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The effect of delayed ettringite formation on fine grained aerated concrete mechanical properties

机译:钙矾石延迟形成对细粒加气混凝土力学性能的影响

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Delayed ettringite formation (DEF) is a chemical reaction with proven damaging effects on the mechanical properties of hydrated cementitious composite (concrete). Ettringite crystals can cause cracks and the widening of cracks due to pressure on the crack walls caused by the positive volume difference in the reaction. In this paper, we investigated the potential to utilise the positive volume difference in DEF in order to improve the mechanical properties of hydrated fine grained aerated concrete. Fine dispersed crystallisation nuclei, achieved by adding air-entraining agent (AEA) and by short vibration of specimens, are presented as the main requirement for such improvements. Control tests of expansion and mechanical properties were performed on samples of concrete with and without AEA by inducing DEF. The microstructure of fine grained aerated concrete was examined with an optical microscope and scanning electron microscope. We found that the controlled DEF, which is guaranteed by adding AEA and with the formation of uniformly dispersed air bubbles, which are crystallisation sites for ettringite crystals, improves the mechanical properties. The specimens with induced DEF were measured and found to have a 6.8% increase of compressive strength.
机译:延迟钙矾石形成(DEF)是一种化学反应,对水合胶结复合材料(混凝土)的机械性能具有公认的破坏作用。由于反应中正体积差引起的裂纹壁上的压力,钙矾石晶体会引起裂纹和裂纹扩展。在本文中,我们研究了利用DEF中的正体积差来改善水合细粒加气混凝土的机械性能的潜力。通过添加引气剂(AEA)和样品短时振动获得的精细分散的晶核是改进的主要要求。通过诱导DEF,在有和没有AEA的混凝土样品上进行了膨胀和力学性能的对照测试。用光学显微镜和扫描电子显微镜检查细粒加气混凝土的微观结构。我们发现,通过添加AEA并形成均匀分散的气泡(钙矾石晶体的结晶位置)可确保受控的DEF改善了机械性能。测量具有诱导DEF的样品,发现其抗压强度增加了6.8%。

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