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A Validation Approach for Quasistatic Numerical/Experimental Indentation Analysis in Soft Materials Using 3D Digital Image Correlation

机译:基于3D数字图像相关性的软材料准静态数值/实验压痕分析的验证方法

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摘要

A quasistatic indentation numerical analysis in a round section specimen made of soft material has been performed and validated with a full field experimental technique, i.e., Digital Image Correlation 3D. The contact experiment specifically consisted of loading a 25 mm diameter rubber cylinder of up to a 5 mm indentation and then unloading. Experimental strains fields measured at the surface of the specimen during the experiment were compared with those obtained by performing two numerical analyses employing two different hyperplastic material models. The comparison was performed using an Image Decomposition new methodology that makes a direct comparison of full-field data independently of their scale or orientation possible. Numerical results show a good level of agreement with those measured during the experiments. However, since image decomposition allows for the differences to be quantified, it was observed that one of the adopted material models reproduces lower differences compared to experimental results.
机译:已对由软材料制成的圆形截面样品进行了准静态压痕数值分析,并通过全场实验技术(即Digital Image Correlation 3D)进行了验证。接触实验具体包括:装入直径最大为5 mm的25 mm直径的橡胶圆筒,然后卸下。将在实验过程中在样品表面测得的实验应变场与通过使用两种不同的增塑材料模型进行两次数值分析而获得的应变场进行了比较。比较是使用图像分解新方法进行的,该方法可以对全场数据进行直接比较,而不必考虑其比例或方向。数值结果表明与实验期间测得的结果吻合良好。但是,由于图像分解可以量化差异,因此可以观察到,与实验结果相比,采用的一种材料模型再现的差异较小。

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