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Correlation of absorbed impact with calculated strain energy using an instrumented Charpy impact test

机译:使用仪器化的夏比冲击试验将吸收的冲击与计算的应变能相关

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This paper presents the correlation of impact energy obtained from the laboratory test as well as the calculated energy using the power spectrum density (PSD) method. Based on a previous study, the total absorbed energy obtained using the dial/encoder system may be significantly different, depending on the strength and the ductility of test specimen. For this reason, we determined the energy of the experimental system coming from the dial/encoder Charpy impact test using the signal processing approach. Strain gauges are connected between the Charpy impact striker and the high frequency data acquisition system in order to capture the dynamic impact strain response. A specimen of an aluminium alloy of 6061-T6 is used in the experiment, which is designed according to the ASTM E23. For the analysis an obtained signal is converted from the time domain to the frequency domain by means of PSD method and the area under its plot is used to calculate strain energy. The comparison between energy absorbed during the experiment and the strain energy is performed at different velocities and thicknesses. The total energy absorbed using the dial/encoder system can be linked by a polynomial equation with R2 of 99.8%. Thus, the effect of the strain signal pattern and impact duration with different velocities and thicknesses are correlated with energy from PSD. This suggests that velocity and thickness are important parameters to be considered in testing the material and finally this correlation can be used as an alternative.
机译:本文介绍了从实验室测试获得的冲击能量与使用功率谱密度(PSD)方法计算出的能量之间的相关性。根据先前的研究,使用刻度盘/编码器系统获得的总吸收能量可能会明显不同,这取决于试样的强度和延展性。因此,我们使用信号处理方法确定了来自拨盘/编码器夏比冲击测试的实验系统的能量。应变仪连接在夏比冲击锤和高频数据采集系统之间,以捕获动态冲击应变响应。实验中使用了6061-T6铝合金样品,该样品是根据ASTM E23设计的。为了进行分析,将获得的信号通过PSD方法从时域转换为频域,并使用其图下的面积来计算应变能。在实验过程中吸收的能量与应变能之间的比较是在不同的速度和厚度下进行的。使用拨盘/编码器系统吸收的总能量可以通过多项式方程式进行链接,该方程式的R 2 为99.8%。因此,具有不同速度和厚度的应变信号模式和冲击持续时间的影响与PSD的能量相关。这表明速度和厚度是测试材料时要考虑的重要参数,并且最终可以将这种相关性用作替代方法。

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