首页> 外文会议>International Congress on Sound and Vibration >REPRODUCIBILITY OF MODAL PARAMETERS USING DIFFERENT EXCITATION TYPES
【24h】

REPRODUCIBILITY OF MODAL PARAMETERS USING DIFFERENT EXCITATION TYPES

机译:使用不同励磁类型的模态参数的再现性

获取原文

摘要

Experimental acquisition techniques of modal parameters are well-known topics in the dynamic characterization process of steel structures. The objective is to determine the structure's natural vibration properties, which are eigenfrequencies, corresponding mode shapes and damping. Mostly, the experimentally obtained modal parameters are used to verify numerical models, which can be utilized e.g. for overall system vibration simulations. The modal parameters usually were taken from single measurements and thus, few information about the parameter variances are available. In experimental modal analysis, the choice of the boundary condition (e.g. free or grounded support) as well as the corresponding excitation type (e.g. impulse hammer or shaker) may impact the variance of the obtained modal data. The present article focuses on the differences in reproducibility of modal parameters using an impact hammer and a modal shaker, where measurements are carried out under free/free boundary conditions. The test object is a gear wheel, which first eigenfrequency occurs in a frequency range around 4.6 kHz. During the experimental modal analysis, the frequency response functions are obtained up to 20 kHz. Due to the high frequency range, a 3D Scanning Laser Doppler Vibrometer is used to measure the vibrations velocities in all configurations. In a first test setup, statistical variations of a single gear wheel's modal parameters are analyzed and special attention will be payed on the reproducibility of the excitation force using an automated impulse hammer. In a second step, repeated measurements of modal parameters of one gear wheel are presented followed by a comparison of measurements on three identical gear wheels of one lot. Finally, repeating measurements are carried out using a modal shaker for system excitation and the corresponding modal parameters are compared to the results obtained using an impact hammer.
机译:模态参数的实验采集技术是在钢结构的动态表征过程知名的主题。目的是确定该结构的固有振动特性,这是本征频率,对应模式的形状和阻尼。大多数情况下,通过实验获得的模态参数被用来验证数值模型,它可以例如被利用用于整个系统的振动模拟。模态参数通常是从单一的测量和由此采取的,关于参数方差几个信息是可用的。在试验模态分析,边界条件(例如游离的或接地的支持),以及相应的激励类型的选择(例如,脉冲锤或振动筛)可能影响所获得的模态数据的方差。本文章集中于在使用冲击锤和一个模态振动筛,其中的测量数据/无边界条件下进行模态参数的再现性的差别。测试对象是齿轮,其第一特征中发生的频率范围约460千赫。在实验模态分析,得到高达20千赫的频率响应函数。由于高频率范围内,三维扫描激光多普勒振动计被用于测量在所有配置的振动速度。在第一个测试设置中,单个齿轮的模态参数的统计变化进行了分析和特别注意将在激励力的使用自动脉冲锤的再现性所许。在第二步骤中,一个齿轮的模态参数的重复测量呈现随后的测量值上的一个很大的三个相同的齿轮的比较。最后,重复测量进行了使用的系统激励模态振动筛和相应的模态参数进行比较,以使用冲击锤所获得的结果。

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