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Developing and tailoring multi-functional carbon foams for multi-field response.

机译:开发和定制用于多种领域响应的多功能碳泡沫。

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摘要

As technological advances occur, many conventional materials are incapable of providing the unique multi-functional characteristics demanded thus driving an accelerated focus to create new material systems such as carbon and graphite foams. The improvement of their mechanical stiffness and strength, and tailoring of thermal and electrical conductivities are two areas of multi-functionality with active interest and investment by researchers.;The present research focuses on developing models to facilitate and assess multi-functional carbon foams in an effort to expand knowledge. The foundation of the models relies on a unique approach to finite element meshing which captures the morphology of carbon foams. The developed models also include ligament anisotropy and coatings to provide comprehensive information to guide processing researchers in their pursuit of tailorable performance. Several illustrations are undertaken at multiple scales to explore the response of multi-functional carbon foams under coupled field environments providing valuable insight for design engineers in emerging technologies. The illustrations highlight the importance of individual moduli in the anisotropic stiffness matrix as well as the impact of common processing defects when tailoring the bulk stiffness. Furthermore, complete coating coverage and quality interface conditions are critical when utilizing copper to improve thermal and electrical conductivity of carbon foams.
机译:随着技术的进步,许多常规材料无法提供所需的独特多功能特性,从而驱使人们加速开发新型材料系统,例如碳泡沫和石墨泡沫。它们的机械刚度和强度的提高以及热导率和电导率的定制是多功能性的两个领域,研究人员对此充满兴趣和投入。本研究的重点是开发模型,以促进和评估多功能碳泡沫在汽车中的应用。努力扩展知识。模型的基础依赖于一种有限元网格划分的独特方法,该方法捕获了碳泡沫的形态。开发的模型还包括韧带各向异性和涂层,以提供全面的信息来指导加工研究人员追求可定制的性能。进行了多个比例的图示,以探索多功能碳泡沫在耦合现场环境下的响应,为新兴技术的设计工程师提供宝贵的见识。这些插图突出了各向异性刚度矩阵中各个模量的重要性,以及在定制整体刚度时常见加工缺陷的影响。此外,使用铜改善碳泡沫的导热性和导电性时,完整的覆盖范围和质量界面条件至关重要。

著录项

  • 作者

    Sarzynski, Melanie Diane.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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