A two-scale study on the influence of biopolymer enhancement on drying granular materials

R. Chen, M. Veveakis
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Abstract

Cracking resulting from drying (constrained dehydration) poses a significant challenge in geomaterials, impacting their mechanical performance. To address this problem, extensive efforts have been made to prevent or mitigate the occurrence of cracks, with recent attention focused on the utilisation of biopolymers. This letter investigates the influence of varying concentrations of the xanthan biopolymer on the mechanical response of granular materials, examining both macro and micro scales. The strength changes of the soil were evaluated through desiccation experiments, analysing the appearance and progression of failure on the macro scale. The findings of this study demonstrate that failure (cracking) progression is mitigated and eventually eliminated by increasing the concentration of the additive xanthan. Additionally, capillary experiments were conducted to assess the changes in attraction and the development of capillary bridges on the micro-scale. They indicate that the formation of hydrogel bridges significantly enhances particle attraction, thereby increasing its macro-resistance to cracking.
关于生物聚合物增强对干燥颗粒材料影响的双尺度研究
因干燥(受限脱水)而产生的裂缝对土工材料构成了重大挑战,会影响其机械性能。为了解决这个问题,人们已经做出了大量努力来防止或减轻裂缝的出现,最近的关注点集中在生物聚合物的利用上。这封信研究了不同浓度的黄原胶生物聚合物对颗粒材料力学响应的影响,同时考察了宏观和微观尺度。通过干燥实验评估了土壤的强度变化,分析了宏观尺度上失效的出现和发展。研究结果表明,通过增加添加剂黄原胶的浓度,可减轻并最终消除失效(开裂)现象。此外,还进行了毛细管实验,以评估微观尺度上吸引力的变化和毛细管桥的发展。实验结果表明,水凝胶桥的形成大大增强了颗粒的吸引力,从而提高了宏观抗裂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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