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Impacts of Low Atmospheric Pressure on Properties of Cement Concrete in Plateau Areas: A Literature Review

机译:低气压对高原地区水泥混凝土性能的影响:文献综述

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摘要

Low atmospheric pressure (LAP) can enormously affect properties of cement concrete in plateau areas. There are fewer studies and attendances on this issue than those of cement concrete in normal atmospheric pressure (AP), because of the limitations of both environmental conditions and instruments. In order to improve properties of cement concrete under LAP, influences of LAP on properties of cement concrete were reviewed in this work. The influence rules and mechanism on properties of cement concrete were summarized. The corresponding mechanism and techniques were put forward for enhancing the properties of cement concrete. The results of researchers show that LAP can significantly reduce the air entraining ability of the air entraining agent (AEA). Air content in concrete linearly decreases with the decrease of AP when other conditions are constant. If the initial air content is high, the decrease rate of air content increases with the decrease of AP. When the initial air content in cement concretes is similar, the greater the slump of cement concrete, the stronger its resistance to the decrease of air content caused by the decrease of AP. In addition, the condition of the bubble characteristics of hardened cement concrete under LAP is worse than that under normal AP. Therefore, the change of concrete properties under LAP is mainly attributed to these bubble characteristics, such as air content, bubble spacing coefficient, bubble radius and bubble specific surface area. In this work, nano-silica (negative charges) with cationic oligomeric surfactants is recommended as a new type of AEA to optimize the bubble characteristics under LAP in plateau areas.
机译:低气压(LAP)会严重影响高原地区水泥混凝土的性能。由于环境条件和仪器的限制,在此问题上的研究和关注人数少于在正常大气压(AP)下的水泥混凝土。为了改善LAP下水泥混凝土的性能,本文对LAP对水泥混凝土性能的影响进行了综述。总结了水泥混凝土性能的影响规律和机理。提出了提高水泥混凝土性能的相应机理和技术。研究人员的结果表明,LAP可以显着降低空气夹带剂(AEA)的空气夹带能力。在其他条件不变的情况下,混凝土中的空气含量随着AP的降低而线性降低。如果初始空气含量高,则空气含量的降低率会随着AP的降低而增加。当水泥混凝土中的初始空气含量相似时,水泥混凝土的坍落度越大,其抗由AP降低引起的空气含量降低的抵抗力就越大。另外,在LAP下硬化水泥混凝土的气泡特性条件比在普通AP下更差。因此,LAP下混凝土性能的变化主要归因于这些气泡特性,例如空气含量,气泡间距系数,气泡半径和气泡比表面积。在这项工作中,推荐使用带有阳离子低聚表面活性剂的纳米二氧化硅(负电荷)作为一种新型AEA,以优化高原地区LAP下的气泡特性。

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