Biwa S, Hiraiwa S, Matsumoto E
Department of Energy Conversion Science, Graduate School of Energy Science, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.
Ultrasonics. 2006 Dec 22;44 Suppl 1:e1319-22. doi: 10.1016/j.ultras.2006.05.010. Epub 2006 Jun 2.
The second harmonic generation behavior of a contacting interface has been evaluated experimentally and discussed theoretically in the light of a nonlinear interface model. Two aluminum blocks were mated together to constitute a contact interface and subjected to normal compressive loading. A 5 MHz longitudinal toneburst wave was sent to the interface in the normal direction and the transmitted wave was recorded, from which the fundamental and the second harmonic components were extracted. A nonlinearity parameter was obtained as the ratio of the second harmonic amplitude to the squared fundamental amplitude. From the measured contact pressure dependence of the transmitted fundamental amplitude, the linear and the second-order interfacial stiffness parameters were identified, which enabled the evaluation of the nonlinearity parameter based on the theoretical model. The theoretical contact pressure dependence of the nonlinearity parameter was found to be in good qualitative agreement with the experimental results.
已根据非线性界面模型对接触界面的二次谐波产生行为进行了实验评估和理论探讨。将两个铝块配对在一起以构成一个接触界面,并对其施加法向压缩载荷。向该界面沿法线方向发送一个5MHz的纵向脉冲波,并记录透射波,从中提取基波分量和二次谐波分量。获得了一个非线性参数,其为二次谐波振幅与基波振幅平方之比。根据所测得的透射基波振幅对接触压力的依赖性,确定了线性和二阶界面刚度参数,这使得能够基于理论模型评估非线性参数。发现非线性参数对理论接触压力的依赖性与实验结果在定性上吻合良好。