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Application of non-destructive integrated CT-XRD method to investigate alteration of cementitious materials subjected to high temperature and pure water

机译:无损CT-XRD综合方法在高温高纯水条件下胶凝材料变化研究中的应用

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In order to analyze the alteration mechanism after the exposure to various maximum temperatures and immersion in pure water, non-destructive integrated CT-XRD method (the CT-XRD) was applied. Firstly, the verification of the CT-XRD was carried out to compare with conventional powder X-ray diffraction. It revealed that the CT-XRD could evaluate the crystals properly with a given limitation for low energy band. Besides, the CT-XRD indicated the advantage that can detect the presence of crystals which cannot be detected after grinding in preparing the powder sample for the conventional powder XRD. Then, the carbonated cement paste that was heated at 200, 400, 600, and 800 degrees C followed by immersion in pure water was evaluated by the CT-XRD. The results suggest that sample heated at 400 degrees C showed the resistance of leaching at most. In addition, rehydration of clinker minerals generated due to heating at 800 degrees C could be identified although the hydration product was easily dissolved into water. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了分析暴露于各种最高温度并浸入纯水中后的变化机理,采用了无损集成CT-XRD方法(CT-XRD)。首先,对CT-XRD进行了验证,以与常规粉末X射线衍射进行比较。结果表明,在给定的低能带限制下,CT-XRD可以正确评估晶体。此外,CT-XRD显示出的优点是,在制备用于常规粉末XRD的粉末样品中,可以检测出研磨后无法检测到的晶体的存在。然后,通过CT-XRD评估在200、400、600和800℃下加热然后浸入纯水中的碳酸水泥浆。结果表明,加热至400℃的样品最多显示出浸出的阻力。另外,尽管水合产物易于溶解在水中,但是可以确定由于在800摄氏度加热而产生的熟料矿物的再水化。 (C)2019 Elsevier Ltd.保留所有权利。

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