PHYSICO-MECHANICAL PROPERTIES INVESTIGATION OF HEMPCRETE

L. Adam, D. Isopescu
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Abstract

Food, energy and construction are the three main domains in which different uses of industrial hemp confirm the role and importance that agriculture has in human life. In the current context with an increased need for energy efficiency and environmental protection, the attention of scientists is directed towards the identification of ecological construction materials, and a sustainable way of life, where the circular economy must become part of people’s living habits. The objective of the research was to analyze the thermo-mechanical properties of hempcrete. The goal is to determine a point of reference for future studies that will aim to adapt the agreed compositions to the particularities of the raw material obtained locally. Measurements were determined through laboratory tests, performed on specimens obtained using, for the base material, the woody part of industrial hemp, and for the binder, a mixture consisting of hydrated lime and Portland cement. The results place the construction materials made from hemp vegetable waste in the group of heat-insulating products characterized by low specific weight and thermal transfer coefficients, according with conventional insulating materials, with values between those of polyurethane foam and autoclaved cellular concrete.
麻混凝土物理力学性能研究
食品、能源和建筑是三个主要领域,工业大麻的不同用途证实了农业在人类生活中的作用和重要性。在当前能源效率和环境保护需求增加的背景下,科学家的注意力转向了生态建筑材料的识别,以及可持续的生活方式,循环经济必须成为人们生活习惯的一部分。研究的目的是分析大麻混凝土的热力学性能。目标是为未来的研究确定一个参考点,以使商定的成分适应当地获得的原材料的特殊性。测量是通过实验室测试来确定的,这些测试是用工业大麻的木质部分作为基础材料,用水合石灰和波特兰水泥组成的混合物作为粘结剂。研究结果表明,利用大麻植物废料制备的建筑材料与常规保温材料相比,具有较低的比重和传热系数,介于聚氨酯泡沫塑料和蒸压泡沫混凝土之间。
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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