...
首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Simulation and Analysis with Wavelet Transform Technique and the Vibration Characteristics for Early Revealing of Cracks in Structures
【24h】

Simulation and Analysis with Wavelet Transform Technique and the Vibration Characteristics for Early Revealing of Cracks in Structures

机译:用小波变换技术的仿真与分析及结构早期揭示裂缝的振动特性

获取原文

摘要

Implementation of improved instruments is used to detect damage in an accurate manner and fully analyze its characteristics. An aluminum beam has been used in this work to identify cracks by using a vibration technique. The simulation of frequency response feature was conducted using a finite element model to provide average measures of intensities of vibration. Two forms of wavelet packet transform (WPT) entropies Shannon and log energy were applied to identify the position, width, and size of the crack. The results showed that with an increase in crack depth, the amplitude also increased at certain crack sizes and for all crack positions. For two crack depths of 1.6?mm and 0.16?mm having the same crack size and position 12?mm and 60?mm, respectively, a 4.5% increase in amplitude was observed at a crack depth of 1.6?mm. Moreover, the amplitude varied inversely with the position. A 12.6% increase in amplitude was observed at a crack depth of 1.6?mm rather than 0.16?mm, while both depths occurred at the same crack position (75?mm) and size (20?mm). Experimental validation was performed on a cantilever beam with one crack. The maximum absolute error found was 7.5% for the crack position and 9.1% for the crack size. With the increase in crack depth, the obtained results decrease the stiffness of a beam in a single crack case.
机译:改进仪器的实施用于以准确的方式检测损坏并充分分析其特征。在该工作中使用铝束来识别振动技术的裂缝。使用有限元模型进行频率响应特征的仿真,以提供平均振动率测量。应用两种形式的小波包变换(WPT)熵香农和记录能量识别裂缝的位置,宽度和大小。结果表明,随着裂纹深度的增加,幅度也在某些裂缝尺寸和所有裂缝位置增加。对于具有相同裂纹尺寸和0.16Ωmm的两个裂纹深度,分别具有相同的裂纹尺寸和位置12?mm和60Ωmm,在裂纹深度为1.6Ωmm的裂缝深度观察到4.5%。此外,幅度与位置相反。在裂纹深度为1.6Ωmm而不是0.16Ωmm的裂缝深度时观察到12.6%的幅度增加,而两个深度在相同的裂缝位置(75Ωmm)和尺寸(20Ωmm)。在具有一个裂缝的悬臂梁上进行实验验证。裂缝位置的最大绝对误差为7.5%,裂纹尺寸为9.1%。随着裂缝深度的增加,所获得的结果在单个裂纹壳体中降低光束的刚度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号