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EXPERIMENTAL STUDY OF BIAXIAL LOAD-UNLOAD BEHAVIOR OF DP590 STEEL SHEETS

机译:DP590钢板双轴荷载行为的试验研究。

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Biaxial load-unload tests under radial paths in the true stress space were carried out for DP590 steel sheets using specially-designed cruciform specimens. Depending on the specific path, over 15% equivalent logarithmic plastic strain was achieved so that the load-unload behavior was successfully probed at relatively high strain levels. It was found that the stress-strain response at the initial load/unload follows the predicted linearly elastic response very well and that subsequently the slope decays. Following this initial phase, a second linear response is observed, which ultimately leads to the non-linear plastic response. The biaxial non-linear strain recovery components ε_x~(nl) and ε_y~(nl) were measured to be on average approximately 11% of the elastic strains ε_x~e and ε_y~e, respectively. At higher strains, this ratio is approximately 25%, indicating the inaccuracy of springback simulations when a linearly elastic unloading response is assumed. For each load-unload cycle, the dissipated energy density tends to increase with the progression of prestrain. The plastic work contours covering the first quadrant of the stress space were successfully constructed and the directions of the plastic strain rates were then calculated. A good agreement with the experimental facts was found by adopting the anisotropic yield function Yld2000-2D.
机译:使用特殊设计的十字形试样对DP590钢板在真实应力空间中的径向路径下进行了双轴加载/卸载测试。根据特定的路径,可以实现超过15%的对数塑性应变,因此可以在相对较高的应变水平下成功地探测加载/卸载行为。发现在初始加载/卸载时的应力-应变响应很好地遵循了预测的线性弹性响应,并且随后坡度衰减。在此初始阶段之后,观察到第二个线性响应,最终导致非线性塑性响应。经测量,双轴非线性应变恢复分量ε_x〜(nl)和ε_y〜(nl)分别平均平均约为弹性应变ε_x〜e和ε_y〜e的11%。在较高的应变下,该比率约为25%,这表明在假定为线性弹性卸载响应时回弹模拟的准确性。对于每个加载-卸载循环,耗散的能量密度往往会随着预应变的进行而增加。成功地构建了覆盖应力空间第一象限的塑性加工轮廓,然后计算了塑性应变速率的方向。通过采用各向异性屈服函数Yld2000-2D,发现与实验事实非常吻合。

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