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A computational approach to design new tests for viscoplasticity characterization at high strain-rates

机译:一种在高应变速率下设计粘塑性表征新测试的计算方法

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摘要

Rate-dependent behaviour characterization of metals at high strain rate remains challenging mainly because of the strong hypotheses when tests are processed with statically determinate approaches. As a non-standard methodology, Image-Based Inertial Impact (IBII) test has been proposed to take advantage of the dynamic Virtual Fields Method (VFM) which enables the identification of constitutive parameters with strain and acceleration fields. However, most of the test parameters (e.g. projectile velocity, specimen geometry) are not constrained. Therefore, an FE-based approach is addressed to optimize the identification over a wide range of strain and strain-rate, according to two design criteria: (1) the characterized viscoplastic spectra, (2) the identifiability of the parameters. Whereas the first criterion is assessed by processing the FEA simulations, the second is rated extracting material parameters using synthetic images to input the VFM. Finally, uncertainties regarding the identification of material constants are quantified for each IBII test configuration and different camera performances.
机译:在高应变率下,金属的速率相关行为表征仍然具有挑战性,这主要是因为当使用静态确定方法处理测试时,存在很强的假设。作为一种非标准方法,基于图像的惯性冲击 (IBII) 测试被提出来利用动态虚拟场方法 (VFM),该方法能够识别具有应变场和加速度场的本构参数。然而,大多数测试参数(例如弹丸速度、试样几何形状)不受约束。因此,根据两个设计标准,采用基于有限元的方法优化在各种应变和应变速率下的识别:(1)表征的粘塑性光谱,(2)参数的可识别性。第一个标准是通过处理有限元分析模拟来评估的,而第二个标准是使用合成图像输入VFM来提取材料参数。最后,针对每种IBII测试配置和不同的相机性能,量化了有关材料常数识别的不确定性。

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