Clipboard, Search History, and several other advanced features are temporarily unavailable. doi: 10.1016/j.matdes.2014.04.049. Materials. Please enable it to take advantage of the complete set of features! Materials. 2013;559:765–772. 2020 Feb 22;13(4):985. doi: 10.3390/ma13040985. Other alloying elements have been recently used, as well, … Scr. Mg-Alloys for Forging Applications-A Review. The average grain size, yield strength, tensile strength, and elongation of the extruded sheet prepared by low-speed extrusion at 350 °C were ~2.7 μm, ~226 MPa, ~353 MPa, and ~16.7%, respectively. The statements, opinions and data contained in the journal, © 1996-2020 MDPI (Basel, Switzerland) unless otherwise stated. Magnesium alloys are mixtures of magnesium with other metals (called an alloy), often aluminium, zinc, manganese, silicon, copper, rare earths and zirconium. 2020; 10(8):644. Find support for a specific problem on the support section of our website. Luo D, Pan Y, Wang HY, Zhao LG, Liu GJ, Liu Y, Jiang QC. -, Zhu S.Q., Yan H.G., Chen J.H., Wu Y.Z., Su B., Du Y.G., Liao X.Z. See further details. Critical Rolling Process Parameters for Dynamic Recrystallization Behavior of AZ31 Magnesium Alloy Sheets. -, Kahana E., Ben-Artzy A., Sadot O., Shneck R.Z. The grain refinement effect and mechanical properties of the extruded sheets produced in this work were obviously superior to those of magnesium alloys prepared using traditional extrusion or rolling methods reported in other related studies. -, Asgari H., Szpunar J.A., Odeshi A.G. Texture evolution and dynamic mechanical behavior of cast AZ magnesium alloy under high strain rate compressive loading. Crystals 10, no. The AZ31 magnesium alloy sheet prepared by low-speed extrusion at 350 °C exhibited the finest grain size and the best mechanical properties. Feasibility of high strain-rate rolling of a magnesium alloy across a wide temperature range. Please note that many of the page functionalities won't work as expected without javascript enabled. Hardness - Brinell. 51501061/National Natural Science Foundation of China, 2019JJ30009 and 2018JJ4030/Natural Science Foundation of Hunan Province, 18A423/The Key Scientific Research Fund of Hunan Provincial Education Department of China, 201811528018/The National students' platform for innovation and entrepreneurship training program, Papenberg N.P., Gneiger S., Weißensteiner I., Uggowitzer P.J., Pogatscher S. Mg-alloys for forging applications-a review. Rolling texture is the main texture in the high strain rate biaxial forged (HSRBFed) alloys, the intensity of which decreases with the accumulated strain. Multiple requests from the same IP address are counted as one view. Sci. Author to whom correspondence should be addressed. Materials (Basel). 2014 Jul 18;15(4):044803. doi: 10.1088/1468-6996/15/4/044803. We use cookies on our website to ensure you get the best experience. These properties indicate the excellent mechanical properties of the extruded sheets prepared by low-speed extrusion.  |  Abazari S, Shamsipur A, Bakhsheshi-Rad HR, Ismail AF, Sharif S, Razzaghi M, Ramakrishna S, Berto F. Materials (Basel). NIH Crystals 2020, 10, 644. Abstract. You seem to have javascript disabled. -. As the accumulated strain is ΣΔε = 0.88, the HSRMBFed alloy displays an outstanding combination of mechanical properties, the ultimate tensile strength (UTS) is 331.2 MPa and the elongation is 25.1%. Xu H, Zhou Y, Zou YJ, Liu M, Guo ZP, Ren SY, Yan RH, Cheng XM. Results indicate that the low-speed extrusion obviously improved the microstructure of magnesium alloys. MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. The average grain size, yield strength, tensile strength, and elongation of the extruded sheet prepared by low-speed extrusion at 350 °C were ~2.7 μm, ~226 MPa, ~353 MPa, and ~16.7%, respectively. Zhang, W.; Zhang, H.; Wang, L.; Fan, J.; Li, X.; Zhu, L.; Chen, S.; Roven, H.J. This site needs JavaScript to work properly. Mater. Details Chemical Data, Mechanical Properties and Specifications for Magnesium Alloy AZ31B-H24. Strengthening Effects of Zn Addition on an Ultrahigh Ductility Mg-Gd-Zr Magnesium Alloy. It was found that the microstructure evolution can be divided into two steps during HSRBF. The AZ31 magnesium alloy sheet prepared by low-speed extrusion at 350 °C exhibited the finest grain size and the best mechanical properties. 2012;67:404–407. 2020;13:985 doi: 10.3390/ma13040985. Magnesium AZ31B alloy is available in different forms such as plate, sheet, and bar. Cast alloysare basically made by pouring the molten liquid metal into a mould, within which it solidifies into the required shape. Wang W, Miao Q, Chen X, Yu Y, Zhang W, Chen W, Wang E. Materials (Basel). It is widely available when compared to other m… Find NCBI SARS-CoV-2 literature, sequence, and clinical content: https://www.ncbi.nlm.nih.gov/sars-cov-2/. Please let us know what you think of our products and services. (0002), (10 1 ¯ 0) and (10 1 ¯ 1) pole figures of…, Schematic drawings of the high strain rate biaxial forging (HSRBF) process ( a…, Microstructure of HSRBFed AZ31 alloys with different accumulated strains ( a ) 0.22,…, Electron back-scatter diffraction (EBSD) results…, Electron back-scatter diffraction (EBSD) results of AZ31 alloys HSRBFed to different accumulated strains…, Results of AZ31 alloys HSRBFed to different accumulated strains ( a ) and…, (0002) pole figure of AZ31 alloys HSRBFed to different accumulated strains ( a…. Sci. Crystals. Zhang W, Zhang H, Wang L, Fan J, Li X, Zhu L, Chen S, Roven HJ, Zhang S. Microstructure Evolution and Mechanical Properties of AZ31 Magnesium Alloy Sheets Prepared by Low-Speed Extrusion with Different Temperature. Common cast alloys of magnesium consist of different amounts – but not exceeding 10% – of aluminium, manganese and zinc as principal alloying elements. magnesium alloy; low-speed extrusion; microstructure evolution; mechanical properties, Help us to further improve by taking part in this short 5 minute survey, Change in Interface Characteristics of ITO Modified with n-decyltrimethoxysilane, Thermomechanical Processing of AZ31-3Ca Alloy Prepared by Disintegrated Melt Deposition (DMD), Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg, Processing and Characterization of Magnesium-Based Materials. Magnesium alloys have a hexagonal lattice structure, which affects the fundamental properties of these alloys. AZ31B finds application in wide variety of uses including aircraft fuselages, cell phone and laptop cases, speaker cones and concrete tools.

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