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Toward the use of small size bulge tests: Numerical and experimental study at small bulge diameter to sheet thickness ratios

机译:朝着使用小尺寸凸起试验:小凸起直径的数值和实验研究与板厚比率

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摘要

For calibrating sheet metal hardening and anisotmpic constitutive models, the bulge test has proven to be an invaluable tool. In recent studies, the analysis of the test has been considerably improved by using Digital Image Correlation. Despite the progress achieved in the analysis of the measured data, based on membrane hypotheses it is still necessary to use large bulge diameter to sheet thickness ratios of more than 100 in order to ensure the validity of the standard equations. In order to overcome this constraint, a numerical study of a wide range of specimen material behaviors and various bulge geometries is performed. The numerical results obtained are used to draw up new estimates for the bending strain, the radii of curvature and the average bulge stress. The numerical and experimental data show that the inner and the outer radii of curvature do not share the same center. This means that the difference between outer and inner radii of curvature is not equal to the thickness of the apex. The accuracy of the approach presented here is assessed on the basis of numerical simulations and experiments. Numerical simulations involve six different types of Swift and Voce behavior. Experimental validation is performed from original bending and curvature measurements on aluminum and steel bulges. Lastly, a hardening law identification algorithm is presented and compared with experimental results obtained for bulge diameters as small as 50 mm and bulge size ratios ranging from 42 to 150.
机译:对于校准板材硬化和各向异性本构模型,胀形试验已被证明是一个非常宝贵的工具。在最近的研究中,通过使用数字图像相关技术,对测试的分析有了很大的改进。尽管在测量数据分析方面取得了进展,但基于膜假设,仍有必要使用大于100的大凸出直径与板厚比,以确保标准方程式的有效性。为了克服这一限制,对各种试样材料行为和各种凸起几何形状进行了数值研究。获得的数值结果用于对弯曲应变、曲率半径和平均胀形应力进行新的估计。数值和实验数据表明,内曲率半径和外曲率半径不在同一中心。这意味着内外曲率半径之间的差异不等于顶点的厚度。在数值模拟和实验的基础上,对本文提出的方法的精度进行了评估。数值模拟涉及六种不同类型的Swift和Voce行为。通过对铝和钢凸起的原始弯曲和曲率测量进行实验验证。最后,提出了一种硬化规律识别算法,并将其与实验结果进行了比较,实验结果适用于直径小于50 mm、尺寸比介于42到150之间的鼓包。

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