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首页> 外文期刊>Journal of Sound and Vibration >Free vibration analysis of cylindrical helical springs with noncircular cross-sections
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Free vibration analysis of cylindrical helical springs with noncircular cross-sections

机译:具有非圆形横截面的圆柱螺旋弹簧的自由振动分析

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The free vibration analysis of cylindrical helical springs with noncircular cross-sections is carried out by means of an analytical study. In the governing equations of motion of a spring, all displacement functions and a generalized warping coordinate are defined at the centroidal principal axis. The effects of the rotational inertia, axial and shear deformations, including torsion-related warping deformations, are also considered in the formulations. Explicit analytical expressions that give the vibrating mode shapes are derived by rigorous application of the symbolic computing package MATHEMATICA, and the Muller root search method is used to determine the natural frequencies. Numerical examples are provided for springs with elliptic, rectangular and equilateral triangular cross-sections, and subjected to clampedclamped and clampedfree boundary conditions. The natural frequencies are presented for a range of geometric parameters. In the case of elliptical wires, results are presented for the aspect ratio λ=a/b ranging from 3/5 to 5/3, the helix pitch angle ? from 5 to 12.5, the number of active turns n from 6 to 12, and the ratio of cylinder radius to minor axis R/2a ranging from 20/3 to 50/3. Validation of the proposed model has been achieved through comparison with a finite element model using three-dimensional solid elements and the results available in published literature, which in these cases indicates a good correlation.
机译:通过分析研究,对具有非圆形横截面的圆柱螺旋弹簧进行了自由振动分析。在弹簧的运动控制方程中,所有位移函数和广义的翘曲坐标都定义在质心主轴上。配方中还考虑了旋转惯性,轴向和剪切变形(包括与扭转有关的翘曲变形)的影响。通过严格应用符号计算程序包MATHEMATICA,得出给出振动模式形状的明确解析表达式,并使用Muller根搜索法确定固有频率。数值示例提供了具有椭圆形,矩形和等边三角形横截面的弹簧,并受到了夹紧和夹紧自由边界条件的影响。给出了一系列几何参数的固有频率。在椭圆线的情况下,对于纵横比λ= a / b在3/5至5/3范围内,螺旋节距角θ为α,给出了结果。从5到12.5,有效匝数n从6到12,圆柱半径与短轴R / 2a之比在20/3到50/3之间。通过与使用三维实体元素的有限元模型进行比较,并在已发表的文献中可获得结果,可以对所提出的模型进行验证,这表明它们之间具有良好的相关性。

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