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不同废弃陶瓷填料对混凝土抗冻融循环性能的影响

Influence of Varied Waste Ceramic Fillers on the Resistance of Concrete to Freeze-Thaw Cycles.

作者信息

Katzer Jacek, Halbiniak Jacek, Langier Bogdan, Major Maciej, Major Izabela

机构信息

Faculty of Geoengineering, University of Warmia and Mazury in Olsztyn, Heweliusza 4, 10-720 Olsztyn, Poland.

Faculty of Civil Engineering, Czestochowa University of Technology, Dabrowskiego 69, 42-201 Czestochowa, Poland.

出版信息

Materials (Basel). 2021 Jan 29;14(3):624. doi: 10.3390/ma14030624.

Abstract

Our research focused on the influence of fillers obtained from crushed waste materials on the selected properties of concrete composites. The used waste materials were sourced from the production of ceramic tiles, ceramic pots, and sanitary ceramics. We evaluated concretes modified with the addition of 10% (by mass of cement) of different fillers. The properties, including the air content in the fresh concrete mix, consistency, compressive strength, and freeze-thaw resistance were examined. The evaluation of the freeze-thaw resistance was carried out by testing the concrete with the direct method for 150 cycles of freezing and thawing. The characteristics of the concrete porosity structure were assessed using automated digital image analysis. Concretes modified by coarse and fine fillers were characterized by different improvements in the mechanical properties and resistance to cycles of freezing and thawing. Composites with the addition of coarse fillers did not show any significant changes in comparison to the control concrete. An automated digital image analysis of the pore distribution in concrete proved to be an effective tool for the assessment of the freeze-thaw resistance of the concretes in question.

摘要

我们的研究聚焦于由破碎废料获得的填料对混凝土复合材料选定性能的影响。所用废料来源于瓷砖、陶瓷盆和卫生陶瓷的生产。我们评估了添加10%(按水泥质量计)不同填料改性的混凝土。检测了包括新拌混凝土混合物中的含气量、稠度、抗压强度和抗冻融性等性能。通过直接法对混凝土进行150次冻融循环试验来评估抗冻融性。使用自动数字图像分析评估混凝土孔隙结构的特征。由粗、细填料改性的混凝土在力学性能和抗冻融循环方面有不同程度的改善。与对照混凝土相比,添加粗填料的复合材料未显示出任何显著变化。事实证明,对混凝土孔隙分布进行自动数字图像分析是评估相关混凝土抗冻融性的有效工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d5d/7866370/a4bad9e9f496/materials-14-00624-g001.jpg

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