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基于菌丝体的复合梯度材料:评估时间和基质混合物对力学性能的影响。

Mycelium-Based Composite Graded Materials: Assessing the Effects of Time and Substrate Mixture on Mechanical Properties.

作者信息

Ghazvinian Ali, Gürsoy Benay

机构信息

Department of Architecture, Penn State University, University Park, PA 16802, USA.

出版信息

Biomimetics (Basel). 2022 Apr 19;7(2):48. doi: 10.3390/biomimetics7020048.

Abstract

Mycelium-based composites (MBC) are biodegradable, lightweight, and regenerative materials. Mycelium is the vegetative root of fungi through which they decompose organic matter. The proper treatment of the decomposition process results in MBC. MBC have been used in different industries to substitute common materials to address several challenges such as limited resources and large landfill waste after the lifecycle. One of the industries which started using this material is the architecture, engineering, and construction (AEC) industry. Therefore, scholars have made several efforts to introduce this material to the building industry. The cultivation process of MBC includes multiple parameters that affect the material properties of the outcome. In this paper, as a part of a larger research on defining a framework to use MBC as a structural material in the building industry, we defined different grades of MBC to address various functions. Furthermore, we tested the role of substrate mixture and the cultivation time on the mechanical behavior of the material. Our tests show a direct relationship between the density of the substrate and the mechanical strength. At the same time, there is a reverse relation between the cultivation time and the material mechanical performance.

摘要

基于菌丝体的复合材料(MBC)是可生物降解、轻质且可再生的材料。菌丝体是真菌的营养根,真菌通过它来分解有机物。对分解过程进行适当处理可得到MBC。MBC已在不同行业中用于替代普通材料,以应对诸如资源有限和生命周期后大量垃圾填埋等挑战。开始使用这种材料的行业之一是建筑、工程和施工(AEC)行业。因此,学者们已做出多项努力将这种材料引入建筑行业。MBC的 cultivation 过程包括多个影响最终材料性能的参数。在本文中,作为关于定义一个将MBC用作建筑行业结构材料的框架的更大研究的一部分,我们定义了不同等级的MBC以满足各种功能。此外,我们测试了底物混合物和 cultivation 时间对材料力学行为的作用。我们的测试表明底物密度与机械强度之间存在直接关系。同时,cultivation 时间与材料机械性能之间存在反向关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbee/9149872/7a9fb8b0beb9/biomimetics-07-00048-g001.jpg

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