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Assessment of Mechanical and Thermal Properties of Hemp-Lime Mortar

机译:评估大麻 - 石灰砂浆的机械和热性能

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摘要

The use of renewable and natural materials characterized by the low environmental impact is nowadays a key issue for the sustainable development of the construction industry. For this reason, the interest for natural fibers, to be used as reinforcement in composites as an alternative to other fibers, is continuously growing. In this paper, the use of hemp for reinforcing lime mortar used as plaster is considered with a multidisciplinary approach, taking into consideration the structural and thermal performance. Natural fibers have several advantages compared to industrial ones, such as low cost, low environmental impact, biodegradability, renewable nature. Moreover, these can show remarkable mechanical performance in relation to specific weight, and sometimes, as in the case of hemp fibers, these can improve the thermal insulation capacity of the plaster. However, the experimental results on the mechanical features are still lacking, especially to assess their durability, and the variability of thermal parameters with the mechanical characteristics. Therefore, this paper proposes an experimental program, developed at Laboratory of Materials and Structures (LAMAS) of the University of Sannio (Italy), aimed at investigating the main mechanical properties (compression strength, flexural strength) of lime mortar reinforced by hemp fibers and subjected to various environmental exposures and aging processes. The characterization is completed with the measurement for the produced samples of the thermal conductivity by means of the standardized guarded hot plate technique.
机译:现在,使用具有低环境影响的可再生和天然材料是建筑业可持续发展的关键问题。因此,天然纤维的利息,用作复合材料中的增强作为其他纤维的替代品,是不断增长的。在本文中,考虑到结构和热性能,考虑了用作用作石膏用作膏药的加强石灰砂浆的大麻。与工业纤维相比,天然纤维具有几个优点,例如低成本,低环境影响,生物降解性,可再生性。此外,这些可以表现出与特定重量有关的显着的机械性能,有时,如大麻纤维的情况下,这些可以提高石膏的绝热容量。然而,对机械特征的实验结果仍然缺乏,特别是评估其耐用性,以及具有机械特性的热参数的可变性。因此,本文提出了一个实验计划,在Sannio大学的材料和结构实验室(意大利)的实验室开发,旨在调查大麻纤维增强的石灰砂浆的主要机械性能(压缩强度,弯曲强度)。受到各种环境暴露和老化过程。通过标准化的防护热板技术,通过测量结果,通过测量的导热率的产生样品完成。

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