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Use of simulated experiments for material characterization of brittle materials subjected to high strain rate dynamic tension

机译:使用模拟实验对承受高应变率动态张力的脆性材料进行材料表征

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摘要

Rapid progress in ultra-high-speed imaging has allowed material properties to be studied at high strain rates by applying full-field measurements and inverse identification methods. Nevertheless, the sensitivity of these techniques still requires a better understanding, since various extrinsic factors present during an actual experiment make it difficult to separate different sources of errors that can significantly affect the quality of the identified results. This study presents a methodology using simulated experiments to investigate the accuracy of the so-called spalling technique (used to study tensile properties of concrete subjected to high strain rates) by numerically simulating the entire identification process. The experimental technique uses the virtual fields method and the grid method. The methodology consists of reproducing the recording process of an ultra-high-speed camera by generating sequences of synthetically deformed images of a sample surface, which are then analysed using the standard tools. The investigation of the uncertainty of the identified parameters, such as Young's modulus along with the stress–strain constitutive response, is addressed by introducing the most significant user-dependent parameters (i.e. acquisition speed, camera dynamic range, grid sampling, blurring), proving that the used technique can be an effective tool for error investigation.This article is part of the themed issue ‘Experimental testing and modelling of brittle materials at high strain rates’.
机译:超高速成像技术的飞速发展使得可以通过应用全场测量和逆识别方法在高应变速率下研究材料性能。尽管如此,由于实际实验中存在的各种外部因素使得难以区分会严重影响所鉴定结果质量的不同误差源,因此仍然需要更好地理解这些技术的敏感性。这项研究提出了一种使用模拟实验的方法,通过数值模拟整个识别过程来研究所谓的剥落技术(用于研究承受高应变率的混凝土的拉伸性能)的准确性。实验技术使用虚拟场法和网格法。该方法包括通过生成样品表面的合成变形图像序列来再现超高速相机的记录过程,然后使用标准工具对其进行分析。通过引入最重要的用户相关参数(例如,采集速度,摄像机动态范围,网格采样,模糊),对确定的参数(例如杨氏模量以及应力-应变本构响应)的不确定性进行调查,证明本文所涉及的主题是“高应变率的脆性材料的实验测试和建模”。

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