Characterization of the Mechanical Behavior of Hemp-Clay Composites

Chaimae Haboubi, E. H. Barhdadi, K. Haboubi, Yahya El Hammoudani, Zouhair Sadoune, Aouatif El Abdouni, F. Dimane
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Abstract

In the present study, micromechanical modeling techniques were employed to examine the mechanical proper - ties of a hemp/clay composite material. This composite consists of hemp fibers incorporated into a clay matrix, a configuration chosen in response to environmental considerations and the natural advantages of hemp fibers, which include their lightweight nature and their considerable strength and stiffness relative to their weight. The approach adopted incorporates both localization and homogenization methodologies along with the three-phase model to provide an in-depth analysis of the composite’s behavior. The findings from this theoretical model show a promising correlation with empirical data, demonstrating the model’s efficacy in capturing the compos - ite’s mechanical response.
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大麻-粘土复合材料的机械性能表征
在本研究中,采用了微机械建模技术来研究麻/粘土复合材料的机械性能。这种复合材料由融入粘土基质的麻纤维组成,选择这种结构是出于对环境的考虑,以及麻纤维的天然优势,包括重量轻、相对于重量具有相当大的强度和刚度。所采用的方法结合了局部化和均质化方法以及三相模型,对复合材料的行为进行了深入分析。该理论模型的研究结果表明与经验数据具有良好的相关性,证明该模型能够有效捕捉复合材料的机械响应。
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