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Simulations on the elastic response of amorphous and nanocomposite carbon

机译:非晶态和纳米复合碳的弹性响应模拟

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摘要

Theoretical calculations of the elastic response of carbon composites and amorphous carbon are reported. The studied composites consist of crystalline nanoinclusions, either spherical diamonds or carbon nanotubes, embedded in amorphous carbon matrices. The elastic constants of the composites were calculated and found to systematically increase as the density increases. The elastic recovery under hydrostatic pressure for all structures was also investigated and was found to be significantly high for both nanocomposite and amorphous carbon, but decreases as the material becomes more dilute.
机译:报道了碳复合材料和无定形碳的弹性响应的理论计算。所研究的复合材料由嵌入在无定形碳基质中的晶体纳米夹杂物组成,包括球形金刚石或碳纳米管。计算出复合材料的弹性常数,发现其随着密度的增加而系统地增加。还研究了所有结构在静水压力下的弹性回复率,发现纳米复合材料和无定形碳的弹性回复率都很高,但随着材料的稀释度降低而降低。

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