用田口实验设计计算和分析(聚丙烯酰胺-高岭土)复合材料的导热系数

Asst. Prof. Dr. Raghad Hamid Hilal
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引用次数: 1

摘要

研究复合材料的热性能在复合材料的热应用中具有重要意义。在聚丙烯酰胺-高岭土复合材料中加入不同量的高岭土(0、0.2、0.5、0.6、0.8 g)制备复合材料。研究了其导热系数和比热容。实验设计采用田口阵列L25(5^2),因子2,运行25,列25(5^6)阵列12,共制备了25个样品。结果表明,随着高岭土用量的增加,复合材料的导热系数随着温度的升高而降低。此外,还讨论了复合材料比热容的情况。目前的研究描述了利用田口实验设计从过程中选择最优因子水平来获得复合材料的最大导热系数。选取正交矩阵的依据是取不同温度下不同数量的高岭土(0、0.2、0.5、0.6、0.8g)。田口程序适用于因素及其水平的组合。此外,对给定的输入参数进行重复,输出参数越小越好,表示(聚丙烯酰胺-高岭土)复合材料的导热系数。试验结果表明,影响高岭土掺量(0.2g)和温度(70℃)的因素。利用因子及其水平,导热系数为(0.428 w·m-1·°C-1)。
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Using Taguchi Experimental Design to Calculate and Analyze Thermal Conductivity for (Polyacrylamide – Kaolin) Composite
The research is interested in studying the thermal property of the composite material because of its importance in the thermal uses of composite materials. The composite material was prepared with different amounts of kaolin (0, 0.2, 0.5, 0.6, and 0.8 g) in (polyacrylamide -kaolin) composite. Its thermal conductivity and specific heat capacity were studied. Taguchi Array L25(5^2), factors 2, Runs 25, columns 25(5^6) Array 12, was used as an experimental design and 25 samples were prepared using this array. The results improved that the thermal conductivity of the composite material decreases with a high kaolin amount toward temperature increase. Moreover, a case with the composite material's specific heat capacity. The current research describes using Taguchi experimental design to select the optimal factor level from the process to get a maximum thermal conductivity of composite material. The basis for choosing the orthogonal matrix is to take each of the different quantities of kaolin (0,0.2, 0.5, 0.6, and 0.8g) at different temperatures. Taguchi program is applied to the combination of factors and their levels. Besides, the output parameter representing thermal conductivity of (polyacrylamide – kaolin) composite with repetition to the given input parameters using smaller the better. The test results show the factor that influences the amount of kaolin (0.2g), and temperature(70°C). By using the factor and its level, thermal conductivity is (0.428 w· m-1· °C-1).
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来源期刊
Kuwait Journal of Science & Engineering
Kuwait Journal of Science & Engineering MULTIDISCIPLINARY SCIENCES-
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