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Moisture diffusion and its impact on uniaxial tensile response of biobased composites

机译:水分扩散及其对生物基复合材料单轴拉伸响应的影响

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摘要

Biobased composites made from biopolymers and plant-based fibers are being evaluated for construction applications as replacements for wood or petroleum-based composites and plastics. The biobased composites studied here have been demonstrated to rapidly biodegrade in anaerobic conditions to methane thereby reducing construction-related landfill waste and producing a useful end product, namely fuel for energy or a feedstock to grow more biopolymer. To be a useful in construction, susceptibility to moisture and eventual moisture resistance is necessary. Diffusion properties and mechanical properties are characterized in various moisture and temperature conditions for hemp/cellulose acetate and hemp/ poly(p-hydroxybutyrate) composites. The composites were observed to follow Fick's 2nd law of diffusion. The tensile moduli of elasticity were found to decrease with full moisture saturation while the ductility increased and the ultimate strength did not change significantly. Measured diffusion coefficients are compared to petroleum-based and other biobased composites.
机译:由生物聚合物和植物基纤维制成的生物基复合材料正在评估其建筑应用,以替代木材或石油基复合材料和塑料。已证明此处研究的生物基复合材料在厌氧条件下可快速生物降解为甲烷,从而减少与建筑相关的垃圾填埋场,并产生有用的最终产品,即用于能源的燃料或用于生长更多生物聚合物的原料。为了在建筑中有用,对水分的敏感性和最终的抗潮性是必要的。大麻/醋酸纤维素和大麻/聚对羟基丁酸酯复合材料在各种湿度和温度条件下均具有扩散性能和机械性能。观察到该复合材料遵循菲克第二扩散定律。发现随着完全的水分饱和,弹性的拉伸模量降低,而延展性增加并且极限强度没有显着改变。将测得的扩散系数与石油基和其他生物基复合材料进行比较。

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