with cellulose. We subjected the hydrogels to mechanical pressures to emulate the compressive stresses experienced by cell walls in planta. Our results revealed that the presence of either hemicellulose increased the resistance to compression at fast strain rates. However, at slow strain rates, only xyloglucan increased composite strength. This behaviour could be explained considering the microstructure and the flow of water through the composites confirming their poroelastic nature. In contrast, small deformation oscillatory rheology showed that only xyloglucan decreased the elastic moduli. These results provide evidence for contrasting roles of different hemicelluloses in plant cell wall mechanics and man-made cellulose-based composite materials.
机译:半纤维素表现出与纤维素的一系列相互作用,其在植物细胞壁中的机械后果尚不完全清楚。我们报告了基于纤维素水凝胶的细胞壁类似物的机械性能,以阐明木葡聚糖或阿拉伯木聚糖作为两个半纤维素与纤维素表现出不同相互作用的实例。我们将水凝胶置于机械压力下,以模拟植物细胞壁受到的压缩应力。我们的结果表明,半纤维素的存在都会增加快速应变速率下的抗压强度。但是,在低应变速率下,只有木葡聚糖增加了复合材料的强度。考虑到微结构和水通过复合材料的流动性可以证实其多孔弹性,可以解释这种行为。相反,小的变形振荡流变学表明只有木葡聚糖降低了弹性模量。这些结果为不同半纤维素在植物细胞壁力学和人造纤维素基复合材料中的不同作用提供了证据。

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