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大麻纤维(L.)对增强石膏基体的纤维石膏板力学性能的影响。

The Influence of Hemp Fibers ( L.) on the Mechanical Properties of Fiber-Gypsum Boards Reinforcing the Gypsum Matrix.

作者信息

Trociński Adrian, Wieruszewski Marek, Bartkowiak Monika, Dziurka Dorota, Mirski Radosław

机构信息

Department of Mechanical Wood Technology, Faculty of Forest and Wood Technology, Poznan University of Life Sciences, Wojska Polskiego 38/42, 60-627 Poznan, Poland.

Department of Wood Chemical Technology, Faculty of Forest and Wood Technology, Poznan University of Life Sciences, Wojska Polskiego 38/42, 60-627 Poznan, Poland.

出版信息

Polymers (Basel). 2024 Sep 19;16(18):2644. doi: 10.3390/polym16182644.

Abstract

The modern construction industry is looking for new ecological materials (available, cheap, recyclable) that can successfully replace materials that are not environmentally friendly. Fibers of natural origin are materials that can improve the properties of gypsum composites. This is an important issue because synthetic fibers (hardly biodegradable-glass or polypropylene fibers) are commonly used to reinforce gypsum boards. Increasing the state of knowledge regarding the possibility of replacing synthetic fibers with natural fibers is another step towards creating more environmentally friendly building materials and determining their characteristics. This paper investigates the possibility of manufacturing fiber-gypsum composites based on natural gypsum (building gypsum) and hemp ( L.) fibers grown in Poland. The effect of introducing hemp fibers of different lengths and with varying proportions of mass (mass of gypsum to mass of fibers) into the gypsum matrix was investigated. The experimental data obtained indicate that adding hemp fibers to the gypsum matrix increases the static bending strength of the composites manufactured. The highest mechanical strength, at 4.19 N/mm, was observed in fiber-gypsum composites with 4% hemp fiber content at 50 mm in length. A similar trend of increased strength was observed in longitudinal tension. Again, the composite variant with 4% fiber content within the gypsum matrix had the highest mechanical strength. Manufacturing fibers-gypsum composites with more than 4% hemp fiber content negatively affected the composites' strength. Mixing long (50 mm) hemp fibers with the gypsum matrix is technologically problematic, but tests have shown a positive effect on the mechanical properties of the refined composites. The article indicates the length and quantity limitations of hemp fibers on the basis of which fiber-gypsum composites were produced.

摘要

现代建筑业正在寻找新型生态材料(易得、廉价、可回收),以成功替代不环保的材料。天然来源的纤维是能够改善石膏复合材料性能的材料。这是一个重要问题,因为合成纤维(几乎不可生物降解的玻璃纤维或聚丙烯纤维)通常用于增强石膏板。增加关于用天然纤维替代合成纤维可能性的知识水平,是朝着制造更环保建筑材料并确定其特性迈出的又一步。本文研究了基于波兰种植的天然石膏(建筑石膏)和大麻纤维制造纤维石膏复合材料的可能性。研究了将不同长度和不同质量比例(石膏质量与纤维质量之比)的大麻纤维引入石膏基体的效果。获得的实验数据表明,向石膏基体中添加大麻纤维可提高所制造复合材料的静态抗弯强度。在长度为50毫米、大麻纤维含量为4%的纤维石膏复合材料中,观察到最高机械强度为4.19牛/平方毫米。在纵向拉伸中也观察到类似的强度增加趋势。同样,石膏基体内纤维含量为4%的复合材料变体具有最高机械强度。制造大麻纤维含量超过4%的纤维石膏复合材料会对复合材料强度产生负面影响。将长(50毫米)大麻纤维与石膏基体混合在技术上存在问题,但测试表明对精制复合材料的机械性能有积极影响。本文指出了生产纤维石膏复合材料所依据的大麻纤维的长度和数量限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56d5/11435865/6d8385b4fb80/polymers-16-02644-g001.jpg

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