互调
非线性共振
非线性系统
谐波
共振(粒子物理)
非线性声学
声学
材料科学
超声波传感器
传感器
声共振
核磁共振
物理
计算物理学
原子物理学
光电子学
放大器
CMOS芯片
电压
量子力学
作者
Francesco Ciampa,Gennaro Scarselli,Michele Meo
摘要
Recent nonlinear elastic wave spectroscopy experiments have shown that the nonlinear ultrasonic response of damaged composite materials can be enhanced by higher vibrations at the local damage resonance. In this paper, the mathematical formulation for the generation of nonlinear wave effects associated with continuous periodic excitation and the concept of local defect resonance is provided. Under the assumption of both quadratic and cubic approximation, the existence of higher harmonics of the excitation frequency, superharmonics of the damage resonance frequency and nonlinear wave effects, here named as nonlinear damage resonance intermodulation, which correspond to the nonlinear intermodulation between the driving and the damage resonance frequencies, is proved. All these nonlinear elastic effects are caused by the interaction of propagating ultrasonic waves with the local damage resonance and can be measured at locations different from the material defect one. The proposed analytical model is confirmed and validated through experimental transducer-based measurements of the steady-state nonlinear resonance response on a damaged composite sample. These results will provide opportunities for early detection and imaging of material flaws.
科研通智能强力驱动
Strongly Powered by AbleSci AI