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首页> 外文期刊>International Journal of Heat and Mass Transfer >Effects of pressure and temperature on the effective thermal conductivity of oriented silicon steel iron core under atmospheric condition
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Effects of pressure and temperature on the effective thermal conductivity of oriented silicon steel iron core under atmospheric condition

机译:压力和温度对大气条件下取向硅钢铁芯有效导热系数的影响

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摘要

A set of experimental devices was designed and built to investigate the effects of average temperature of lamination, contact pressure, and lamination number on the effective axial thermal conductivity of silicon steel multi-stacked material in the loading and unloading processes under atmospheric environment. Specimens are stacked by oriented silicon steel sheets, the content of silicon is approximately 3.3%, and thickness is 0.23 mm. Average temperature is in the range of 200–800 °C, and contact pressure is between 0.16 and 16.68 MPa. Experimental results indicated that: effective axial thermal conductivity presented an obvious relationship with the average temperature and contact pressure of lamination but showed independence from the lamination number. Effective axial thermal conductivity is more sensitive to contact pressure in the loading process than in the unloading process. The correlation equations of effective axial thermal conductivity have an accuracy of 15%.
机译:设计并构建了一套实验装置,以研究在大气环境下装卸过程中平均层压温度,接触压力和层压数对硅钢多层堆叠材料有效轴向导热率的影响。样品由取向的硅钢板堆叠而成,硅含量约为3.3%,厚度为0.23 mm。平均温度在200–800 C范围内,接触压力在0.16至16.68 MPa之间。实验结果表明:有效轴向热导率与层压的平均温度和接触压力呈明显关系,但与层压数无关。有效轴向导热率在加载过程中比在卸载过程中对接触压力更敏感。有效轴向热导率的相关方程的精度为15%。

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  • 来源
  • 作者单位

    School of Energy and Environmental Engineering, University of Science and Technology Beijing;

    School of Energy and Environmental Engineering, University of Science and Technology Beijing,Beijing Key Laboratory for Energy Saving and Emission Reduction of Metallurgical Industry;

    School of Energy and Environmental Engineering, University of Science and Technology Beijing,Beijing Key Laboratory for Energy Saving and Emission Reduction of Metallurgical Industry;

    School of Energy and Environmental Engineering, University of Science and Technology Beijing,Beijing Key Laboratory for Energy Saving and Emission Reduction of Metallurgical Industry;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heat conduction; Effective axial thermal conductivity; Transformer cores; Multi-stacked material; Contact pressure;

    机译:导热;有效轴向热导率;变压器铁芯;多层材料;接触压力;

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