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Nondestructive evaluation of spall damage evolution under cumulative impacts

机译:累积影响下突出损伤演化的无损评价

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Evolution of spall damage of pure iron under cumulative impacts was evaluated nondestructively with a low frequency scanning acoustic microscope as well as ultrasonic wave velocity, attenuation (amplitude ratio of B2 to B1 echo), backscattering intensity and amplitude spectrum of reflected wave. The spall damage distribution within the target plates were visualized by the C-scan images. When the impact stress is greater than the spall threshold stress, the spall damage increased with an increase in impact stress. In ultrasonic measurement, higher impact stress gives the lower sound velocity and amplitude ratio and the increased backscattering intensity, whereas the significant attenuation in the high frequency component of the reflected wave. These ultrasonic measurement on the spall damage under cumulative impacts shows that the minute cracks once generated have increased by the successive impact of which stress is higher or lower than the previous impact stress. Thus, these ultrasonic methods are useful to evaluate nondestructively the spall damage evolution under cumulative impact.
机译:利用低频扫描声学显微镜和超声波速度,衰减(B2至B1回波的幅度比),对累积冲击下累积撞击下纯铁损伤的演变进行了评估,反射波的反向散射强度和幅度谱的评估。通过C扫描图像可视化靶板内的突口损伤分布。当冲击应力大于截止阈值应力时,突口损伤随着冲击应力的增加而增加。在超声测量中,较高的冲击应力给出了较低的声速和振幅比和增加的反向散射强度,而反射波的高频分量中的显着衰减。在累积撞击下的椎间盘损伤上的这些超声波测量表明,一旦产生的微小裂缝通过连续影响增加,应力高于或低于先前的冲击应力。因此,这些超声方法可用于在累积撞击下非破坏突破损伤演化来评估。

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