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Anisotropic and temperature dependent mechanical properties of carbon honeycomb

机译:碳蜂窝的各向异性和温度依赖性机械性能

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摘要

Carbon honeycomb (CHC) is a newly synthesized carbon allotropy with promising applications in many fields of science and engineering. In this work, we investigate the mechanical properties of CHC with focus on the anisotropicity in terms of the tilt angle theta in zigzag-armchair (x-y) plane using molecular dynamics simulations. Results show that the tensile strength of CHC ranges from 15.0 to 23.7 GPa at room temperature, which is lower than that of graphene due to the weakness on the junction. Meanwhile, except in the armchair direction, the strength of CHC reduces as the stretching direction moves away from the zigzag direction, similar to that of graphene, while the Young's modulus decreases with respect to tilt angle, opposite to that of graphene. Increasing the temperature will weaken CHC by reducing the strength, there is only a 16% reduction in the minimum strength in the x-y plane as the temperature increases from 100 to 900 K. In addition, the crack occurs first in cell axis direction then in the x-y plane, different from graphene which appears along the zigzag direction only.
机译:碳蜂窝状(CHC)是一种新合成的碳交联,具有在许多科学和工程领域的有前途的应用。在这项工作中,我们研究了CHC的机械性能,在使用分子动力学模拟的Z字形 - 扶手椅(X-Y)平面中的倾斜角度θ方面的各向异性。结果表明,CHC的拉伸强度在室温下为15.0至23.7GPa,由于交界处的弱点,低于石墨烯的温度。同时,除了扶手椅方向外,CHC的强度随着拉伸方向远离Z字形方向而减少,类似于石墨烯类似,而杨氏模量相对于倾斜角度,与石墨烯相对相反。通过降低强度,增加温度会削弱CHC,XY平面中的最小强度降低了16%,因为温度从100到900k增加。此外,裂缝首先发生在细胞轴方向上XY平面,与石墨烯不同,仅沿着锯齿方向出现。

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