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Impact Response for Sensor-less Speckle-less Elastic and Viscoelastic Material Properties of Flexible Polymer Composites

机译:柔性聚合物复合材料的无传感器无斑点弹性和粘弹性材料特性的冲击响应

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Measuring the global dynamic response without sensors of flexible polymer composite can be achieved with only high-speed camera images. We apply a non- contact, speckle-less, custom Matlab script to isolate composite specimens filmed under uniaxial low velocity impacts via Vision Research Phantom UHS V2640 and measure the displacement time history. A custom fitting curve is applied to this data and two derivatives with respect to time are performed to provide the acceleration time history. Since the impactor mass is known, we can solve for the contact force without sensors. Comparison with a dynamic load sensor and using our previous efforts with extracting the hyper-elastic and visco-elastic material constants from a single impact test, we compare the dynamic impact response of the flexible polymer composites; the non-contact, speckle-less method matches the force response within 1% peak value and 2% in pulse duration and the overall finite element validation model also matches within a small error for magnitude and duration.
机译:在没有柔性聚合物复合材料传感器的情况下,仅通过高速摄像机图像即可测量全局动态响应。我们应用非接触,无斑点的自定义Matlab脚本,通过Vision Research Phantom UHS V2640隔离在单轴低速冲击下拍摄的复合标本,并测量位移时间历史。将自定义拟合曲线应用于此数据,并执行两个关于时间的导数以提供加速时间历史。由于冲击器的质量是已知的,因此无需传感器即可解决接触力。与动态载荷传感器进行比较,并使用我们先前的努力从一次冲击试验中提取出超弹性和粘弹性材料常数,我们比较了柔性聚合物复合材料的动态冲击响应。非接触,无斑点的方法使力响应在1%的峰值内和2%的脉冲持续时间内相匹配,并且整个有限元验证模型还在幅度和持续时间的较小误差范围内相匹配。

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