航空学报 > 1987, Vol. 8 Issue (10): 513-518

纤维增强复合材料热导率的研究

费铸铭, 徐志刚   

  1. 上海交通大学
  • 收稿日期:1987-02-05 修回日期:1900-01-01 出版日期:1987-10-25 发布日期:1987-10-25

STUDY OF THE THERMAL CONDUCTIVITY OF FIBER REINFORCED COMPOSITE MATERIALS

Fei ZhumingXu Zhigang   

  1. Shanghai Jiaotong University
  • Received:1987-02-05 Revised:1900-01-01 Online:1987-10-25 Published:1987-10-25

摘要: 本文研究了单向复合材料热导率与基体材料和纤维的种类及纤维的含量和分布的关系,并根据电热相似原理,用混合热阻模型推出了单向复合材料热导率的计算式。用定常热流法实测了纤维含量和分布各不相同的试样在不同温度下的热导率,证实了该计算式的可靠性。

Abstract: In this paper the relation of effective thermal conductivity of fiber reinforced unidirectional composite materials (FRCM) with the kinds of fiber and matrix materials, volume fracture and arrangement of fiber in the composite was investigated.According to the electro-thermal analogy, were deduced the equationsandwhere is the thermal conductivity of ERCM in the direction parallel to the fiber, it may be perceived in equation (1) ,that conforms to rule of mixtures; is the thermal conductivity of FRCM in the direction perpendicular to the fiber. Equation (2) shows that depends on the factor of fiber arrangement n considerably. The thermal conductivities of ' specimens with different fiber volume fract'ors and arrangements have been measured by the method of constant heat flow under different temperatures. The measurements were made on carbon fiber aluminium unidirectional composites. The results of measurements show that the thermal conductivities of C/A1 composite reduced with increase of fiber volume fraction and increased with increase of temperature. Also observed that the fabrication technology of, composite, in a certain degree, had influence on thermal conductivities too. The measured thermal conductivities were very close to the calculated values obtained from the preceding equations. It confirmed that equations deduced in accordance with electro-thermal analogy are dependable. They may be used to predict the thermal conductivities of composite and to design the composite with different thermal conductivities.