Design of a Thermal Conductivity Measurement Technique for Clay Furnace Materials Using an Arduino-Based Thermocouple Sensor¬

Elfiana Elfiana, Salmawaty Tansa, Dewa Gede Eka Setiawan
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Abstract

This study aims to design a thermal conductivity measurement system for solid clay furnace materials, measure the thermal conductivity value of a clay furnace using an Arduino-based Thermocouple sensor, and determine the relationship of the thermal conductivity value to variations in clay furnace samples using an Arduino-based thermocouple sensor. The method used in research, design, manufacture and testing of tools. Data collection in this study was to measure the thermal conductivity of 4 samples of clay furnaces based on differences in husks using an Arduino-based Thermocouple sensor. Analysis of research data was carried out using descriptive statistics and inferential statistics, assisted by Microsoft Excel and SPSS programs. In data analysis, univariate, bivariate analysis was performed. The relationship between the value of thermal conductivity to the husk material in each sample has a positive relationship between time and temperature variables, in other words, the more time the temperature increases, the faster the temperature increases. From the results of the study, it can be concluded that the best thermal conductivity is in sample one with a value of 1.5375 J/ (K.m) and the poorest is in sample four with the lowest conductivity value of 0.3125 J/ (K.m).
基于arduino热电偶传感器的粘土炉材料导热系数测量技术设计
本研究旨在设计一个固体粘土炉材料导热系数测量系统,使用基于arduino的热电偶传感器测量粘土炉的导热系数值,并使用基于arduino的热电偶传感器确定导热系数值与粘土炉样品变化的关系。用于工具研究、设计、制造和测试的方法。本研究的数据收集是利用基于arduino的热电偶传感器,基于壳的差异测量4个粘土炉样品的导热系数。研究数据的分析采用描述性统计和推理统计,辅以Microsoft Excel和SPSS软件。在数据分析中,进行了单因素、双因素分析。每个样品中对外壳材料的导热系数值与时间和温度变量之间存在正相关关系,即温度升高的时间越长,温度升高的速度越快。由研究结果可知,样品1导热系数最好,为1.5375 J/ (K.m);样品4导热系数最差,为0.3125 J/ (K.m)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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