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A review of characterisation and parameters identification of materials constitutive and damage models: From normalised direct approach to most advanced inverse problem resolution

机译:材料本构和损伤模型的表征和参数识别综述:从规范化直接方法到最高级的反问题解决方法

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The paper aims at providing an overview of the research activities performed in the two past decades in the field of materials characterisation under dynamic loadings (i.e. from 10(-3) s(-1) to 10(+3) s(-1) for structural crashworthiness and impact applications) and identification of parameters of constitutive behaviour and damage models. The different testing devices to load the material sample on the expected strain rate range are presented and discussed first, including the different experimental measurement techniques applied to analyse the stress-strain curves. From the normalised direct approach, two different numerical approaches, based on inverse problem resolution techniques, are introduced and discussed: the well-known Finite Element Model Updating method and the most advanced one based on the Virtual Fields Method, that enables to take the full advantages of full-field measurement techniques, such as the Digital Image Correlation method, into account. Applications for different materials or structures (including riveted and welded joints) and models, such as viscoplasticity and damage, are given to illustrate these advanced methods. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文旨在概述过去二十年来在动态载荷(即从10(-3)s(-1)到10(+3)s(-1)的材料表征领域中进行的研究活动。用于结构耐撞性和冲击应用),并识别本构行为和损伤模型的参数。首先介绍和讨论了将材料样品加载到预期应变率范围内的不同测试设备,包括用于分析应力-应变曲线的不同实验测量技术。从归一化直接方法中,介绍并讨论了基于逆问题解决技术的两种不同的数值方法:著名的有限元模型更新方法和基于虚拟场方法的最先进的方法,可以充分利用考虑到了全场测量技术(例如数字图像相关方法)的优势。给出了针对不同材料或结构(包括铆接和焊接接头)和模型(例如粘塑性和损伤)的应用程序,以说明这些高级方法。 (C)2017 Elsevier Ltd.保留所有权利。

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