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利用大麻秸秆和玉米淀粉开发高强度刨花板。

Development of High Strength Particleboards from Hemp Shives and Corn Starch.

作者信息

Rimkienė Aurelija, Vėjelis Sigitas, Kremensas Arūnas, Vaitkus Saulius, Kairytė Agnė

机构信息

Building Materials Institute, Faculty of Civil Engineering, Vilnius Gediminas Technical University, Linkmenų Str. 28, LT-08217 Vilnius, Lithuania.

出版信息

Materials (Basel). 2023 Jul 14;16(14):5003. doi: 10.3390/ma16145003.

Abstract

In the current study, high-strength boards for the construction industry were developed from renewable natural resources, fibrous hemp shives, and corn starch. During the research, the influence of the composition of the mixture, the processing of raw materials, and technological parameters on the operational properties of the board were evaluated. The influence of the binding material and the water content on the properties of the molded boards was evaluated. It was established that the rational amount of starch is 15% of the mass of the shives, and the amount of water is 10%. It has been established that with the proper selection of the forming parameters of the board, it is possible to avoid internal disintegration of the structure due to the water vapor pressure, increase the bending strength, and ensure uniform sintering of the board throughout the entire volume. It was found that additional processing of hemp shives can increase bending strength by more than 40%. Furthermore, during the processing of shives by chemical means, soluble substances are washed out, which reduces the density and thermal conductivity of the shives. Selection of a rational level of compression allowed us to increase the bending strength of the boards by 40%. The assessment of all factors made it possible to obtain boards with a bending strength of 40 MPa. The additives used made it possible to reduce the water absorption of the boards up to 16 times and obtain non-flammable boards. The thermal conductivity of the resulting boards varied from 0.07 to 0.095 W/(m·K). The analysis of macrostructure and microstructure allowed us to evaluate the process of the formation of bonds between hemp shives.

摘要

在当前的研究中,用于建筑行业的高强度板材是由可再生自然资源、纤维状大麻屑和玉米淀粉制成的。在研究过程中,评估了混合物组成、原材料加工以及工艺参数对板材使用性能的影响。评估了粘结材料和含水量对成型板材性能的影响。确定淀粉的合理用量为麻屑质量的15%,水的用量为10%。已经确定,通过合理选择板材的成型参数,可以避免由于水蒸气压力导致结构内部解体,提高弯曲强度,并确保板材在整个体积内均匀烧结。发现对大麻屑进行额外加工可使弯曲强度提高40%以上。此外,在通过化学方法加工麻屑时,可溶物质被洗出,这降低了麻屑的密度和热导率。选择合理的压缩程度使我们能够将板材的弯曲强度提高40%。对所有因素的评估使得能够获得弯曲强度为40MPa的板材。所使用的添加剂使板材的吸水率降低了16倍,并获得了不燃板材。所得板材的热导率在0.07至0.095W/(m·K)之间变化。对宏观结构和微观结构进行分析使我们能够评估大麻屑之间粘结形成的过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6891/10381758/76ef558bc5a6/materials-16-05003-g001.jpg

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