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Free-Vibration Analysis of Rotating Beams by a Variable-Order Finite-Element Method

机译:旋转梁自由振动的变阶有限元分析

摘要

The free vibration of rotating beams is analyzed by means of a finite-element method of variable order. This method entails displacement functions that are a complete power series of a variable number of terms. The terms are arranged so that the generalized coordinates are composed of displacements and slopes at the element extremities and, additionally, displacements at certain points within the element. The displacement is assumed to be analytic within an element and thus can be approximated to any degree of accuracy desired by a complete power series. Numerical results are presented for uniform beams with zero and nonzero hub radii, tapered beams, and a nonuniform beam with discontinuities. Since the present method reduces to a conventional beam finite-element method for a cubic displacement function, the results are compared and found to be superior to the conventional results in terms of accuracy for a given number of degrees of freedom. Indeed, essentially exact eigenvalues and eigenvectors are obtained with this technique, which is far more rapidly convergent than other approaches in the literature.
机译:旋转梁的自由振动通过变阶有限元方法进行分析。此方法需要位移函数,该函数是项数可变的完整幂级数。排列这些术语,以使广义坐标由元素末端的位移和斜率以及元素内某些点的位移组成。假定位移是在一个元素内进行分析的,因此可以近似为完整幂级数所需的任何精度。给出了具有零和非零中心半径的均匀梁,锥形梁和具有不连续性的非均匀梁的数值结果。由于本方法简化为用于三次位移函数的常规梁有限元方法,因此在给定数量的自由度下,对结果进行比较并发现其优于常规结果。确实,使用该技术可以获得本质上准确的特征值和特征向量,其收敛速度远快于文献中的其他方法。

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