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Experimental Investigation of the Acoustic Nonlinear Behavior in Granular Polymer Bonded Explosives with Progressive Fatigue Damage

机译:渐进疲劳损伤的粒状聚合物粘结炸药声非线性行为的实验研究

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The measurement of acoustic nonlinear response is known as a promising technique to characterize material micro-damages. In this paper, nonlinear ultrasonic approach is used to characterize the evolution of fatigue induced micro-cracks in polymer bonded explosives. The variations of acoustic nonlinearity with respect to fatigue cycles in the specimens are obtained in this investigation. The present results show a significant increase of acoustic nonlinearity with respect to fatigue cycles. The experimental observation of the correlation between the acoustic nonlinearity and fatigue cycles in carbon/epoxy laminates, verifies that an acoustic nonlinear response can be used to evaluate the progressive fatigue damage in the granular polymer bonded explosives. The sensitivity comparison of nonlinear and linear parameters of ultrasonic waves in the specimens shows that nonlinear acoustic parameters are more promising indicators to fatigue induced micro-damage than linear ones. The feasibility study of the micro-damage assessment of polymer bonded explosives by nonlinear ultrasonic technique in this work can be applied to damage identification, material degradation monitoring, and lifetime prediction of the explosive parts.
机译:声学非线性响应的测量是一种表征材料微损伤的有前途的技术。在本文中,非线性超声方法用于表征聚合物粘结炸药中疲劳引起的微裂纹的演化。在这项研究中获得了相对于疲劳周期的声学非线性的变化。目前的结果表明,相对于疲劳周期,声学非线性显着增加。对碳/环氧树脂层压板中的声学非线性与疲劳周期之间的相关性的实验观察证明,声学非线性响应可用于评估粒状聚合物粘结炸药中的渐进性疲劳损伤。标本中超声波非线性和线性参数的灵敏度比较表明,非线性声学参数比线性声学参数更能指示疲劳引起的微损伤。这项工作中通过非线性超声技术对聚合物粘结炸药进行微损伤评估的可行性研究可用于损伤识别,材料降解监测以及炸药部件的寿命预测。

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