高小玫, 周寿增, 张茂才, 高学绪, 王润. 磁电复合线材磁热效应的计算与分析[J]. 工程科学学报, 1998, 20(1): 72-76. DOI: 10.13374/j.issn1001-053x.1998.01.016
引用本文: 高小玫, 周寿增, 张茂才, 高学绪, 王润. 磁电复合线材磁热效应的计算与分析[J]. 工程科学学报, 1998, 20(1): 72-76. DOI: 10.13374/j.issn1001-053x.1998.01.016
Gao Xiaomei, Zhou Shouzeng, Zhang Maocai, Gao Xuexu, Wang Run. Calculation and Analysis of Magneto-calorific Power for Composite Wire of Magnetic Core with Conductive Layer[J]. Chinese Journal of Engineering, 1998, 20(1): 72-76. DOI: 10.13374/j.issn1001-053x.1998.01.016
Citation: Gao Xiaomei, Zhou Shouzeng, Zhang Maocai, Gao Xuexu, Wang Run. Calculation and Analysis of Magneto-calorific Power for Composite Wire of Magnetic Core with Conductive Layer[J]. Chinese Journal of Engineering, 1998, 20(1): 72-76. DOI: 10.13374/j.issn1001-053x.1998.01.016

磁电复合线材磁热效应的计算与分析

Calculation and Analysis of Magneto-calorific Power for Composite Wire of Magnetic Core with Conductive Layer

  • 摘要: 推导并分析了磁与电复合的线材(柱、管、片状)样品的磁热功率P的表达式。涡流功率可分解为与磁、电特性和样品尺寸相关,以及与磁、电复合结构(因子)和样品形状(因子)相关的两大部分,分析表明导体层厚度越薄,导体对样品磁热的贡献越大。的最大值为0.5。

     

    Abstract: The representations of magneto-calorific power P for composite wire of magnetic core with conductive layer in various shapes (columnar, tubular and sheet) are derived. The results showed that the eddy calorific power can be divided into two parts. One is relative to magnetism, electricity and the size of sample, another is relative to the adapted structure of magnetic core and conductive layer (structure factor Ψ), and to sample shape (shape factor η).The analysis indicates that the thinner the covered conductive layer is^the greater the calorific power generated by the conductor gets.

     

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