| 查看: 295 | 回复: 1 | ||||
| 【奖励】 本帖被评价1次,作者meto增加金币 0.5 个 | ||||
| 当前主题已经存档。 | ||||
[资源]
SCIENCE上一篇重要的有关碳管力学性能的文章
|
||||
|
SCIENCE上一篇重要的有关碳管力学性能的文章 SCIENCE VOL. 277 26, 1997,1971-5. REPORTS Nanobeam Mechanics: Elasticity, Strength, and Toughness of Nanorods and Nanotubes Eric W. Wong,* Paul E. Sheehan,* Charles M. Lieber E. W. Wong and P. E. Sheehan, Department of Chemistry, Harvard University, Cambridge, MA 02138, USA. C. M. Lieber, Department of Chemistry and Division of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA. ABSTRACT: The Young’s modulus, strength, and toughness of nanostructures are important to proposed applications ranging from nanocomposites to probe microscopy, yet there is little direct knowledge of these key mechanical properties. Atomic force microscopy was used to determine the mechanical properties of individual, structurally isolated silicon carbide (SiC) nanorods (NRs) and multiwall carbon nanotubes (MWNTs) that were pinned at one end to molybdenum disulfide surfaces. The bending force was measured versus displacement along the unpinned lengths. The MWNTs were about two times as stiff as the SiC NRs. Continued bending of the SiC NRs ultimately led to fracture, whereas the MWNTs exhibited an interesting elastic buckling process. The strengths of the SiC NRs were substantially greater than those found previously for larger SiC structures, and they approach theoretical values. Because of buckling, the ultimate strengths of the stiffer MWNTs were less than those of the SiC NRs, although the MWNTs represent a uniquely tough, energy-absorbing material |
» 收录本帖的淘帖专辑推荐
感兴趣 |
» 猜你喜欢
澳大利亚 Murdoch University 全奖博士招生(3个名额)地质化工冶金领域
已经有16人回复
FileCode能看出啥?
已经有27人回复
欢迎发来filecode的Mz6后的代码验证其规律
已经有12人回复
静等基金结果
已经有19人回复
阿姨
已经有3人回复
有时候,自然基金真的不能太认真 (我的申报经验)
已经有6人回复
filecode
已经有16人回复
重要来源:本周末出结果
已经有10人回复
咱们一起用铁证分析2026国家社科基金中标与否
已经有6人回复
不应该看fileCode
已经有9人回复










回复此楼