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Characterization of the Elastoplastic Response of Low Zn-Cu-Ti Alloy Sheets Using the CPB-06 Criterion

机译:使用CPB-06准则表征低Zn-Cu-Ti合金板的弹塑性响应

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摘要

Unlike other HCP metals such as titanium and magnesium, the behavior of zinc alloys has only been modeled in the literature. For the low Zn-Cu-Ti alloy sheet studied in this work, the anisotropy is clearly seen on the stress-strain curves and Lankford coefficients. These features impose a rigorous characterization and an adequate selection of the constitutive model to obtain an accurate representation of the material behavior in metal forming simulations. To describe the elastoplastic behavior of the alloy, this paper focuses on the material characterization through the application of the advanced Cazacu-Plunket-Barlat 2006 (CPB-06 for short) yield function combined with the well-known Hollomon hardening law. To this end, a two-stage methodology is proposed. Firstly, the material characterization is performed via tensile test measurements on sheet samples cut along the rolling, diagonal and transverse directions in order to fit the parameters involved in the associate CPB-06/Hollomon constitutive model. Secondly, these material parameters are assessed and validated in the simulation of the bulge test using different dies. The results obtained with the CPB-06/Hollomon model show a good agreement with the experimental data reported in the literature. Therefore, it is concluded that this model represents a consistent approach to estimate the behavior of Zn-Cu-Ti sheets under different forming conditions.
机译:与其他HCP金属(例如钛和镁)不同,锌合金的行为仅在文献中进行了建模。对于这项工作中研究的低锌-铜-钛合金薄板,在应力应变曲线和兰克福德系数上可以清楚地看到各向异性。这些特征对本构模型进行了严格的表征和适当的选择,以在金属成形模拟中获得材料行为的精确表示。为了描述合金的弹塑性行为,本文通过结合先进的Cazacu-Plunket-Barlat 2006(简称CPB-06)屈服函数和著名的Hollomon硬化定律,对材料进行表征。为此,提出了一种两阶段方法。首先,通过拉伸测试测量,对沿轧制,对角线和横向切割的片材样品进行材料表征,以适应CPB-06 / Hollomon本构模型的相关参数。其次,这些材料参数在使用不同模具的凸出测试模拟中进行评估和验证。 CPB-06 / Hollomon模型获得的结果与文献报道的实验数据显示出良好的一致性。因此,可以得出结论,该模型代表了一种一致的方法来估计不同成型条件下Zn-Cu-Ti片的行为。

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