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An apparatus for the routine measurement of thermal conductivity of materials for building application based on a transient hot-wire method

机译:一种基于瞬态热线法常规测量建筑材料热导率的装置

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An apparatus has been designed and developed for the measurement of the thermal conductivity of samples of non-metallic materials whose thermal conductivity is quite low (in the range between 0.2 and 4 W/m K) by the transient hot-wire method. It is especially conceived to ensure short time consuming and economic measurement of the thermal conductivity of mortar and lateritic bricks for building application. Thermal conductivity is measured by tracking the thermal pulse propagation induced in the sample by a heating source consisting of a Nickel alloy wire. The temperature is measured on the wire by means of two T type (Copper–Constantan) thermocouples. The heat impulse transferred to the wire between two observed times gives a temperature increment of 2–10 °C, depending on the thermal conductivity of the material tested and on the preselected level of the heating power supplied. The thermal conductivity of the materials can be obtained in a comparative way or in a semi-absolute way. In both cases a preliminary calibration of the instrument, obtained with a reference sample whose thermal conductivity previously certified by absolute methods, is in the range required. In the second case, the calibration is necessary to obtain the characteristic curves of the instrument. The paper shows the measurement obtained using materials with thermal conductivity between 0.2 and 1.5 W/m K. In good experimental conditions the accuracy of the measurements is within 5%. The proposed apparatus offers significant advantages, mostly in terms of economy and flexibility, over systems currently in use and over similar systems based on transient methods.
机译:设计和开发了一种用于通过瞬态热线法测量导热系数非常低(在0.2和4 W / m K之间的范围内)的非金属材料样品的导热系数的设备。特别考虑到确保用于建筑应用的砂浆和红土砖的导热率的短时间消耗和经济的测量。通过追踪由镍合金线组成的热源在样品中引起的热脉冲传播来测量热导率。温度是通过两个T型(铜–康斯坦)热电偶测量的。在两个观察到的时间之间传递到电线的热脉冲使温度增加2-10°C,这取决于所测试材料的热导率和所选择的加热功率水平。材料的导热率可以以比较方式或半绝对方式获得。在这两种情况下,仪器的初步校准都在参考样品中进行,该参考样品的导热率先前已通过绝对方法进行了验证,该校准范围在所需范围内。在第二种情况下,必须进行校准才能获得仪器的特性曲线。本文显示了使用导热系数在0.2和1.5 W / m K之间的材料获得的测量结果。在良好的实验条件下,测量的精度在5%以内。相对于当前使用的系统和基于瞬态方法的类似系统,所提出的设备在经济性和灵活性方面都具有明显的优势。

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