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首页> 外文期刊>Optics and Lasers in Engineering >Extension of reflection-mode digital gradient sensing method for visualizing and quantifying transient deformations and damage in solids
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Extension of reflection-mode digital gradient sensing method for visualizing and quantifying transient deformations and damage in solids

机译:反射模式数字梯度传感方法的扩展,用于可视化和量化固体中的瞬态变形和损伤

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摘要

The reflection-mode Digital Gradient Sensing (r-DGS) method is extended to visualize and quantify dynamic deformations in solids due to stress wave propagation and for damage/disbond detection in layered materials due to impact loading. The r-DGS technique employs digital image correlation principles to quantify two orthogonal surface slopes simultaneously in specularly reflective solids. Here, for the first time, r-DGS has been implemented in conjunction with ultrahigh-speed photography to quantitatively map surface slopes during stress wave propagation in a thin plate due to an impact event. The measured surface slopes have also been used to successfully evaluate instantaneous topographic information. The r-DGS method has been subsequently demonstrated to be an effective tool for detecting disbonds in layered structures subjected to impact loading. Baseline experiments in each category have been carried out to demonstrate the methodology. (c) 2015 Elsevier Ltd. All rights reserved.
机译:扩展了反射模式数字梯度传感(r-DGS)方法,以可视化和量化由于应力波传播而引起的固体中的动态变形,以及由于冲击载荷而对层状材料中的损坏/脱粘的检测。 r-DGS技术采用数字图像相关性原理来同时量化镜面反射固体中的两个正交表面斜率。在这里,r-DGS首次与超高速摄影结合使用,以定量映射由于撞击事件在应力波在薄板中传播期间的表面斜率。测得的表面坡度也已用于成功评估瞬时地形信息。 r-DGS方法随后被证明是一种有效的工具,用于检测承受冲击载荷的分层结构中的剥离。已经进行了每个类别的基线实验以证明该方法。 (c)2015 Elsevier Ltd.保留所有权利。

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