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Modeling of torsion actuation of beams using inclined piezoelectric actuators

机译:使用倾斜压电致动器对梁的扭转致动建模

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摘要

The present work is preliminary studies on the development of finite element model for static analysis of advanced beam structure subjected to axial, transverse, and torsion loads in addition to the torsion actuation due to the piezoelectric actuators. These types of smart structures can be used as element of mechanical system, helicopter rotor blade, and/or blades for turbomachinery. The equation of motion of the structure system is derived using the energy variation approach. The model assumes that the structure behaves as a Bernoulli-Euler beam in bending and extension, while torsion is introduced by utilizing a cross-sectional warping function, which dependent upon the cross- section geometry of the structure. A linear and hermit cubic shape functions are used to model the axial and transverse deformations, while quadratic interpolation shape function is introduced to model the torsion deformation. The bending, torsion, and axial coupling are introduced in the stiffness and mass matrices. The electric potential is considered as function of the thickness and the length of the beam element. A MATLAB interactive code is developed to validate the model. The obtained results are compared to the available analytical and finite element results and found reasonable.
机译:目前的工作是对有限元模型的发展进行初步研究,该模型用于对承受轴向,横向和扭转载荷的高级梁结构进行静态分析,此外还要考虑压电促动器产生的扭转促动。这些类型的智能结构可用作机械系统,直升机旋翼桨叶和/或涡轮机械的桨叶的元件。结构系统的运动方程是使用能量变化方法得出的。该模型假定结构在弯曲和延伸时表现为伯努利-欧拉梁,而扭转是通过利用横截面翘曲函数引入的,该函数取决于结构的横截面几何形状。线性和隐函数三次形状函数用于对轴向和横向变形进行建模,而二次插值形状函数则用于对扭转变形进行建模。在刚度和质量矩阵中引入了弯曲,扭转和轴向耦合。电势被认为是梁元件的厚度和长度的函数。开发了MATLAB交互式代码来验证模型。将获得的结果与可用的分析和有限元结果进行比较,并发现是合理的。

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