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Development of extrusion technology for magnesium alloy ZE20

机译:镁合金ZE20挤出技术的研制

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The development of extrusion technology for a new magnesium alloy ZE20 (2.4 %wt. Zn, 0.2 %wt. Ce) requires evaluation of a model for the alloy's deformation behavior. In this study, compression tests have been carried out for a wide range of temperatures (350-425 °C) and strain rates (0.01-10.0 s~(-1)) corresponding to a wide range of extrusion parameters. An inverse analysis was applied to produce accurate true stress-strain data. A Johnson-Cook type flow stress model was selected and flow curves for a wide range of processing conditions have been developed. Friction has a significant influence on thermomechanical process parameters and increases deformation temperature. A comparison with compression test results was performed. This metallurgical knowledge was then applied together with the calibrated ZE20 material model to the design of an industrial direct extrusion process of a customized hollow beam. Both the indirect and direct extrusion processes were designed, numerically simulated, and carried out for development of new numerical DEFORM-3D~(TM) model. It has been demonstrated that the numerical model accurately predicted high-strain plastic flow stress values as compared with experiments for the new alloy as well as strain, strain rate, and temperature values within the formed extrudate.
机译:新型镁合金ZE20挤出技术的发展(2.4%wt。Zn,0.2%wt。Ce)需要评估合金的变形行为的模型。在该研究中,对应于各种挤出参数的宽范围的温度(350-425℃)和应变率(0.01-10.0s〜(-1))进行压缩试验。应用逆分析以产生准确的真实应力 - 应变数据。选择了Johnson-Cook型流量应力模型,并开发了各种加工条件的流动曲线。摩擦对热机械工艺参数产生了显着影响,并增加了变形温度。进行了与压缩测试结果的比较。然后将该冶金知识与校准的ZE20材料模型一起应用于定制中空梁的工业直接挤出过程的设计。设计,数值模拟,进行间接和直接挤出工艺,用于开发新的数值变形-3D〜(TM)模型。已经证明,与新合金的实验相比,数值模型准确地预测了高应变塑性流量应力值,以及形成的挤出物中的应变,应变率和温度值。

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