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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Modeling and analyses of thermo-elastic properties of radially grown carbon nanotubes-based woven fabric hybrid composite materials
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Modeling and analyses of thermo-elastic properties of radially grown carbon nanotubes-based woven fabric hybrid composite materials

机译:径向生长碳纳米管基纺织织物杂交复合材料的热弹性建模与分析

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摘要

Carbon nanotubes (CNTs) may be useful due to their sound thermo-mechanical properties. The present work deals with the evaluation and analysis of elastic properties and coefficient of thermal expansions (CTEs) of a CNTs-based 2D plane woven fabric composite material system where the CNTs are radially grown on the surface of the carbon fiber. Detailed constructional features of the proposed trans-scale composite material system is explained in detail. The mathematical modeling for the material properties of each constituent or building block of the hybrid composite is developed. The mathematical model for the thermo-elastic properties of yarns is also formulated based on strength of material method whereas the thermo-elastic properties of representative unit cell is based on the unit cell method. Various numerical results have been obtained by varying the CNTs content, carbon fiber contents, and temperatures. Effects of different geometrical parameters (such as yarn thickness, yarn width, and the ratio of gap length to yarn width of the yarn) on the elastic properties as well as the CTEs are also investigated.
机译:碳纳米管(CNT)由于其声热机械性能可能是有用的。本作者涉及基于CNT的2D平面织物复合材料系统的基于CNT的基于CNT的2D平面织物复合材料系统的弹性性质和热膨胀系数的评价和分析。详细说明了所提出的反式式复合材料系统的详细结构特征。开发了用于混合复合材料的每个成分或构件块的材料特性的数学建模。还基于材料方法的强度配制纱线热弹性性能的数学模型,而代表性单元电池的热弹性特性基于单元电池方法。通过改变CNT含量,碳纤维内容物和温度来获得各种数值结果。还研究了不同几何参数(例如纱线厚度,纱线宽度和纱线的间隙长度与纱线的纱线宽度的比率)的影响。

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