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The stability of a vertical single-walled carbon nanotube under its own weight

机译:垂直单壁碳纳米管在自重下的稳定性

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It has been reported recently that single carbon nanotubes were attached to AFM tips to act as nanotweezers. In order to investigate its stability, a vertical single-walled carbon nanotube (SWCNT) under its own weight is studied in this paper. The lower end of the carbon nanotube is clamped. Firstly the governing dimensionless numbers are derived by dimensional analysis. Then the theoretical analysis based on an elastic column model is carried out. Two ratios, i.e.. the ratio of half wall thickness to radius (t/R) and the ratio of gravity to elastic resilience (rho gR/E), and their influences on the ratio of critical length to radius are discussed. It is found that the relationship between the critical ratio of altitude to radius and ratio of half thickness to radius is approximately linear. As the dimensionless number pgR/E increases, the compressive force per unit length (weight) becomes larger, thus critical ratio of altitude to radius must become smaller to maintain stability. At last the critical length of SWCNT is calculated. The results of this paper will be helpful for the stability design of nanotweezers-like nanostructures.
机译:最近有报道说,单个碳纳米管附着在AFM尖端上,用作纳米镊子。为了研究其稳定性,本文研究了自重作用下的垂直单壁碳纳米管(SWCNT)。碳纳米管的下端被夹紧。首先,通过尺寸分析得出控制的无量纲数。然后进行了基于弹性柱模型的理论分析。讨论了两个比率,即半壁厚与半径之比(t / R)和重力与弹性回弹之比(rho gR / E),以及它们对临界长度与半径之比的影响。发现高度与半径的临界比与半厚度与半径的比之间的关系近似线性。随着无量纲数pgR / E的增加,每单位长度(重量)的压缩力变大,因此,高度与半径的临界比必须变小,以保持稳定性。最后计算出SWCNT的临界长度。本文的结果将有助于纳米镊子状纳米结构的稳定性设计。

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