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NON-REAGENT METHODS FOR THE ACTIVATION OF CONCRETE MIX RAW COMPONENTS IN THE CONSTRUCTION INDUSTRY

机译:用于激活混凝土混合原料组分的非试剂方法

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摘要

Introduction: The paper presents an analysis of the practice of using non-reagent methods for the activation of raw components, in particular, mixing water for construction (cement, mortar, concrete) mixes. Purpose of the study: The study is aimed at the development of effective technologies to reduce the cost and improve the quality of work by activating the raw components of a concrete mix, in particular, mixing water, by non-reagent methods (physicomechanical effects) at various stages of the process of its preparation. Methods: The author conducts theoretical and experimental studies of the effect of mixing water activated by various non-reagent methods on the physico-mechanical and technological properties of concrete. Activated mixing water has a direct impact on hydration and crystallization processes, acceleration of binding agent hardening, etc. During mix preparation, a potential level of concrete quality characteristics is formed, which cannot be raised at the subsequent processing stages. The formation of concrete mix properties starts with mix preparation and continues during its transportation, laying, compaction and hardening. These operations determine concrete quality in building structures and its performance characteristics to a great extent. Results: Preparation of a construction (cement, mortar, concrete) mix is an important technological stage in concretingwhen constructing buildings and structures of cast-in-place concrete and reinforced concrete. In construction practice, various non-reagent methods are used: simple physical (mechanical mixing, heating, deaeration, ionization, etc.), ultrasonic (hydrodynamic processing, use of acoustic field, pulsed electric field processing, etc.), magnetic (constant, variable, pulsed field), and electric (constant, alternating field, high-voltage discharge, electric field of soluble electrodes,etc.). The analysis of various non-reagent methods used to activate mixing water shows that the phenomena occurring in water as a result of its treatment using some of the methods still have not been adequately explained. Nevertheless, the effectiveness of these methods is obvious, but deeper experimental and theoretical studies are needed.
机译:简介:本文提出了使用非试剂方法对原料组分激活的实践的分析,特别是混合用于施工(水泥,砂浆,混凝土)混合的混合水。该研究的目的:该研究旨在通过激活混凝土混合物的原料组分,通过非试剂方法(物理机械效应)来实现有效技术的开发,以降低成本,通过激活混凝土混合物的原料组分,提高工作质量。在其制备过程的各个阶段。方法:作者对混凝土的物理 - 机械和技术特性进行了各种非试剂方法激活的混合水的影响的理论和实验研究。活化的混合水对水化和结晶过程的直接影响,结合剂硬化的加速度等在混合制剂期间,形成了混凝土质量特性的潜在水平,在随后的加工阶段不能升高。混凝土混合性质的形成从混合制剂开始,并在运输过程中持续,铺设,压实和硬化。这些操作在很大程度上决定了建筑物结构及其性能特征的具体质量。结果:制备建筑(水泥,砂浆,混凝土)混合是混凝土的重要技术阶段在构建铸造混凝土和钢筋混凝土的建筑物和结构时。在施工实践中,使用各种非试剂方法:简单的物理(机械混合,加热,饮料,电离等),超声波(流体动力学加工,声场使用,脉冲电场处理等),磁性(恒定,可变,脉冲场)和电气(恒定,交替场,高压放电,可溶性电极的电场,等等。)。用于活化混合水的各种非试剂方法的分析表明,由于其使用一些方法的治疗而发生在水中的现象仍未得到充分的解释。然而,这些方法的有效性是显而易见的,但需要更深层次的实验和理论研究。

著录项

  • 作者

    Antonina Judina;

  • 作者单位
  • 年度 2020
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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