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GRAPHENE COMPOSITES FOR THERMAL MANAGEMENT APPLICATIONS

机译:用于热管理应用的石墨烯复合材料

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摘要

Affordable materials with high thermal conductivity and low thermal-expansion coefficient are very attractive for thermal management applications. Graphene demonstrates great potential to tune the thermal expansion coefficients of polymer composites while significantly improving thermal conductivity, therefore, graphene-filled polymers are regarded as very promising candidates for thermal interface materials and expected to solve the big challenge of increasing heat dissipation in microelectronic devices. In this paper, graphene sheets were synthesized through chemical exfoliation of graphite flakes and then incorporated into polymer composites by solution casting. Both thermal conductivity and thermal expansion of the resultant composites were investigated. The characterization results indicated a significant improvement of bulk thermal conductivity with low addition of graphene sheets in comparison with neat polymer matrix. The coefficients of thermal expansion (CTEs) of polymer composites were also found to decrease with inclusion of graphene, and the CTEs decrease more significantly with increasing graphene fraction. This study suggests graphene nanocomposites are very promising for thermal management application in electronic industry.
机译:经济适用的具有高导热率和低热膨胀系数的材料对于热管理应用非常有吸引力。石墨烯在调节聚合物复合材料的热膨胀系数的同时具有显着提高导热率的巨大潜力,因此,石墨烯填充的聚合物被认为是非常有希望的热界面材料候选材料,并有望解决增加微电子器件散热的巨大挑战。本文通过石墨薄片的化学剥落合成石墨烯片,然后通过溶液流延将其掺入聚合物复合材料中。研究了所得复合材料的导热率和热膨胀率。表征结果表明,与纯聚合物基体相比,石墨烯片材添加量较低时,整体导热系数有了显着改善。还发现,随着石墨烯的加入,聚合物复合材料的热膨胀系数(CTE)降低,并且随着石墨烯含量的增加,CTE的降低幅度更大。这项研究表明石墨烯纳米复合材料在电子工业的热管理应用中非常有前途。

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  • 来源
  • 会议地点 Seattle WA(US)
  • 作者单位

    Department of Industrial Engineering, Texas Tech University, 2500 Broadway, Lubbock, Texas 79415;

    rnDepartment of Industrial Engineering, Texas Tech University, 2500 Broadway, Lubbock, Texas 79415;

    rnDepartment of Industrial Engineering, Texas Tech University, 2500 Broadway, Lubbock, Texas 79415 Shiren. Wang@ ttu.edu;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

  • 入库时间 2022-08-26 14:16:53

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