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基于低频准相速度匹配的非线性兰姆波疲劳损伤评估

Fatigue Damage Evaluation Using Nonlinear Lamb Waves with Quasi Phase-Velocity Matching at Low Frequency.

作者信息

Zhu Wujun, Xiang Yanxun, Liu Chang-Jun, Deng Mingxi, Ma Congyun, Xuan Fu-Zhen

机构信息

Key Laboratory of Pressure Systems and Safety of MOE, School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai 200237, China.

College of Aerospace Engineering, Chongqing University, Chongqing 400044, China.

出版信息

Materials (Basel). 2018 Oct 9;11(10):1920. doi: 10.3390/ma11101920.

Abstract

Due to the dispersive and multimode natures, only nonlinear Lamb waves with exact phase-velocity matching were generally used in previous studies to evaluate the evenly distributed microstructural evolution in the incipient stage of material degradation, because of the cumulative generation of second harmonics, which was also found within a significant propagation distance for mode pair S0-s0 with quasi phase-velocity matching at low frequency. To explore the feasibility of fatigue damage evaluation by using this mode pair and fully utilize its unique merits, the cumulative second harmonic analysis was performed on aluminum alloy specimens with various material damage produced by the continuous low cycle fatigue tests. Similar to mode pair S1-s2 with exact phase-velocity matching, a mountain shape curve between the normalized acoustic nonlinearity parameter and the fatigue life was also achieved with the peak point at about 0.65 fatigue life for mode pair S0-s0, even though a relatively higher sensitivity to fatigue damage was observed for mode pair S1-s2. The excited frequency selection was further analyzed in a certain frequency range, where the quasi phase-velocity matching condition was satisfied for mode pair S0-s0 owing to the less dispersive property. Results show that the fatigue damage can be effectively detected using the mode pair S0-s0, and a relatively lower excited frequency was preferred due to its higher sensitivity to microstructural evolution.

摘要

由于其色散和多模特性,在先前的研究中,通常仅使用具有精确相速度匹配的非线性兰姆波来评估材料降解初期均匀分布的微观结构演变,这是因为二次谐波的累积产生,在低频下具有准相速度匹配的模式对S0 - s0在相当长的传播距离内也能观察到这种现象。为了探索使用该模式对进行疲劳损伤评估的可行性并充分利用其独特优点,对通过连续低周疲劳试验产生各种材料损伤的铝合金试样进行了累积二次谐波分析。与具有精确相速度匹配的模式对S1 - s2类似,对于模式对S0 - s0,归一化声学非线性参数与疲劳寿命之间也得到了一条山形曲线,其峰值点在约0.65疲劳寿命处,尽管模式对S1 - s2对疲劳损伤的敏感性相对较高。在一定频率范围内进一步分析了激励频率的选择,在该频率范围内,由于模式对S0 - s0的色散特性较小,满足准相速度匹配条件。结果表明,使用模式对S0 - s0可以有效地检测疲劳损伤,并且由于其对微观结构演变具有较高的敏感性,较低的激励频率更为可取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/613c/6213901/640d521a7849/materials-11-01920-g001.jpg

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