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Low-Cost Sensors for Determining the Variation in Interior Moisture Content in Gypsum Composite Materials

机译:用于确定石膏复合材料中内部水分含量的变化的低成本传感器

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摘要

Non-destructive testing can be used to determine some of the most relevant physical properties of building materials. In this work, two low-cost measuring devices were developed capable of determining the variation in real-time of the percentage of humidity that is produced in the construction of gypsum and plaster during the hardening process. For this, an Arduino resistive sensor and a capacitive sensor of our design were used. The results show how it is possible to determine the variations in mixing water content during the seven days of curing established by the UNE-EN 13279-2 standard as well relate to the mechanical resistance of the test specimens with the same percentage of humidity. Additionally, the study was completed with the determination of the formation of the dihydrate compound linked to this setting process in the test specimens by conducting X-ray diffraction and thermogravimetric analysis tests at different ages of the samples.
机译:无损检测可用于确定建筑材料的一些最相关的物理性质。在这项工作中,开发了两种低成本测量装置,能够确定在硬化过程中施工中产生的湿度百分比的实时变化。为此,使用arduino电阻传感器和我们设计的电容传感器。结果表明,如何确定由UNE-EN 13279-2标准建立的七天内含水量混合含水量的变化,同样涉及具有相同百分比湿度百分比的试样的机械电阻。另外,通过在样品不同年龄的不同年龄的不同年龄的X射线衍射和热重分析试验中,在试样中形成与该设定过程连接的二水合物化合物的形成完成了该研究。

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