Improved Nonlinear Ultrasound Sensing based on 3D Printing Phonon Crystals

Wenkang Li, Hailin Cao, Liuyang Zhang, Xuefeng Chen
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引用次数: 2

Abstract

Nonlinear ultrasound is widely popularized by its high sensitivity to the micro-cracks and material damage at the early stages by sensing the second harmonic. However, the inherent nonlinear characteristics generated by equipment is the main bottleneck for making full use of nonlinear ultrasound. Here we adopt the phonon crystals plate as mechanical filter to eliminate the influence of the inherent nonlinear high harmonic. The metamaterial unit cell contains the PLA mass block and connective layer that can be fabricated by 3D printing. A strong resonance effect occurs between the mass block and Lamb waves and a stop band is opened due to the local resonance mechanism. On the contrary, the connective layer is used to make the array into single unit. Dispersion and transmission curves are calculated to analyze the bandgap theoretically. The experiments on the aluminum plate are carried out to verify the bandgap transmission and the elimination of inherent nonlinear high harmonic influence. The results show that phonon crystals can effectively suppress the influence of the inherent nonlinear harmonics and have great potential in simple, automatable, and accurate nonlinear ultrasound structural health monitoring and nondestructive testing applications.
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基于3D打印声子晶体的改进非线性超声传感
非线性超声通过对二次谐波的感知,在早期对微裂纹和材料损伤具有较高的灵敏度,因此得到了广泛的应用。然而,设备固有的非线性特性是制约非线性超声充分利用的主要瓶颈。这里我们采用声子晶体板作为机械滤波器来消除固有的非线性高谐波的影响。超材料单元胞包含PLA质量块和可通过3D打印制造的连接层。质量块体与兰姆波之间产生强烈的共振效应,并由于局部共振机制打开了一个止动带。相反,连接层用于使阵列成为单个单元。计算色散曲线和透射曲线,从理论上分析带隙。在铝板上进行了实验,验证了带隙传输和消除了固有的非线性高谐波影响。结果表明,声子晶体可以有效地抑制固有非线性谐波的影响,在简单、自动化、精确的非线性超声结构健康监测和无损检测中具有很大的应用潜力。
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