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模糊逻辑工具在废弃建筑坝地质聚合物应力-应变过程表征中的应用:一种新的循环开采

Fuzzy Logic Tools Application to the Characterization of Stress-Strain Processes in Waste Construction Dam Geopolymers: A New Circular Mining.

作者信息

Terrones-Saeta Juan María, Fortes Juan Carlos, Luís Ana Teresa, Aroba Javier, Díaz-Curiel Jesús, Romero Emilio, Grande Jose Antonio

机构信息

Department of Mining, Mechanical, Energetic and Civil Engineering, University of Huelva, 21819 Huelva, Spain.

Department of Information Technologies, Higher Technical School of Engineering, University of Huelva, 21007 Huelva, Spain.

出版信息

Materials (Basel). 2022 Dec 9;15(24):8793. doi: 10.3390/ma15248793.

Abstract

The ceramics industry dedicated to the manufacture of building materials is a very significant cause of environmental pollution, and various research projects are being carried out to reduce the associated environmental impact. One of the most important research lines is the generation and development of new materials, from waste, through more sustainable production processes. All of this is framed in circular mining. In this research study, geopolymers were developed with biomass bottom ashes and brick dust in order to replace the traditional ceramics used to construct bricks. For this, different families of test tubes were formed with different percentages of both residues, and their physical and mechanical properties were studied. In this way, the properties of geopolymers could be compared with traditional ceramics. In addition, in order to determine the cause-effect relationships between physical properties and compressive strength, data were processed using fuzzy logic and data mining techniques. The results showed the feasibility of geopolymers generation with biomass bottom ashes and brick dust with acceptable properties to replace conventional ceramics. In addition, the fuzzy logic analysis allowed for establishing clear and objective relationships between the physical properties and the compressive strength of the geopolymers, with the aim of developing the highest quality geopolymer.

摘要

致力于建筑材料制造的陶瓷行业是环境污染的一个重要源头,目前正在开展各种研究项目以减少相关的环境影响。最重要的研究方向之一是通过更可持续的生产工艺,利用废弃物开发新型材料。所有这些都属于循环采矿的范畴。在这项研究中,利用生物质底灰和砖粉开发了地质聚合物,以替代用于制造砖块的传统陶瓷。为此,用不同比例的两种残渣制成了不同组的试管,并对其物理和力学性能进行了研究。通过这种方式,可以将地质聚合物的性能与传统陶瓷进行比较。此外,为了确定物理性能与抗压强度之间的因果关系,使用模糊逻辑和数据挖掘技术对数据进行了处理。结果表明,利用生物质底灰和砖粉生成具有可接受性能的地质聚合物以替代传统陶瓷是可行的。此外,模糊逻辑分析有助于在地质聚合物的物理性能和抗压强度之间建立清晰、客观的关系,旨在开发出质量最高的地质聚合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a77/9782346/276ff7b5564c/materials-15-08793-g001.jpg

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