Improvement of strength and ductility of an EZ magnesium alloy by applying two different ECAP concepts to processable initial states

被引:31
作者
Bryla, Krzysztof [1 ,2 ]
Krystian, Maciej [2 ]
Horky, Jelena [2 ]
Mingler, Bernhard [2 ]
Mroczka, Krzysztof [1 ]
Kurtyka, Pawel [1 ]
Litynska-Dobrzynska, Lidia [3 ]
机构
[1] Pedag Univ Cracow, Fac Math Phys & Tech Sci, Inst Technol, Ul Podchorazych 2, PL-30084 Krakow, Poland
[2] AIT Austrian Inst Technol GmbH, Ctr Hlth & Bioresources Biomed Syst, Viktor Kaplan Str 2, A-2700 Wr Neustadt, Austria
[3] Polish Acad Sci, Inst Met & Mat Sci, Reymonta 25, PL-30059 Krakow, Poland
来源
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING | 2018年 / 737卷
关键词
Magnesium alloys; Equal channel angular pressing; Ultrafine-grained materials; HIGH-PRESSURE TORSION; MECHANICAL-PROPERTIES; GRAIN-SIZE; MICROSTRUCTURE; DEFORMATION; REFINEMENT; PRINCIPLES; BEHAVIOR;
D O I
10.1016/j.msea.2018.09.070
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The commercial magnesium alloy EZ33A was processed by Equal Channel Angular Pressing (ECAP). Two different tools were used: a conventional one with two channels and one intersection (90 degrees), and a so-called double ECAP (D-ECAP) tool with two intersections (90 degrees and 120 degrees). Four passes were conducted at temperatures subsequently lowered from 350 degrees C down to 240 degrees C using route Bc. The as-cast, pre-deformed material and both ECAP conditions were investigated. The microstructure was revealed by means of optical microscopy, scanning and transmission electron microscopy (SEM, TEM), and X-ray diffraction. Mechanical properties were studied by Vickers hardness measurements as well as by compressive and tensile tests. The microstructure investigations show a significant grain refinement as well as fragmentation and redistribution of the hard intermetallic (Mg,Zn)(12) RE phase by ECAP. This effect is even more pronounced in the material processed by D-ECAP where this phase is two times finer compared to the size after conventional ECAP. Additionally, small Zn-Zr particles of a few nanometers size within grains or subgrains were observed. Microstructure changes evoked by the ECAP processing significantly affect the mechanical properties. This is especially the case after 4 passes in the D-ECAP tool where hardness (90 HV2) is almost 70% higher than in the as-cast condition (54 HV2) and the tensile yield strength is enhanced by nearly 300% (82 MPa up to 327 MPa). Hence, the D-ECAP tool is more efficient than the conventional one in improving mechanical properties.
引用
收藏
页码:318 / 327
页数:10
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