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Characterization of the High-Strength Mg–3Nd–0.5Zn Alloy Prepared by Thermomechanical Processing
引用本文:Jií Kubsek,Drahomír Dvorsk,Jozef Vesel,Peter Minrik,Mria Zemkov,Dalibor Vojtěch. Characterization of the High-Strength Mg–3Nd–0.5Zn Alloy Prepared by Thermomechanical Processing[J]. 金属学报(英文版), 2019, 32(3): 321. DOI: 10.1007/s40195-018-0765-x
作者姓名:Jií Kubsek  Drahomír Dvorsk  Jozef Vesel  Peter Minrik  Mria Zemkov  Dalibor Vojtěch
摘    要:Magnesium alloys based on Nd and Zn are promising materials for both aviation industry and medical applications.Superior mechanical properties of these materials can be achieved by thermomechanical processing such as extrusion or rolling and by aging treatment, which can significantly strengthen the alloy. The question remains especially about the connection of texture strength created in the alloys based on the specific conditions of preparation. This work focuses on the Mg–3 Nd–0.5 Zn magnesium alloy prepared by hot extrusion of the as-cast state at two different temperatures combined with heat pre-treatment. Extrusion ratio of 16 and rate of 0.2 mm/s at 350 and 400 °C were selected for material preparation. The structures of prepared materials were studied by scanning electron microscopy and transmission electron microscopy. The effect of microstructure on mechanical properties was evaluated. Obtained results revealed the strong effect of thermal pre-treatment on final microstructure and mechanical properties of extruded materials. The Hall–Petch relation between grain size and tensile yield strength has been suggested in this paper based on the literature review and presented data. The observed behavior strongly supports the fact that the Hall–Petch of extruded Mg–3Nd–0.5 Zn alloys with different texture intensities cannot be clearly estimated and predicted. In addition, Hall–Petch relations presented in literature can be sufficiently obtained only for fraction of the Mg–3Nd–0.5 Zn alloys.

收稿时间:2018-12-13

Characterization of the High-Strength Mg-3Nd-0.5Zn Alloy Prepared by Thermomechanical Processing
Ji$check{r}$í Kubásek,Drahomír Dvorsky,Jozef Vesely,Peter Minárik,Mária Zemková,Dalibor Vojt$check{e}$ch. Characterization of the High-Strength Mg-3Nd-0.5Zn Alloy Prepared by Thermomechanical Processing[J]. Acta Metallurgica Sinica(English Letters), 2019, 32(3): 321. DOI: 10.1007/s40195-018-0765-x
Authors:Ji$check{r}$í Kubásek  Drahomír Dvorsky  Jozef Vesely  Peter Minárik  Mária Zemková  Dalibor Vojt$check{e}$ch
Affiliation:1.Department of Metals and Corrosion Engineering, Faculty of Chemical Technology, University of Chemistry and Technology Prague, Technická 5, 16628 Prague, Czech Republic2 Department of Physics of Materials, Charles University, Ke Karlovu 5, 12116 Prague 2, Czech Republic
Abstract:Magnesium alloys based on Nd and Zn are promising materials for both aviation industry and medical applications. Superior mechanical properties of these materials can be achieved by thermomechanical processing such as extrusion or rolling and by aging treatment, which can significantly strengthen the alloy. The question remains especially about the connection of texture strength created in the alloys based on the specific conditions of preparation. This work focuses on the Mg-3Nd-0.5Zn magnesium alloy prepared by hot extrusion of the as-cast state at two different temperatures combined with heat pre-treatment. Extrusion ratio of 16 and rate of 0.2 mm/s at 350 and 400 °C were selected for material preparation. The structures of prepared materials were studied by scanning electron microscopy and transmission electron microscopy. The effect of microstructure on mechanical properties was evaluated. Obtained results revealed the strong effect of thermal pre-treatment on final microstructure and mechanical properties of extruded materials. The Hall-Petch relation between grain size and tensile yield strength has been suggested in this paper based on the literature review and presented data. The observed behavior strongly supports the fact that the Hall-Petch of extruded Mg-3Nd-0.5Zn alloys with different texture intensities cannot be clearly estimated and predicted. In addition, Hall-Petch relations presented in literature can be sufficiently obtained only for fraction of the Mg-3Nd-0.5Zn alloys.
Keywords:Mg-Nd-Zn alloys  Extrusion  Thermal treatment  Microstructure  Mechanical properties  
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