Petr Hotěk, L. Fiala, W. Lin, Yi-Hua Chang, R. Černý
{"title":"Alkali-Activated Metashale Mortar with Waste Cementitious Aggregate: Material Characterization","authors":"Petr Hotěk, L. Fiala, W. Lin, Yi-Hua Chang, R. Černý","doi":"10.3390/materproc2023013041","DOIUrl":null,"url":null,"abstract":": The design of sustainable construction materials is continuously gaining increasing importance in civil engineering. Geopolymers are attractive alternatives to cementitious materials in terms of environmental impact and specific material properties, such as durability, an initial increase in mechanical properties, or chemical and thermal resistance. Such favorable properties can be advantageously utilized within various applications involving the design of materials for heavily stressed industrial floors. The research presented in the paper was focused on the design of a geopolymer composite based on metashale MEFISTO L05 and waste metashale RON D460HR binders. The 1:4 raw/waste mix of binders activated by potassium hydroxide/silicate was supplemented by 0.11 wt.% of graphite fibers to optimize electrical properties and bestow on it some new material functions, such as self-heating. The further utilization of fine waste aggregate (crushed defective concrete products, waste concrete from auto-mixers) resulted in an ~85% utilization of input waste materials. An acceptable mechanical performance of the mortar for particular civil engineering applications was observed (28d: R f ~ 2.5 MPa, R c ~ 15 MPa), as well as favorable thermal and DC/AC electrical properties, predicting the self-heating potential.","PeriodicalId":298795,"journal":{"name":"10th MATBUD’2023 Scientific-Technical Conference","volume":"18 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-03-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"10th MATBUD’2023 Scientific-Technical Conference","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3390/materproc2023013041","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
: The design of sustainable construction materials is continuously gaining increasing importance in civil engineering. Geopolymers are attractive alternatives to cementitious materials in terms of environmental impact and specific material properties, such as durability, an initial increase in mechanical properties, or chemical and thermal resistance. Such favorable properties can be advantageously utilized within various applications involving the design of materials for heavily stressed industrial floors. The research presented in the paper was focused on the design of a geopolymer composite based on metashale MEFISTO L05 and waste metashale RON D460HR binders. The 1:4 raw/waste mix of binders activated by potassium hydroxide/silicate was supplemented by 0.11 wt.% of graphite fibers to optimize electrical properties and bestow on it some new material functions, such as self-heating. The further utilization of fine waste aggregate (crushed defective concrete products, waste concrete from auto-mixers) resulted in an ~85% utilization of input waste materials. An acceptable mechanical performance of the mortar for particular civil engineering applications was observed (28d: R f ~ 2.5 MPa, R c ~ 15 MPa), as well as favorable thermal and DC/AC electrical properties, predicting the self-heating potential.
可持续建筑材料的设计在土木工程中越来越重要。地聚合物在环境影响和特定材料性能方面是胶凝材料的有吸引力的替代品,例如耐久性,机械性能的初始增加,或化学和耐热性。这种有利的特性可以在涉及重应力工业地坪材料设计的各种应用中得到有利的利用。本文主要研究了以MEFISTO L05和废MEFISTO RON D460HR为粘结剂的地聚合物复合材料的设计。在以氢氧化钾/硅酸盐为活化剂的1:4料废混合料中添加0.11 wt.%的石墨纤维,使其电性能得到优化,并赋予其自加热等新材料功能。进一步利用细骨料(破碎的缺陷混凝土制品、自动搅拌机的废混凝土),使投入废料的利用率达到85%。在特定的土木工程应用中,观察到砂浆的可接受的机械性能(28d: R f ~ 2.5 MPa, R c ~ 15 MPa),以及良好的热学和直流/交流电学性能,预测了自热潜力。