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首页> 外文期刊>Computers, Materials & Continua >Design of Aligned Carbon Nanotubes Structures Using Structural Mechanics Modeling Part 2: Aligned Carbon Nanotubes Structure Modeling
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Design of Aligned Carbon Nanotubes Structures Using Structural Mechanics Modeling Part 2: Aligned Carbon Nanotubes Structure Modeling

机译:使用结构力学建模设计对齐的碳纳米管结构第2部分:对齐的碳纳米管结构建模

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摘要

The aligned carbon nanotube (A-CNT) structure is composed of arrays of individual CNTs grown vertically on a flat substrate. The overall structure and properties of an A-CNTs are highly dependent upon the designs of various architectures and geometric parameters. In Part 2, we have presented the detailed designs and modeling of various aligned carbon nanotube structures. It is found the A-CNT structures generally have much lower modulus than an individual CNT. The reason is due to the high porosity and low density of the A-CNT structures, since the interstitial space between nanotubes is mostly occupied by air. Increasing the nanotube array density is seen to have significantly improved the modulus of A-CNT structures. The mechanical property of the A-CNT structure can be affected by the individual nanotube atomic structure, but only at small wall thickness. As a material, the elastic modulus of the A-CNT is not affected by the size (height) of testing specimen.
机译:对齐的碳纳米管(A-CNT)结构由在平坦基板上垂直生长的单个CNT的阵列组成。 A-CNT的整体结构和性能高度依赖于各种体系结构和几何参数的设计。在第2部分中,我们介绍了各种对齐的碳纳米管结构的详细设计和建模。发现A-CNT结构通常具有比单个CNT低得多的模量。原因是由于A-CNT结构的高孔隙率和低密度,因为纳米管之间的间隙空间大部分被空气占据。可以看出,增加纳米管阵列密度可以显着提高A-CNT结构的模量。 A-CNT结构的机械性能可能会受到单个纳米管原子结构的影响,但仅在较小的壁厚下会受到影响。作为一种材料,A-CNT的弹性模量不受测试样品尺寸(高度)的影响。

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