Bednarczyk Iwona, Kuc Dariusz
Faculty of Materials Engineering, Silesian University of Technology, 44-100 Gliwice, Poland.
Materials (Basel). 2022 Mar 9;15(6):2017. doi: 10.3390/ma15062017.
This article presents the influence of the applied extrusion method on the microstructure and mechanical properties of the WE43 magnesium alloy. The materials for tests were ingots made from magnesium alloy, with dimensions of 40 × 90 mm, marked with the symbol WE43. Two extrusion methods were used: the classic one-concurrent extrusion, and the complex one-concurrent extrusion with a reversible die (KoBo). As a result of the application of deformation processes, rods were obtained. The implemented deformation methods made it possible to determine the influence of the deformation process parameters on changes in the structure and properties of the WE43 alloy. In addition, compression tests were performed to determine the values of the yield stress and to analyze changes in the microstructure after plastic deformation. The hot plastic deformation activation energy and the process parameters, for which the course of plastic flow is affected by the presence of twins in the microstructure, were determined for the WE43 alloy. The effects of superplastic flow at 350 °C (250% elongation) and microstructure refinement (d = 1 µm) were demonstrated after applying the KoBo method. The results will be useful in the development of forming technology of selected construction elements, which serve as light substitutes for currently used materials.
本文介绍了所采用的挤压方法对WE43镁合金微观结构和力学性能的影响。测试材料为由镁合金制成的铸锭,尺寸为40×90mm,标记为WE43。使用了两种挤压方法:传统的同向挤压,以及带可逆模具的复合同向挤压(KoBo)。通过施加变形工艺,获得了棒材。所实施的变形方法使得确定变形工艺参数对WE43合金组织和性能变化的影响成为可能。此外,进行了压缩试验以确定屈服应力值,并分析塑性变形后微观结构的变化。确定了WE43合金的热塑性变形激活能以及塑性流动过程受微观结构中孪晶存在影响的工艺参数。应用KoBo方法后,展示了在350°C下的超塑性流动效果(伸长率250%)和微观结构细化(d = 1μm)。这些结果将有助于开发选定建筑元件的成型技术,这些元件可作为当前使用材料的轻质替代品。