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国家自然科学基金(A020602)

作品数:2 被引量:2H指数:1
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Combined torsional buckling of double-walled carbon nanotubes with axial load in the multi-field coupled condition被引量:2
2011年
The present study has theoretically investigated the combined torsional buckling of double-walled carbon nanotubes (DWCNTs) with axial load in the multi-field coupled condition. The effects of torsion, axial load, thermal-electrical change, surrounding elastic medium and the Van der Waals forces are all taken into consideration. The governing equation of buckling for CNTs subjected to thermo-electro-mechanical loadings has been established based on an elastic shell model of continuum mechanics. Reasonable simplifications are made to get the explicit expression of the critical buckling shear stress of DWCNTs, and numerical experiments are conducted for further research. It is shown that under certain electric and temperature field the critical buckling shear stress of DWCNTs only depends on the wave number of buckling modes. On the other hand, all the related impact factors have enormous influence on the critical buckling shear stress under a certain buckling mode. The critical buckling shear stress changes linearly with the axial-to-shear stress ratio, as well as the thermal and electric change. Axial compression tends to make DWCNTs unstable, while axial tension benefits the buckling stability. The critical buckling shear stress is directly proportional to the applied voltage. At room or lower temperature, the critical shear stress for infinitesimal buckling increases as the temperature change increases, while it decreases at a higher temperature. The conclusions are useful for the design of nano-structures related to the buckling stability of DWCNTs.
SUN YuGang YAO XiaoHu HAN Qiang
关键词:双壁碳纳米管扭转屈曲连续介质力学弹性介质
玻璃纤维蜂窝管压缩试验及力学性能研究
2023年
针对复合材料压缩载荷及吸能特性现有研究的不足,提出不同壁厚、不同胞元数量的玻璃纤维蜂窝管结构,采用万能试验机进行静态压缩试验。结果表明:蜂窝管壁厚值较小时,其主要失效形式为纤维断裂;壁厚值较大时,其失效形式为纤维断裂损伤及纤维层分层。压缩峰值载荷及总吸能随胞元数量及壁厚值增加而增大,比吸能仅随其壁厚值增加而增大。壁厚值0.4 mm的单胞元蜂窝管压缩峰值载荷取最小值2.11 kN,对应的能量吸收总量为23.9 J,比吸能为7.96 J·g^(-1);壁厚值0.8 mm的八胞元蜂窝管压缩峰值载荷取最大值53.1 kN,对应的能量吸收总量为1 353.6 J,比吸能为36.88 J·g^(-1)。
吴林华乐贵高张震东张奇
关键词:静态压缩试验失效形式
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