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从自然到建筑的可持续复合材料:基于生物基环氧树脂的大麻和亚麻籽增强生物复合材料

Sustainable Composites from Nature to Construction: Hemp and Linseed Reinforced Biocomposites Based on Bio-Based Epoxy Resins.

作者信息

Vidal Julio, Ponce David, Mija Alice, Rymarczyk Monika, Castell Pere

机构信息

Aitiip Centro Tecnológico, Research and Development Department, 50720 Zaragoza, Spain.

Institute of Chemistry of Nice, University Côte d'Azur, UMR CNRS 7272, CEDEX 02, 06108 Nice, France.

出版信息

Materials (Basel). 2023 Feb 2;16(3):1283. doi: 10.3390/ma16031283.

Abstract

The present manuscript describes the use of natural fibers as natural and sustainable reinforcement agents for advanced bio-based composite materials for strategic sectors, for example, the construction sector. The characterization carried out shows the potential of both natural hemp and linseed fibers, as well as their composites, which can be used as insulation materials because their thermal conductivity properties can be compared with those observed in typical construction materials such as pine wood. Nevertheless, linseed composites show better mechanical performance and hemp has higher fire resistance. It has been demonstrated that these natural fibers share similar properties; on the other hand, each of them should be used for a specific purpose. The work also evaluates the use of bio matrixes in composites, demonstrating their feasibility and how they impact the final material's properties. The proposed bio-resin enhances fire resistance and decreases the water absorption capacity of the natural fibers, enabling the use of composites as a final product in the construction sector. Therefore, it has been demonstrated that it is possible to manufacture a biocomposite with non-woven natural fibers. In fact, for properties such as thermal conductivity, it is capable of competing with current materials. Proving that biomaterials are a suitable solution for developing sustainable products, fulfilling the requirements of the end-user applications, as it has been demonstrated in this research with the non-woven fibers for the non-structural components.

摘要

本手稿描述了天然纤维作为天然且可持续的增强剂在战略领域先进生物基复合材料中的应用,例如建筑领域。所进行的表征显示了天然大麻纤维和亚麻纤维及其复合材料的潜力,它们可用作绝缘材料,因为其热导率性能可与典型建筑材料(如松木)相媲美。然而,亚麻复合材料表现出更好的机械性能,而大麻具有更高的耐火性。已证明这些天然纤维具有相似的特性;另一方面,它们各自应用于特定目的。该研究还评估了生物基体在复合材料中的应用,证明了其可行性以及它们如何影响最终材料的性能。所提出的生物树脂提高了耐火性并降低了天然纤维的吸水能力,使得复合材料能够作为建筑领域的最终产品使用。因此,已证明可以制造出具有非织造天然纤维的生物复合材料。事实上,在热导率等性能方面,它能够与现有材料竞争。证明了生物材料是开发可持续产品的合适解决方案,满足终端用户应用的要求,正如本研究中使用非织造纤维用于非结构部件所证明的那样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c717/9920535/6009b471eb65/materials-16-01283-g001.jpg

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