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An objective meta-modeling approach for indentation-based material characterization

机译:基于缩进的材料表征的客观元建模方法

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摘要

Over the last decade, indentation-based material characterization has shifted away from contact zone measurements for identifying the work hardening properties, and has begun to focus on inverse analysis using an experimental and simulated loading-unloading curve instead. Finite element modeling of the indenter-specimen system is a complex task and the solution to the inverse identification problem using the force-displacement curve is not necessarily unique. Also, the precise measurement of the displacement of the indenter tip requires the determination of the indenter frame compliance and indenter tip deformation. In this paper, we revisit the indentation imprint shape, using a novel approach involving image comparison by manifold learning, and show that it is able to outperform the conventional approach for a variety of cases. We illustrate our protocol using a spherical indenter on specimens of three different materials: AISI1095 steel and two aluminum alloys EN AW-2017F and EN AW-5754F. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在过去的十年中,基于压痕的材料表征已经从接触区测量转移到用于识别加工硬化性能,并开始专注于使用实验和模拟的加载-卸载曲线进行逆分析。压头-试样系统的有限元建模是一项复杂的任务,使用力-位移曲线来解决逆识别问题的方法不一定是唯一的。同样,精确测量压头尖端的位移需要确定压头框架的柔度和压头尖端的变形。在本文中,我们使用一种涉及通过流形学习进行图像比较的新颖方法来重新研究压痕压印形状,并表明它能够在各种情况下优于传统方法。我们使用球形压头在三种不同材料的样品上说明了我们的协议:AISI1095钢和两种铝合金EN AW-2017F和EN AW-5754F。 (C)2017 Elsevier Ltd.保留所有权利。

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