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首页> 外文期刊>Journal of materials in civil engineering >Performance and microstructure of calcined dolomite and reactive magnesia-based concrete samples
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Performance and microstructure of calcined dolomite and reactive magnesia-based concrete samples

机译:煅烧白云石和活性氧化镁基混凝土样品的性能和微观结构

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This study investigates the performance and microstructural development of reactive MgO and calcined dolomite-based concrete samples subjected to carbonation curing for up to 28 days. The performance of each sample is assessed via compressive strength testing, which is linked with the hydration and carbonation mechanisms studied via isothermal calorimetry, X-ray diffraction (XRD), thermogravimetric analysis with differential scanning calorimetry (TGA/DSC), and scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM/EDX). Strength gain depends on the carbonation degree and morphology of carbonate phases such as hydromagnesite and nesquehonite, whose formation is controlled by the binder composition and initial porosity of each sample. Higher contents of MgO enable early strength gain, whereas the presence of undecomposed carbonate phases in dolomite facilitates the continuation of the hydration and carbonation reactions by providing additional nucleation sites and contributing to the formation of a dense carbonate network. Continuous strength gain is achieved by the extensive formation of a carbonate network. Simultaneous use of MgO and dolomite enables 28-day strengths as high as 57 MPa, which are up to 60% higher than that of the control samples containing only MgO or dolomite.
机译:这项研究调查了活性MgO和煅烧白云石基混凝土样品经过碳化固化长达28天的性能和微观结构发展。每个样品的性能均通过抗压强度测试进行评估,该测试与通过等温量热法,X射线衍射(XRD),差示扫描量热法(TGA / DSC)进行热重分析和扫描电子显微镜研究的水合和碳化机理有关带有能量色散X射线光谱仪(SEM / EDX)。强度的增加取决于碳酸盐相(如菱镁矿和水镁锰矿)的碳酸化程度和形态,它们的形成受粘结剂组成和每个样品的初始孔隙率控制。较高的MgO含量可提高强度,而白云石中未分解的碳酸盐相的存在通过提供其他成核位点并有助于形成致密的碳酸盐网络,促进了水化和碳酸化反应的继续。碳酸盐网络的广泛形成可实现连续的强度增长。同时使用MgO和白云石可使28天强度高达57 MPa,比仅含MgO或白云石的对照样品高出60%。

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