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首页> 外文期刊>Journal of Sound and Vibration >Lateral vibration of a composite stepped beam consisted of SMA helical spring based on equivalent Euler-Bernoulli beam theory
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Lateral vibration of a composite stepped beam consisted of SMA helical spring based on equivalent Euler-Bernoulli beam theory

机译:基于等效欧拉-伯努利梁理论的SMA螺旋弹簧复合阶梯梁的横向振动

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摘要

The dynamic characteristics of the shape memory alloy (SMA) helical spring proposed to be used in the semi-active suspension platform (e.g. the optic disk drive) are considered in this study. The component mounted on the platform generates periodic oscillation due to parametric excitation, such as rotation of an eccentric mass. In this way, the induced vibration of the platform could load the suspension spring in both axial and lateral directions. Besides its tunable dynamic characteristics by phase transformation, the SMA helical spring providing both axial and lateral flexibilities is applicable in this regards. In this paper, the spring constant of the helical spring in transverse deformation was first derived by employing the first theorem of Castigliano's. The derived spring constant was then used to define the equivalent flexural stiffness of the spring. Consequently, the natural frequency of a stepped composite beam with the assembly of SMA spring and other beam-like component was derived by transfer matrix method. The calculated natural frequencies of the stepped beam were compared with the experimental measurements. It is found that the formulation well predicted the natural frequency of the SMA spring both in martensite and austenite phases, respectively. The tunable characteristics of the SMA helical spring in lateral vibration were also demonstrated.
机译:本研究考虑了拟用于半主动悬架平台(例如光盘驱动器)的形状记忆合金(SMA)螺旋弹簧的动态特性。安装在平台上的组件由于参数激励(例如偏心质量的旋转)而产生周期性的振荡。这样,平台引起的振动会在轴向和横向两个方向上给悬架弹簧加载。除了通过相变可调节的动态特性外,提供轴向和横向柔韧性的SMA螺旋弹簧在这方面也适用。本文首先利用卡斯蒂利亚诺定理推导了螺旋弹簧横向变形的弹簧常数。然后使用导出的弹簧常数定义弹簧的等效弯曲刚度。因此,通过传递矩阵法推导了带有SMA弹簧和其他梁状构件的阶梯式组合梁的固有频率。将计算出的步进梁固有频率与实验测量值进行比较。发现该制剂分别很好地预测了马氏体和奥氏体相中的SMA弹簧的固有频率。还展示了SMA螺旋弹簧在横向振动中的可调特性。

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