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首页> 外文期刊>Steel & Composite Structures: An International Journal >Surface and size dependent effects on static, buckling, and vibration of micro composite beam under thermo-magnetic fields based on strain gradient theory
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Surface and size dependent effects on static, buckling, and vibration of micro composite beam under thermo-magnetic fields based on strain gradient theory

机译:基于应变梯度理论的热磁场下的微复合梁静电,屈曲和振动的表面和尺寸依赖性效果

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In this article, static, buckling and free vibration analyses of a sinusoidal micro composite beam reinforced by single-walled carbon nanotubes (SWCNTs) with considering temperature-dependent material properties embedded in an elastic medium in the presence of magnetic field under transverse uniform load are presented. This system is used at micro or sub micro scales to enhance the stiffness of micro composite structures such as bar, beam, plate and shell. In the present work, the size dependent effects based on surface stress effect and modified strain gradient theory (MSGT) are considered. The generalized rule of mixture is employed to predict temperature-dependent mechanical and thermal properties of micro composite beam. Then, the governing equations of motions are derived using Hamilton's principle and energy method. Numerical results are presented to investigate the influences of material length scale parameters, elastic foundation, composite fiber angle, magnetic intensity, temperature changes and carbon nanotubes volume fraction on the bending, buckling and free vibration behaviors of micro composite beam. There is a good agreement between the obtained results by this research and the literature results. The obtained results of this study demonstrate that the magnetic intensity, temperature changes, and two parameters elastic foundations have important effects on micro composite stiffness, while the magnetic field has greater effects on the bending, buckling and free vibration responses of micro composite beams. Moreover, it is shown that the effects of surface layers are important, and observed that the changes of carbon nanotubes volume fraction, beam length-to-thickness ratio and material length scale parameter have noticeable effects on the maximum deflection, critical buckling load and natural frequencies of micro composite beams.
机译:在本文中,通过在横向均匀载荷的磁场存在下考虑嵌入弹性介质中的温度依赖性材料特性,静态,屈曲和自由振动分析。提出了。该系统用于微观或亚微型秤,以增强微复合结构的刚度,例如棒,梁,板和壳。在本作工作中,考虑了基于表面应力效应和改性应变梯度理论(MSGT)的尺寸依赖性效应。使用的混合物的广义规则预测微复合梁的温度依赖性机械和热性能。然后,使用Hamilton的原理和能量方法来源的运动方程。提出了数值结果,研究了材料长度参数,弹性基础,复合纤维角,磁强,温度变化和碳纳米管体积分数对微复合梁的弯曲,屈曲和自由振动行为的影响。通过本研究的结果与文献结果之间存在良好的一致性。本研究的获得结果表明,磁强度,温度变化和两个参数弹性基础对微复合刚度具有重要影响,而磁场对微复合梁的弯曲,屈曲和自由振动响应具有更大的影响。另外,表面层的影响很重要,观察到碳纳米管体积分数,梁长度比和材料长度比参数的变化对最大偏转,关键屈曲负荷和自然具有显着影响微复合梁的频率。

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