首页> 外文期刊>Journal of mechanics in medicine and biology >FREE VIBRATION OF MICROTUBULES AS ELASTIC SHELL MODEL BASED ON MODIFIED COUPLE STRESS THEORY
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FREE VIBRATION OF MICROTUBULES AS ELASTIC SHELL MODEL BASED ON MODIFIED COUPLE STRESS THEORY

机译:基于修正耦合应力理论的微管自由振动作为弹性壳模型

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In this study, first, the thin cylindrical shell theory was derived from the modified couple stress theory and, afterwards, the vibration of protein microtubules (MTs) was investigated using the developed model. In order to model protein MTs more precisely, the cylindrical micro-shell model was used. Also, to take account of small size effects, equations of motion were obtained on the basis of the modified couple stress theory. For this purpose, first, using Hamilton's principle, vibration equations of cylindrical shell with boundary conditions were derived from the modified couple stress theory. Finally, the effects of size parameters, MT dimensions, and the medium surrounding on the axial and circumferential vibration frequency of the MT were examined. It should be noted that the results obtained from the cylindrical micro-shell model, unlike those from the beam model, have lower dependency on MT length, but they have extreme dependency on MT thickness and radius. In the end, it is worth noting that the model developed in this study can predict experimental results with greater precision compared to classic models. In other words, this model narrows the gap existing between experimental results and previous models and theories.
机译:在这项研究中,首先,薄圆柱壳理论是从改进的耦合应力理论衍生而来的,然后,使用开发的模型研究了蛋白质微管(MTs)的振动。为了更精确地建模蛋白质MT,使用了圆柱形微壳模型。同样,考虑到小尺寸效应,在修正的耦合应力理论的基础上获得了运动方程。为此,首先,使用汉密尔顿原理,从修正偶应力理论推导了具有边界条件的圆柱壳的振动方程。最后,研究了尺寸参数,MT尺寸以及周围介质对MT轴向和圆周振动频率的影响。应当指出的是,不同于束模型,从圆柱微壳模型获得的结果对MT长度的依赖性较低,但对MT厚度和半径的依赖性极强。最后,值得注意的是,与经典模型相比,本研究中开发的模型可以更精确地预测实验结果。换句话说,该模型缩小了实验结果与以前的模型和理论之间存在的差距。

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