尺度悬臂梁对固有频率的影响

Jhon Malta, Arif Gunawan, Lovely Son
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摘要

本文研究了比例因子对悬臂梁固有频率的影响。缩放原型尺寸将使制造和测试巨大尺寸结构的动态特性变得更加容易。固有频率是系统振动特性的重要参数之一。振动结构中经常发生的现象是共振现象。共振是一种系统状态,在这种状态下,当外部刺激的频率等于或几乎等于系统的固有频率时,会产生异常大的振动。本研究采用欧拉-伯努利梁理论,采用MSC Nastran/Patran软件,采用冲击锤对悬臂梁进行了实验测试,研究了固有频率的比例因子。这三种方法分别应用于四种比例变化的梁:1:1,1:2.04,1:2.85和1:3.48。结果表明,固有频率随模型中的尺寸尺度缩减值的增加而增加。实际结构的固有频率值相当于该尺度固有频率值的1/S, S定义为降级尺度值。这个结果遵循相似理论。
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EFFECT OF A SCALED CANTILEVER BEAM ON NATURAL FREQUENCY
This paper deals with the scaling factor's effect on the cantilever beam's natural frequency. Scaling a prototype dimension will make it easier to manufacture and test the dynamic characteristics of structures with enormous sizes. Natural frequency is one of the essential parameters of the vibration characteristics of the system. The phenomenon that often occurs in vibrating structures is the resonance phenomenon. Resonance is a system state in which an abnormally large vibration is generated in response to an external stimulus, happening when the frequency of the disturbance is equal to, or nearly identical to, the natural frequency of the system. This research investigates the scale factor on natural frequency using the analytical method using Euler-Bernoulli beam theory, the MSC Nastran/Patran software, and experimental testing using an impact hammer on a cantilever beam. The three methods were applied to beams with four scaling variations: 1:1, 1:2.04, 1:2.85, and 1:3.48. Based on the results, the natural frequencies increase by the size scale reduction value in the modeling. The natural frequency value in the actual structure has a value equivalent to 1/S of the natural frequency value of the scale, whereas S is defined as the downgrade scale value. This result follows the Similitude theory.
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