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Inverse Identification of the High Strain Rate Properties of PMMA

机译:逆识别PMMA的高应变率特性

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Due to its low density and transparency, PMMA is frequently used as a glass substitute in aircraft and automotive components. Polymer windows are expected to resist impact loads and can be subjected to high strain rate loading (>1000 s~(-1)). While the quasi-static behavior of PMMA is well characterized, significantly fewer studies have looked into its high strain rate response. PMMA exhibits rate-dependent elastic and failure behavior, with both the modulus and the yield stress becoming sensitive to strain rate above a threshold of approximately 100 s~(-1). A new experimental technique for quantifying the response of glassy polymers at high strain rates using the virtual fields method is proposed. Samples were subjected to inertial impact tests and images of the sample deformation during the impact was captured using an ultra-high speed camera, recording at 2 Mfps. The full field displacement, strain, and acceleration were input to the virtual fields method to perform an inverse identification of the material parameters.
机译:由于其低密度和透明度,PMMA经常用作飞机和汽车部件的玻璃替代品。预计聚合物窗户将抵抗冲击载荷,并且可以进行高应变率载荷(> 1000 s〜(-1))。虽然PMMA的准静态行为具有很好的特征,但显着较少的研究研究了其高应变率反应。 PMMA表现出速率依赖性的弹性和失效行为,模量和屈服应力变得敏感到高于约100s〜(-1)的阈值。提出了一种用虚拟场方法量化玻璃聚合物在高应变率下的响应的新实验技术。使用超高速摄像头捕获在撞击期间,对样品进行惯性冲击试验和样品变形的图像,以2MFP录制。输入到虚拟字段方法的全场位移,应变和加速,以执行材料参数的反向识别。

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