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首页> 外文期刊>Journal of Applied Physics >Thermal characterization of composites made up of magnetically aligned carbonyl iron particles in a polyester resin matrix
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Thermal characterization of composites made up of magnetically aligned carbonyl iron particles in a polyester resin matrix

机译:聚酯树脂基体中由磁性排列的羰基铁颗粒组成的复合材料的热特性

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摘要

The thermal characterization of composites made up by magnetically aligned carbonyl iron micro-sized particles embedded in a polyester resin matrix is performed using photothermal radiometry technique. The measured experimental data show that the thermal conductivity and thermal diffusivity of the composite, in the direction of the applied magnetic field, increase with the concentration of the particles and are enhanced with respect to their corresponding values for a random distribution of the particles. This thermal enhancement has a maximum at a concentration of particles of 10% and is very low at small and high iron volume fractions, such that for particles concentrations of about 40%, the composite thermal conductivity reduces to its values for random particles. This behavior indicates that for high volume fractions, the effect of the microparticles concentration plays a dominant role over the effect of their alignment. It is shown that the thermal conductivity of the composite can be modeled in terms of the Nielsen model, under an appropriate parameterization of the form factor of the particles. The results of this work could be highly useful for improving the thermal performance of mechanical and electronic devices involving composite materials.
机译:使用光热辐射技术对嵌入聚酯树脂基体中的磁性排列的羰基铁微尺寸颗粒组成的复合材料进行热表征。测得的实验数据表明,复合材料的导热率和热扩散率在施加磁场的方向上随着颗粒浓度的增加而增加,并且相对于其相应的值(对于颗粒的随机分布)有所提高。在颗粒浓度为10%时,这种热增强作用最大,而在铁体积分数小和高时,这种热增强作用非常低,因此对于约40%的颗粒浓度,复合材料的导热系数会降低至其对于无规颗粒的值。此行为表明,对于高体积分数,微粒浓度的影响比其排列的作用起主要作用。结果表明,在颗粒形状因子的适当参数化下,可以根据尼尔森模型对复合材料的导热系数进行建模。这项工作的结果对于改善涉及复合材料的机械和电子设备的热性能可能非常有用。

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  • 来源
    《Journal of Applied Physics》 |2012年第5期|p.054906.1-054906.7|共7页
  • 作者单位

    UADY-Facultad de Ingenieria, Av. Industrias No Contaminantes Por Periferico Norte, Merida,Yucatan 97230, Mexico;

    UADY-Facultad de Ingenieria, Av. Industrias No Contaminantes Por Periferico Norte, Merida,Yucatan 97230, Mexico;

    UADY-Facultad de Ingenieria, Av. Industrias No Contaminantes Por Periferico Norte, Merida,Yucatan 97230, Mexico;

    Centro de Investigation y de Estudios Avanzados del IPN-Unidad Queretaro, Libramiento Norponiente 2000,Queretaro, Mexico;

    Centro de Investigation y de Estudios Avanzados del IPN-Unidad Merida, Departamento de Fisica Aplicada,Carretera Antigua a Progreso km. 6, A.P. 73 Cordemex, Merida, Yucatan, 97310, Mexico;

    Centro de Investigation y de Estudios Avanzados del IPN-Unidad Merida, Departamento de Fisica Aplicada,Carretera Antigua a Progreso km. 6, A.P. 73 Cordemex, Merida, Yucatan, 97310, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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