Lim Hyung Jin, Sohn Hoon
Department of Civil and Environmental Engineering, KAIST, Daejeon 34141, Korea.
Materials (Basel). 2017 Feb 28;10(3):248. doi: 10.3390/ma10030248.
It has been shown that nonlinear ultrasonics can be more sensitive to local incipient defects, such as a fatigue crack, than conventional linear ultrasonics. Therefore, there is an increasing interest in utilizing nonlinear ultrasonics for structural health monitoring and nondestructive testing applications. While the conditions, which are the necessary conditions that should be satisfied for the generation of nonlinear harmonic components, are extensively studied for distributed material nonlinearity, little work has been done to understand the necessary conditions at the presence of a localized nonlinear source such as a fatigue crack. In this paper, the necessary conditions of nonlinear ultrasonic modulation generation in a plate-like structure are formulated specifically for a localized nonlinear source. Then, the correctness of the formulated necessary conditions is experimentally verified using ultrasounds obtained from aluminum plates.
研究表明,与传统线性超声相比,非线性超声对局部早期缺陷(如疲劳裂纹)更为敏感。因此,利用非线性超声进行结构健康监测和无损检测应用的兴趣与日俱增。虽然对于分布式材料非线性,广泛研究了产生非线性谐波分量所需满足的必要条件,但对于存在诸如疲劳裂纹等局部非线性源时的必要条件,却鲜有研究。本文专门针对局部非线性源,阐述了板状结构中非线性超声调制产生的必要条件。然后,利用从铝板获得的超声对所阐述的必要条件的正确性进行了实验验证。