上海交通大学学报(自然版) ›› 2013, Vol. 47 ›› Issue (10): 1503-1508.

• 数理科学和化学 • 上一篇    下一篇

静水压力下橡胶动态力学参数的声管测量方法

黄修长a,朱蓓丽a,胡碰b,华宏星a   

  1.   (上海交通大学a. 振动、冲击、噪声研究所;b. 水声工程研究所,上海 200240)
     
  • 收稿日期:2013-01-18 出版日期:2013-10-30 发布日期:2013-10-30
  • 基金资助:

    国家自然科学基金资助项目(11172173)

Measurement of Dynamic Properties of  Rubber under Hydrostatic Pressure by Water-filled Acoustic Tube

HUANG Xiuchanga,ZHU Beilia,HU Penb,HUA Hongxinga
  

  1. (a. Institute of Vibration, Shock and Noise; b. Institute of Underwater Acoustic Engineering, Shanghai Jiaotong University, Shanghai 200240)
     
  • Received:2013-01-18 Online:2013-10-30 Published:2013-10-30

摘要:

建立了利用水声声管进行静水压力下橡胶材料动态力学参数测量的方法.基于含均匀圆柱空腔结构中弹性波传播的等效复波数近似解和水声声管中等效复波数的测量、求解方法,通过制作均匀实心结构和含均匀圆柱空腔结构两种试样,分别获取其纵波波数和等效复波数,联合求解反演出橡胶材料的动态力学参数.对某橡胶材料常压和静压下的动态力学参数进行测试,总结出静水压力对橡胶材料动态力学参数的影响规律,对测试误差产生的原因进行讨论分析.对比静水压力下某声学覆盖层的吸声系数测试结果和采用实测橡胶材料参数进行有限元分析的结果,表明该方法具有较高的精度和潜在的应用价值.
 

关键词: 橡胶材料, 动态力学参数, 高静水压力, 水声声管

Abstract:

A method for measurement of the dynamic properties of rubber under high hydrostatic pressure by water-filled acoustic tube was proposed based on the simplified analytical expression of equivalent complex wavenumber for wave propagation in the sample with evenly spaced cylindrical tunnel cavities, as well as measurement and solution of this wavenumber in the water-filled acoustic tube. Two types of samples, named the uniform solid structure and the structure with evenly spaced cylindrical tunnel cavities were made. The longitudinal wavenumber and complex equivalent wavenumber for the samples were  obtained and used to calculate the dynamic properties. A piece of rubber was tested under atmospheric pressure and hydrostatic pressure. The influence of hydrostatic pressure was analyzed and error analysis was performed. The absorption coefficients of one acoustic coating under hydrostatic pressure were tested and compared with the simulation results by the finite element method using the measured dynamic properties, which demonstrates that the method can produce accurate results and is a potential method for testing the dynamic properties of rubber under high hydrostatic pressure.
 

Key words: rubber, dynamic properties, hydrostatic pressure, water-filled acoustic tube

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