材料科学
复合材料
纳米棒
碳纳米管
韧性
碳化硅
纳米复合材料
屈曲
弹性模量
碳纳米管的力学性能
断裂韧性
模数
弯曲
断裂力学
纳米管
纳米技术
作者
Eric W. M. Wong,Paul E. Sheehan,Charles M. Lieber
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:1997-09-26
卷期号:277 (5334): 1971-1975
被引量:4682
标识
DOI:10.1126/science.277.5334.1971
摘要
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.
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