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A Review on Bubble Stability in Fresh Concrete: Mechanisms and Main Factors

机译:新拌混凝土中气泡稳定性的研究:机理和主要因素

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摘要

In order to improve the stability of air bubbles in fresh concrete, it is of great significance to have a better understanding of the mechanisms and main influencing factors of bubble stability. In the present review, the formation and collapse process of air bubbles in fresh concrete are essentially detailed; and the advances of major influencing factors of bubble stability are summarized. The results show that the surface tension of air–liquid interface exerts a huge impact on bubble stability by reducing surface free energy and Plateau drainage, as well as increasing the Gibbs surface elasticity. However, surface tension may not be the only determinant of bubble stability. Both the strength of bubble film and the diffusion rate of air through the membrane may also dominate bubble stability. The application of nano-silica is a current trend and plays a key role in ameliorating bubble stability. The foam stability could be increased by 6 times when the mass fraction of nano-particle reached 1.5%.
机译:为了提高新鲜混凝土中气泡的稳定性,更好地了解气泡稳定性的机理和主要影响因素具有重要意义。在本篇综述中,基本上详细介绍了新鲜混凝土中气泡的形成和破裂过程。总结了气泡稳定性主要影响因素的研究进展。结果表明,气液界面的表面张力通过减少表面自由能和高原排水,以及增加吉布斯表面弹性,对气泡稳定性产生巨大影响。但是,表面张力可能不是气泡稳定性的唯一决定因素。气泡膜的强度和空气通过膜的扩散速率都可能决定气泡的稳定性。纳米二氧化硅的应用是当前的趋势,并且在改善气泡稳定性中起关键作用。当纳米颗粒的质量分数达到1.5%时,泡沫稳定性可以增加6倍。

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