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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Comparative study of the nonlinear behavior of fatigued and intact samples of metallic alloys
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Comparative study of the nonlinear behavior of fatigued and intact samples of metallic alloys

机译:金属合金疲劳试样和完整试样非线性行为的比较研究

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摘要

A method and an experimental setup to study the nonlinear behavior of fatigued and intact metal samples under high-frequency stresses has been developed and tested. The method is based on the measurement of the vibration velocity of stepped bar samples flexurally and/or extensionally vibrating at resonance. The vibration velocity signal, picked up by a laser vibrometer, is automatically acquired and analyzed by classical fast Fourier transform (FFT) methods for different excitation levels. The experimental setup was designed in such a way that it can be used for fatiguing and for testing the material samples. The tests have been done with samples of titanium and aluminium alloys. Results before and after fatigue crack nucleation are compared. A strongly nonlinear, nonclassical behavior is observed for fatigued samples. Theoretical interpretations of the different nonlinear behavior of standing waves in fatigued and intact samples are explored, and the results of the models are qualitatively compared with the experimental data. The models' approach provides an interpretation about the origin of nonlinearity in fatigued samples.
机译:已经开发并测试了一种方法和实验装置,用于研究疲劳和完整金属样品在高频应力下的非线性行为。该方法基于阶梯状条形样品在共振时弯曲和/或延伸振动的振动速度的测量。由激光测振仪采集的振动速度信号会通过经典的快速傅立叶变换(FFT)方法自动获取并分析不同激发水平的信号。实验装置的设计方式使其可用于疲劳和测试材料样品。测试已经对钛和铝合金样品进行。比较疲劳裂纹成核前后的结果。对于疲劳样品,观察到强烈的非线性,非经典行为。探索了疲劳和完整样品中驻波不同非线性行为的理论解释,并将模型的结果与实验数据进行了定性比较。该模型的方法提供了关于疲劳样本中非线性源的解释。

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