• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2016, Vol. 52 ›› Issue (5): 154-161.doi: 10.3901/JME.2016.05.154

• 机械动力学 • 上一篇    下一篇

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超声红外热像技术中预紧力对金属平板振动特性的影响

张超省, 冯辅周, 闵庆旭, 王鹏飞   

  1. 装甲兵工程学院机械工程系 北京 100072
  • 出版日期:2016-03-05 发布日期:2016-03-05
  • 作者简介:张超省,男,1987年出生,博士研究生。主要研究方向为无损检测及红外热像检测技术。E-mail:cs116@163.com;冯辅周(通信作者),男,1971年出生,教授。主要研究方向为故障诊断及无损检测技术。E-mail:fengfuzhou@tsinghua.org.cn
  • 基金资助:
    * 军内计划科研资助项目

Effect of Engagement Force on Vibration Characteristics of Metal Plate in Sonic Infrared Imaging

ZHANG Chaosheng, FENG Fuzhou, MIN Qingxu, WANG Pengfei   

  1. Department of Mechanical Engineering, Academy of Armored Force Engineering, Beijing 100072
  • Online:2016-03-05 Published:2016-03-05

摘要: 在超声红外热像检测过程中,超声脉冲激励下被测对象的振动状态直接决定了缺陷区域的生热效果,而工具杆与被测对象之间的预紧力是影响被测对象振动状态的重要因素之一。试验结果表明:预紧力的增大使得振动能量呈上升趋势并伴随着小范围不稳定,同时被测对象的振动频谱由混沌振动开始,经历次谐波、准次谐波后达到超谐波振动状态。针对上述现象,采用显式动力学方法建立了与试验条件相对应的有限元模型,并进行了瞬态动力学分析。模型采用压电-力类比方法来模拟压电陶瓷的逆压电效应,同时引入了动态松弛来更准确模拟试验工况。仿真结果验证了试验观察到的现象,并进一步揭示了预紧力的增大将改变超声工具杆和被测平板之间的接触力状态,从而改变被测试件的振动能量分布和振动频谱。研究成果有助于实现通过预紧力来控制被测对象振动状态,进而达到优化超声红外热像检测的目的。

关键词: 超声红外热像, 预紧力, 振动能量, 振动频谱

Abstract: During sonic infrared imaging testing, vibration of the target under sonic pulse excitation directly determines heating of defect area. Engagement force between horn and target is one of primary factors affecting vibration characteristics of the target. The analysis of experimental results shows that the increase of engagement force makes the vibration energy undergo a gradual increase process with two small instability ranges, and the vibration spectrum undergo a development process from chaotic vibration into subharmonic vibration, quasi-subharmonics vibration and superharmonics vibration. Based on these phenomena, a finite element model corresponding to experiment conditions is established and transient dynamic analyses are performed by an explicit finite element method. In the finite element model, a piezoelectric-force analogy method is employed to simulate the inverse piezoelectric effect of piezoelectric ceramic discs, and dynamic relaxation is used to simulate the experiment conditions more vividly. The simulation results further verdict experimental results and reveal that the increase of engagement force changes the status of contact force between ultrasonic horn and test plate, which further changes the vibration energy distribution and vibration spectrum of test plate. The conclusions are helpful for controlling vibration status through engagement force, which will be used to determine the test conditions of sonic infrared imaging.

Key words: engagement force, sonic infrared imaging, vibration energy, vibration spectrum

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