论文标题

通过轮廓分析进行应变测量

Strain measurement by contour analysis

论文作者

Ganzenmüller, Georg C., Jakkula, Puneeth, Hiermaier, Stefan

论文摘要

背景:由于颈部的三轴应力状态的存在,从单轴材料测试中测定延性金属的屈服应力曲线是复杂的。需要直接解决此问题的直接解决方案。目的:这项工作为特定于轴对称标本的此问题提供了一个简单的解决方案。在不采用反向分析方法的情况下计算出等效的单轴真实应变和对三轴性效应校正的真实应力。方法:提出了计算机程序,该程序从背光配置中获得的拉伸测试中获取阴影图像。单个摄像头足够了,因为不需要立体效果。标本的轮廓是数字提取的,并根据轮廓更改计算应变。同时,使用新型的曲率拟合算法计算应力三轴性。结果:该方法是准确的,因为与从有限元仿真获得的制造溶液进行了比较。在不同水平的应力三轴性下,应用于303个不锈钢样品表明,等效的单轴真实应力 - 真正的应变关系被准确恢复。结论:这里提出的计算机程序以直接的方式解决了长期的挑战。预计它将是实验应变分析的有用工具。

Background: The determination of yield stress curves for ductile metals from uniaxial material tests is complicated by the presence of tri-axial stress states due to necking. A need exists for a straightforward solution to this problem. Objective: This work presents a simple solution for this problem specific to axis-symmetric specimens. Equivalent uniaxial true strain and true stress, corrected for triaxiality effects, are calculated without resorting to inverse analysis methods. Methods: A computer program is presented which takes shadow images from tensile tests, obtained in a backlight configuration. A single camera is sufficient as no stereoscopic effects need to be addressed. The specimen's contours are digitally extracted, and strain is calculated from the contour change. At the same time, stress triaxiality is computed using a novel curvature fitting algorithm. Results: The method is accurate as comparison with manufactured solutions obtained from Finite Element simulations show. Application to 303 stainless steel specimens at different levels of stress triaxiality show that equivalent uniaxial true stress -- true strain relations are accurately recovered. Conclusions: The here presented computer program solves a long-standing challenge in a straightforward manner. It is expected to be a useful tool for experimental strain analysis.

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