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Size effect on the forming limit of sheet metal in micro-scaled plastic deformation considering free surface roughening

机译:考虑自由表面粗糙化的微观塑性变形中金属板形成极限的尺寸影响

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In micro-scaled plastic deformation, the deformation capability of sheet metals is quite different from those in macro-scale. Compared with the conventional sheets, the ratio of free surface roughness to the thickness of thin sheet metal is more obvious. The so-called free surface roughening phenomenon and size effect may affect the micro-scale forming limit curve (μ-FLC) of sheet metal. To explore how the interaction of free surface roughening and size effect affects the μ-FLC of thin sheet metal, the original M-K model was modified by introducing free surface roughening. The continuous geometrical imperfection calculated by the original M-K model was compared with the experimental surface irregularity. In addition, the effect of grain size on the μ-FLC was also analyzed. Through the comparison between the predicted μ-FLCs and the experimental ones, the modified M-K model is proven to be able to model the decrease of μ-FLCs caused by the geometry and grain size effects, which reveals that the modified M-K model is more suitable for the prediction of μ-FLCs by considering the combination of size effect and free surface roughening.
机译:在微缩放的塑性变形中,片金属的变形能力与宏观规模的变形能力完全不同。与传统片材相比,自由表面粗糙度与薄金属厚度的比率更明显。所谓的自由表面粗糙化现象和尺寸效应可能影响金属板的微级成型极限曲线(μ-FLC)。为了探讨自由表面粗糙化和尺寸效应的相互作用如何影响薄板金属的μ-FLC,通过引入自由表面粗糙化来改变原始的M-K模型。将由原始M-K模型计算的连续几何缺陷与实验表面不规则进行比较。此外,还分析了晶粒尺寸对μ-FLC的影响。通过预测的μ-FLC和实验结果之间的比较,经过证明的改进的MK模型能够模拟由几何形状和晶粒尺寸效应引起的μ-FLC的减少,这表明修改的MK模型更适合通过考虑尺寸效应和自由表面粗糙化的组合来预测μ-FLC。

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