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Full-field strain measurement and identification of composites moduli at high strain rate with the Virtual Fields Method

机译:虚拟场法全场应变测量和高应变率复合材料模量识别

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摘要

The present paper deals with full-field strain measurement on glass/epoxy composite tensile specimens submitted to high strain rate loading through a split Hopkinson pressure bar (SHPB) device and with the identification of their mechanical properties. First, the adopted methodology is presented: the device, including an Ultra-High Speed camera, and the experimental procedure to obtain relevant displacement maps are described. The different full-field results including displacement, strain and acceleration maps for two mechanical tests are then addressed. The last part of the paper deals with an original procedure to identify stiffnesses on this dynamic case only using the actual strain and acceleration maps (without the applied force) by using the Virtual Fields Method. The results provide very promising values of Young’s modulus and Poisson’s ratio on a quasi-isotropic glass-epoxy laminate. The load reconstructed from the moduli and strains compares favourably with that from the readings.
机译:本文涉及玻璃/环氧树脂复合拉伸试样的全场应变测量,该试样通过分体式霍普金森压力棒(SHPB)装置承受高应变速率载荷,并确定其力学性能。首先,介绍了所采用的方法:描述了包括超高速摄像头的设备,并描述了获得相关位移图的实验步骤。然后讨论了两个机械测试的不同全场结果,包括位移,应变和加速度图。本文的最后一部分介绍了一种原始过程,该过程仅通过使用虚拟场方法使用实际应变和加速度图(不施加作用力)来确定此动态情况下的刚度。结果为准各向同性玻璃环氧树脂层压板的杨氏模量和泊松比值提供了非常有希望的值。从模量和应变重建的负载与从读数中得到的负载相比具有优势。

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