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首页> 外文期刊>Journal of advanced concrete technology >Thermoporometry and Proton NMR Measurement on Cement Paste Equilibrated at Different Relative Humidities
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Thermoporometry and Proton NMR Measurement on Cement Paste Equilibrated at Different Relative Humidities

机译:在不同相对湿度下平衡水泥浆料的热孔测量和质子NMR测量

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In this study, thermoporometry by differential scanning calorimetry and proton NMR measurements of hardened cement paste equilibrated under different humidity conditions were carried out, and the results of both measurements were compared. The results reveal that thermoporometry by low temperature DSC measurement cannot detect the water present in samples equilibrated at low relative humidity. On the other hand, it is possible to detect a signal at low relative humidity by proton NMR measurement. It is clarified that water strongly bound to the surface, which cannot be detected by low temperature DSC, exists at a relative humidity of 33% or less. If it is relevant to detect tightly held water, such as water present in the fine gel pores, it is recommended to apply proton NMR measurements. This paper is an extended English version of the authors’ previous work [Kurumisawa, K. and Jensen, O. M., (2020). “Measurement of cement paste at different humidities by thermoporometry and proton NMR.” Proceedings of the Japan Concrete Institute , 42, 347-352. (in Japanese)].
机译:在本研究中,通过差示扫描量热法和质子NMR测量在不同湿度条件下平衡的差示扫描量热法和质子NMR测量,并进行了两种测量的结果。结果表明,通过低温DSC测量的热孔测量法不能检测在低相对湿度下平衡的样品中存在的水。另一方面,通过质子NMR测量可以检测低相对湿度的信号。阐明了对低温DSC不能检测到的表面强烈束缚的水存在于33%或更低的相对湿度下存在。如果它与检测紧密的水有关,如诸如细凝胶孔中存在的水,则建议施加质子NMR测量。本文是作者上一项工作的扩展英语版本[Kurumisawa,K.和Jensen,O. M.,(2020)。 “通过热压孔和质子NMR在不同湿度下测量水泥浆料。” 日本混凝土研究所的程序,42,347-352。 (在日语中)]。

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