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Using Digital Image Correlation Measurements for the Inverse Identification of Constitutive Material Parameters applied in Metal Cutting Simulations

机译:使用数字图像相关测量来实现金属切削模拟中应用组成型材料参数的逆识别

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摘要

An inverse identification of material parameters has the potential to increase the quality of Finite Element-simulations in metal cutting. Since basic data for the calculations are measured under the thermomechanical load in a cutting situation, extrapolation errors can be reduced. Difficulties arise from the determination of the mechanical load inside the material during chip formation. Most methods use a chip-root-analysis, which is a post-process procedure. This paper presents a newly developed inverse method, applying optical measurements analyzed with a Digital Image Correlation (DIC) technique. In this way the shear strain rate is determined at cutting speeds and load conditions significant for industrial applications.
机译:材料参数的反向识别具有增加金属切割中有限元模拟的质量。由于在切割情况下在热机械负载下测量了计算的基本数据,因此可以降低外推误差。芯片形成期间材料内部机械载荷的测定产生困难。大多数方法使用芯片根分析,这是一个后处理过程。本文呈现了一种新开发的逆方法,利用数字图像相关(DIC)技术进行分析的光学测量。以这种方式,剪切应变速率在切割速度和负载条件下确定工业应用。

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