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Hemp-Straw Composites: Gluing Study and Multi-Physical Characterizations

机译:大麻秸秆复合材料:胶合研究和多物理场表征

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摘要

In order to meet the requirement of sustainable development, building materials are increasingly environmentally friendly. They can be partially or fully bio-based or recycled. This paper looks at the development of fully bio-based composites where agro-resources are valued as bio-based aggregates (hemp) and as binding materials (wheat). In a previous work, a feasibility study simultaneously investigated the processing and ratio of wheat straw required to ensure a gluing effect. In this paper, three kinds of hemp-straw composites are selected and compared with a hemp-polysaccharides composite. The gluing effect is analyzed chemically and via SEM. The developed composites were characterized multi-physically. They showed sufficiently high mechanical properties to be used as insulating materials. Furthermore, they showed good thermal performances with a low thermal conductivity (67.9–69.0 mW/(m·K) at 23 °C, dry).
机译:为了满足可持续发展的要求,建筑材料越来越环保。它们可以部分或全部基于生物或回收利用。本文着眼于完全生物基复合材料的发展,其中农业资源被视为生物基骨料(大麻)和粘合材料(小麦)。在先前的工作中,一项可行性研究同时研究了确保胶合效果所需的小麦秸秆的加工方法和比例。本文选择了三种大麻秸秆复合材料,并与大麻多糖复合材料进行了比较。通过SEM和SEM对粘合效果进行化学分析。所开发的复合材料具有多种物理特性。它们表现出足够高的机械性能,可用作绝缘材料。此外,它们显示出良好的热性能,导热系数较低(67.9–69.0 mW /(m <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm1” overflow = “ scroll”> · K),位于23 ° C,干燥)。

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