Some Investigations on Effect of Notch on Dynamics Characteristics of Cantilever Beams

S. Gawande, R. R. More
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引用次数: 1

Abstract

Beams are very important as per engineering applications is concern and it undergoes different type of loading. Because of different type of loadings there may be chance of failure of structures due to generation of notch.Therefore notch depth and its location are the main parameters for the vibration analysis of beams.The notch depth and its position may affect the natural frequency. Hence, it is essential to study the effect of notch depth and its position on modal natural frequency of the beam for the good performance and its safety. This paper work focus on the examination of these changes, which are useful for identification of notch place.The material of the beam is seleced as mild steel. In this work the comprehensive analysis of cantilever beam with and without notch has been done using analytical analysis and finite element method (FEM) with the help of ANSYS and experimentally using modern National Instruments (NI) Lab-view technique. An experimental set up was developed in which a cantilever beam was excited by a hammer and the response was obtained using an accelerometer.This method describes the relation between the various dynamics characteristics as modal natural frequency and notch depth, modal natural frequency with notch location. This paper focus on the study of dynamic properties of cantilever beams subjected to free vibration under the influence of notch at different points along the length.
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缺口对悬臂梁动力特性影响的一些研究
梁在工程应用中非常重要,它承受着不同类型的荷载。由于不同的载荷类型,结构可能会因缺口的产生而发生破坏。因此,缺口深度及其位置是梁振动分析的主要参数。缺口的深度和位置会影响固有频率。因此,研究缺口深度及其位置对梁的模态固有频率的影响对梁的良好性能和安全性至关重要。本文的工作重点是对这些变化的检查,这对缺口位置的识别是有用的。梁的材料选用低碳钢。本文在ANSYS软件的帮助下,采用解析分析和有限元法对悬臂梁进行了带缺口和不带缺口的综合分析,并利用现代国家仪器(NI) Lab-view技术进行了实验。建立了用锤击激励悬臂梁的实验装置,用加速度计测量悬臂梁的响应。该方法描述了模态固有频率与缺口深度、模态固有频率与缺口位置的关系。本文主要研究了悬臂梁在沿长度不同位置的缺口影响下的自由振动动力特性。
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