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首页> 外文期刊>International journal of mechanics and materials in design >An Iterative Procedure For Determining Effective Stress-strain Curves Of Sheet Metals
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An Iterative Procedure For Determining Effective Stress-strain Curves Of Sheet Metals

机译:确定钣金有效应力-应变曲线的迭代程序

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An iterative correction procedure using 3D finite element analysis (FEA) was carried out to determine more accurately the effective true stress-true strain curves of aluminum, copper, steel, and titanium sheet metals with various gage section geometries up to very large strains just prior to the final tearing fracture. Based on the local surface strain mapping measurements within the diffuse and localized necking region of a rectangular cross-section tension coupon in uniaxial tension using digital image correlation (DIC), both average axial true strain and the average axial stress without correction of the triaxiality of the stress state within the neck have been obtained experimentally. The measured stress-strain curve was then used as an initial guess of the effective true stress-strain curve in the finite element analysis. The input effective true stress-strain curve was corrected iteratively after each analysis session until the difference between the experimentally measured and FE-computed average axial true stress-true strain curves inside a neck becomes acceptably small. As each test coupon was analyzed by a full-scale finite element model and no specific analytical model of strain-hardening was assumed, the method used in this study is shown to be rather general and can be applied to sheet metals with various strain hardening behaviors and tension coupon geometries.
机译:进行了使用3D有限元分析(FEA)的迭代校正程序,以更准确地确定具有不同应变计截面几何形状的铝,铜,钢和钛金属薄板的有效真实应力-真实应变曲线,直到最近才产生非常大的应变到最后的撕裂骨折。根据使用数字图像相关性(DIC)在单轴拉伸中矩形横截面拉伸试样的扩散和局部颈缩区域内的局部表面应变映射测量,平均轴向真实应变和平均轴向应力均无需校正三轴弯曲度。颈部内的应力状态已通过实验获得。然后将测得的应力-应变曲线用作有限元分析中有效真实应力-应变曲线的初始猜测。在每次分析之后,对输入的有效真实应力-应变曲线进行迭代校正,直到实验测量值与有限元计算出的颈部内部平均轴向真实应力-真实应变曲线之间的差异变得可以接受为止。由于每个试件都是通过全尺寸有限元模型进行分析的,并且没有假设特定的应变硬化分析模型,因此该研究中使用的方法显示出相当通用的方法,可以应用于具有各种应变硬化行为的金属板和张力试样的几何形状。

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