Shirasu Keiichi, Kitayama Shunsuke, Liu Fan, Yamamoto Go, Hashida Toshiyuki
Department of Aerospace Engineering, Tohoku University, 6-6-01, Aza-Aoba, Aramaki, Aobaku, Sendai, Miyagi 980-8579, Japan.
Fracture and Reliability Research Institute, Tohoku University, 6-6-11, Aza-Aoba, Aramaki, Aobaku, Sendai, Miyagi 980-8579, Japan.
Nanomaterials (Basel). 2021 Mar 19;11(3):795. doi: 10.3390/nano11030795.
To apply carbon nanotubes (CNTs) as reinforcing agents in next-generation composites, it is essential to improve their nominal strength. However, since it is difficult to completely remove the defects, the synthesis guideline for improving nominal strength is still unclear, i.e., the effective strength and the number of nanotube layers required to improve the nominal strength has been undermined. In this study, molecular dynamics simulations were used to elucidate the effects of vacancies on the mechanical properties of CNTs. Additionally, the relationships between the number of layers and effective and nominal strengths of CNTs were discussed theoretically. The presence of extensive vacancies provides a possible explanation for the low nominal strengths obtained in previous experimental measurements of CNTs. This study indicates that the nominal strength can be increased from the experimentally obtained values of 10 GPa to approximately 20 GPa by using six to nine nanotube layers, even if the increase in effective strength of each layer is small. This has advantages over double-walled CNTs, because the effective strength of such CNTs must be approximately 60 GPa to achieve a nominal strength of 20 GPa.
要将碳纳米管(CNTs)用作下一代复合材料的增强剂,提高其标称强度至关重要。然而,由于难以完全消除缺陷,提高标称强度的合成指南仍不明确,即提高标称强度所需的有效强度和纳米管层数受到了影响。在本研究中,使用分子动力学模拟来阐明空位对碳纳米管力学性能的影响。此外,从理论上讨论了碳纳米管层数与有效强度和标称强度之间的关系。大量空位的存在为先前碳纳米管实验测量中获得的低标称强度提供了一种可能的解释。本研究表明,即使每层有效强度的增加很小,通过使用六到九层纳米管,标称强度也可以从实验获得的10 GPa提高到约20 GPa。这比双层碳纳米管具有优势,因为此类碳纳米管要达到20 GPa的标称强度,其有效强度必须约为60 GPa。