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Investigation of the Effect of Material on Undamped Free Vibration of Cantilever Beams with Uniform Single Surface Crack

机译:用均匀单表面裂纹对材料对悬臂梁透明振动的影响研究

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Crack detection in structures is a critical area of research where the developments have been made out since decades. Various techniques are available for early identification and quantification of cracks to predict and prevent the unexpected sudden failure of structure and ensure uninterrupted service. Use of vibration analysis for detecting crack is one of the widely used techniques which offer lots of advantages over other like it is easier and less costly method and can be used for inaccessible components. The present work attempts to use modal analysis through FEA to investigate the effect of crack on natural frequency of vibration in beams of different materials, for three different crack location. From the result, it has been inferred that among Structural Steel (SS), Aluminium alloy (Al) and Gray Cast Iron (CI), the natural frequency is highest for Al beam and lowest for CI beam. Introduction of crack reduces the natural frequency of vibration, however, the effect of crack location on frequency is not uniform for different modes. Also, the trend is similar in beams of all the materials. Index Terms— Finite Element Analysis, Natural frequency, Mode shapes, Vibration Modes, Crack location
机译:结构中的裂纹检测是自十年以来的发展已经制定的重要研究领域。各种技术可用于早期识别和量化裂缝以预测和防止结构意外突然失效,并确保不间断的服务。用于检测裂缝的振动分析是广泛使用的技术之一,其优于其他优点,如它更容易和更昂贵的方法,可用于难以接近的组件。目前的工作试图通过FEA使用模态分析来研究裂缝对不同材料横梁振动的自然频率的影响,对于三种不同的裂缝位置。从结果中,已经推断,在结构钢(SS),铝合金(Al)和灰铸铁(CI)之间,对于Al梁和CI梁最低的自然频率最高。裂纹引入降低了振动的自然频率,然而,对于不同模式,裂缝位置对频率的影响并不均匀。而且,趋势在所有材料的光束中类似。索引条款 - 有限元分析,自然频率,模式形状,振动模式,裂缝位置

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