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Modeling hygroelastic properties of genetically modified aspen.

机译:模拟转基因白杨的水弹性特性。

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摘要

Numerical and three-dimensional finite element models were developed to improve understanding of major factors affecting hygroelastic wood properties. Effects of chemical composition, microfibril angle, crystallinity, structure of microfibrils, moisture content, and hydrophilicity of the cell wall were included in the model. Wood from wild-type and decreased-lignin transgenic aspen (Populus tremuloides Michx.) was used for experimental validation of the computer model. The model was able to predict longitudinal elastic modulus of microfibrils and woody cell walls. The difference in longitudinal elastic properties between wild-type and genetically modified aspen wood was predicted well only when additional softening of hemicelluloses and amorphous cellulose of transgenic aspen was included in the model.
机译:开发了数值和三维有限元模型,以增进对影响湿弹性木材性能的主要因素的理解。该模型包括化学成分,微纤丝角度,结晶度,微纤丝结构,水分含量和细胞壁亲水性的影响。使用野生型和木质素减少的转基因白杨木( Michx。)的木材进行计算机模型的实验验证。该模型能够预测微纤维和木质细胞壁的纵向弹性模量。仅当模型中包括半纤维素和转基因白杨的无定形纤维素的额外软化时,才能很好地预测野生型和转基因的白杨木材之间的纵向弹性特性差异。

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