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Experimental Study of the Resistance to Influence of Aggressive Liquids on Lightweight Concrete

机译:轻质混凝土侵蚀液体对侵蚀性液体影响的实验研究

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摘要

In light of the scientific research, the corrosion of concrete structures is one of the main problems that may reduce their durability due to the negative impact of the natural environment. The paper analyzes the influence of the type of component on the selected properties of lightweight concrete subjected to the influence of aggressive liquids. Four concrete mixes were prepared with a granular aggregate made of foamed glass (GEGA) and aggregate made of sintered fly ash (GAA) with the use of a mineral additive: silica fly ash. The prepared lightweight concrete after one year was exposed for 60 days to the following environments: strong acid—HCl, 1% and 2% concentration, weak acid—CH3COOH, 1% and 2% concentration, and an aqueous salt solution of Na2SO4, 1% and 2% concentration. Then, the compressive strength was tested, and the microstructure analysis of the ready-made lightweight concrete (LWC) was performed. The degree of penetration of aggressive solutions into the cracks of the samples was assessed by means of applying 1% phenolphthalein solution. Changes in the weight of lightweight concrete samples after the test period were estimated. The obtained test results indicate that the decrease in the durability of lightweight concrete can be classified as a long-term process. Concrete with GEGA and GAA showed high resistance to aggressive environments. Moreover, the environment containing chlorides turned out to be the most aggressive, while the environment containing sulfates proved to be the least aggressive. The higher the concentration of the destructive factor was, the faster the corrosion process went. This has been proven by measuring the pH using phenolphthalein and carrying out microscopic examination. Concretes containing aggregates made of foamed glass and sintered fly ash are suitable for use both in traditional construction and in facilities exposed to an aggressive environment (e.g., in the chemical industry and at gas stations).
机译:在科研轻,混凝土结构的腐蚀是可能的耐用性降低,由于自然环境的负面影响的主要问题之一。分析了部件的上经受腐蚀性液体的影响的轻质混凝土的选择的特性的类型的影响。用由泡沫玻璃(GEGA)的粒子状骨料制备四种混凝土混合料和骨料制成烧结飞灰(GAA)与使用矿物添加剂的组成:二氧化硅飞灰。一年后制得的轻质混凝土暴露60天以下的环境中:强酸盐酸,1%和2%的浓度,弱酸-CH3COOH,1%和2%的浓度,和Na2SO4的盐的水溶液,1 %和2%的浓度。然后,压缩强度进行了测试,并进行现成轻质混凝土(LWC)的微观结构分析。侵蚀性溶液到样品的裂缝渗透的程度通过施加1%酚酞溶液的手段评估。估计在测试期后轻质混凝土样品的重量变化。所得到的试验结果表明,在轻质混凝土的耐久性的降低可以被归类为一个长期的过程。混凝土GEGA和GAA显示在苛刻环境下的高电阻。此外,包含环境氯化物被证明是最积极的,而含硫酸盐的环境被证明是强力最低。破坏性因素的高浓度,更快的腐蚀过程去。这已经通过使用酚酞测量pH并进行显微镜检查证实。含有由泡沫玻璃和烧结的飞灰的聚集体混凝土是适合于在传统的构造和在暴露于侵蚀性环境的设施(例如,在化学工业中,在加油站)使用。

著录项

  • 期刊名称 Materials
  • 作者单位
  • 年(卷),期 2021(14),15
  • 年度 2021
  • 页码 4185
  • 总页数 19
  • 原文格式 PDF
  • 正文语种
  • 中图分类 外科学;
  • 关键词

    机译:轻质混凝土;积极的液体;粉煤灰;抗压强度;吸收;粒状灰聚集体;

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