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An optical method to determine the strain field on micro samples during electrohydraulic forming

机译:一种光学方法,用于在电液形成期间测定微型样品的应变场

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The surface integrity of a component usually has a significant influence on its functional properties.This applies in particular to metallic micro components with sub-millimeter dimensions where little to no core material is present.Since the surface regions of these components can also exhibit changed material properties compared to macroscopic components due to size effects,the material properties cannot be adopted directly from conventional material tests such as tensile tests on macro samples of the same material.The electrohydraulic forming process opens up the possibility of directly investigating the elongation behavior of metallic micro samples in the forming process.However,an in situ strain measurement on the deformed micro sample is required in the mold,for which no measurement method is known so far.For this reason,an in situ measurement approach is presented for detecting the 2D deformation field of the micro sample surface during the electrohydraulic forming process.The approach is based on the optical methods digital speckle photography and digital image correlation.They record the movement of locally characteristic surface patterns in the 0.7 mm wide forming channel through an optical access.By calculating the gradients of the local surface motion,the strain fields on the micro samples are determined.The optical access is achieved by a 10 mm thick sapphire pane,which was tight integrated into the forming die.The 2D strain field measurement of hard sample materials(e.g.bronze)can be performed with digital speckle photography that offers a higher image contrast for optically smooth surfaces,while softer materials such as aluminum tend to get smeared at the pane,so that the captured images are evaluated with the more robust digital image correlation.An assessment of the measurement method on the basis of initial measurement results shows its principle applicability for the material characterization of micro samples.
机译:组件的表面完整性通常对其功能性具有显着的影响。本文尤其适用于金属微量组分,其中亚毫米尺寸没有芯材。这些部件的表面区域也可以表现出改变的材料性质相比,由于尺寸效应而与宏观分量相比,材料特性不能直接从常规材料试验中采用,例如在相同材料的宏观样品上的拉伸试验。电液形成过程开辟了直接研究金属微观的伸长行为的可能性在形成过程中的样品。然而,在模具中需要在变形微样品上的原位应变测量,到目前为止没有已知测量方法。对于这种原因,提出了一种用于检测2D变形的原位测量方法电液形成过程中微样品表面的场。A PPRoach基于光学方法数字散斑摄影和数字图像相关。它们通过光学访问记录0.7mm宽成形通道中局部特征表面图案的运动。根据局部表面运动的梯度,应变场测定微样品。通过10mm厚的蓝宝石窗格实现光学接入,该窗格紧密地集成到成型模具中。可以使用数字斑点摄影进行硬样品(EGBronze)的2D应变场测量光滑表面的更高图像对比度,而诸如铝的更柔软的材料倾向于在窗格中涂抹,从而通过更稳健的数字图像相关评估捕获的图像。在初始测量的基础上评估测量方法的评估结果表明其主要适用于微样品的材料表征。

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