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细观结构对复合材料热膨胀系数的影响研究 被引量:15

Influence of Micro-Structual Geometry on Thermal ExpansionCoefficient of Composites
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摘要 基于应力为未知量的通用单胞模型改进算法在保证计算精度的前提下 ,可以提高计算效率 ,本文利用该方法计算了纤维细观结构对纤维增强复合材料热膨胀系数的影响。计算结果表明 ,热膨胀系数随体积比的增加而减小 ,纵向热膨胀系数受纤维的形状和排列方式的影响不大 ,而横向热膨胀系数受纤维形状以及排列方式的影响较为明显。复合材料的纵向热膨胀系数并不是随温度上升而上升的 ,它与各组分的弹性模量和热膨胀系数等有关。 An efficient implementation of the GMC micromechanics model is used to predict thermal expansion coefficients in this paper. The efficient implementation, which can be used to analyze repeating unit cells containing thousands of subcells, is more efficient than original formulation of GMC. The results indicate that the macro-thermal expansion coefficients increase with volume ratio decreasing. The influence of fiber shape and packing arrangement on transverse macro-thermal expansion coefficient is obvious, but its influence on longitudinal macro-thermal expansion coefficient is a little. The longitudinal macro-thermal expansion coefficient doesn't increase with the temperature's rising. The longitudinal macro-thermal expansion coefficient relates to each composition of composite.
出处 《应用力学学报》 CAS CSCD 北大核心 2004年第2期146-150,共5页 Chinese Journal of Applied Mechanics
基金 航空科学基金资助 编号 :0 1C5 2 0 17
关键词 细观结构 复合材料 热膨胀系数 改进算法 通用单胞模型 弹性模量 generalized method of cells, efficient implementation, thermal expansion coefficient.
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参考文献2

  • 1CHONG-SUNG PARK, MYUNG- HO KIM, CHONGMU LEE,A theoretical approach for the thermal expansion behavior of the particulate reinforced aluminum matrix composite,Part I A thermal expansion model for composites with mono-dispersed spherical particles, JOURNAL
  • 2Marek-Jerzy Pindera Brett A. Bednarcyk, An efficient implementation of the GMC micromechanics model for muli-phased materials with complex microstructures, NASA CR 202350, 1997

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