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Secondary ettringite formation in concrete subjected to different curing conditions

机译:不同养护条件下混凝土的二次钙矾石形成

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The large amount of ettringite detected in concrete affected by different failure mechanisms (alkali - silica reaction (ASR), freezing and thawing (FT), and wetting and drying (WD)) in sulfate - free environments has been a matter of concern for many researchers over the past years. Two major lines to approach this issue have been defined. One of them considers ettringite as the main cause of damage and the other assumes that it appears after concrete distress. In order to contribute to the clarification of this phenomenon, research was conducted to cover the above issues. This paper reports on the conclusions arrived at up to date, from studies conducted on concrete affected by different damaging mechanisms: FT, WD, and precracking induced by loading and ASR. Changes in length and mechanical strength of test concrete are reported, as well as the evaluations made by optical microscopy (OM), scanning electron microscopy (SEM) and energy dispersive X - ray analysis (EDAX). Secondary ettringite formation (SEF) is closely linked to pore fluid transport in the mass of concrete. Although it was not possible to define clearly its participation in the damaging processes related to ASR or to FT, secondary ettringite crystallization in concretes subjected to WD cycles seems to be one of the most likely mechanisms to account for the volumetric instability observed in these concretes.
机译:在无硫酸盐环境中,受不同破坏机理(碱-二氧化硅反应(ASR),冻融(FT),湿润和干燥(WD))影响的混凝土中发现大量钙矾石,这是许多人关注的问题过去几年的研究人员。已经定义了解决此问题的两条主要路线。他们中的一个认为钙矾石是造成损坏的主要原因,另一个认为钙矾石是在混凝土遇险后出现的。为了有助于澄清这种现象,进行了研究以解决上述问题。本文报告了迄今为止得出的结论,这些结论来自对受不同破坏机制(FT,WD和受荷载和ASR诱导的预裂)影响的混凝土进行的研究。报告了测试混凝土的长度和机械强度的变化,以及通过光学显微镜(OM),扫描电子显微镜(SEM)和能量色散X射线分析(EDAX)进行的评估。次生钙矾石的形成(SEF)与混凝土中孔隙流体的输送密切相关。尽管无法清楚地确定其参与与ASR或FT相关的破坏过程的过程,但经历WD循环的混凝土中的二次钙矾石结晶似乎是解释这些混凝土中所观察到的体积不稳定性的最可能机制之一。

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