Computational Mechanics of Generalized Continua

Computational Mechanics of Generalized Continua
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广义连续体的计算力学

DOI:
10.1007/978-3-662-55771-6_111
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发表时间:
2020
期刊:
Encyclopedia of Continuum Mechanics
影响因子:
--
通讯作者:
Steinmann
Steinmann
中科院分区:
--
文献类型:
--
作者:
Kaessmair;Steinmann

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20世纪70年代,在碳氢化合物分解过程中,观察到了小直径碳纤维,但由于表征和测量的限制,没有对其进行描述(Ma和Kim,2011)。后来,在1991年,Iijima(1991)观察并表征了新的管状碳纳米结构。在分析富勒烯合成的过程中,Iijima观察到了新的纤维结构-多壁碳纳米管(MWCNTs)。接下来,在1993年,Iijima的团队与IBM实验室同时发布了关于单壁碳纳米管(SWCNT)的信息(Ma和Kim,2011)。术语纳米管描述了由一个或多个同心圆柱层制成的中空圆柱形结构。碳纳米管因其特殊的性能而成为最重要的碳纳米材料之一(Sattler 2011)。此外,碳纳米管内部空穴的存在和碳原子替代或表面功能化的可能性为创造新的杂化结构提供了机会。
In the 1970s during decomposition of hydrocarbons, small diameter carbon fibers were observed, but because of limitation on characterization and measurement they were not described (Ma and Kim 2011). Later, in 1991 new tubular carbon nanostructures were observed and characterized by Iijima (1991). During the analysis of the fullerene synthesis, Iijima observed new fiber structures–multiwalled carbon nanotubes (MWCNTs). Next, in 1993 the Iijima’s group at the same time as the IBM laboratory published the information on the single-walled carbon nanotubes (SWCNTs)(Ma and Kim 2011). The term nanotube describes a hollow cylindrical structure made of one or more concentric cylindrical layers. The carbon nanotubes became one of the most important carbon nanomaterials because of their exceptional properties (Sattler 2011). Moreover, the existence of inner cavity and the possibilities of carbon atom substitution or surface functionalization of CNTs give an opportunity for the creation of new hybrid structures.
关于梯度和微态连续体变分原理的统一论文
DOI: 10.1080/14786430500362421
发表时间: 2005
影响因子: 1.6
作者:
N. Kirchner;P. Steinmann
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发表时间: 2007
影响因子: 7.2
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