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Research Article

Processing of AZ31 alloy for improving mechanical properties and corrosion resistance using powder metallurgy

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Pages 652-665 | Received 16 Feb 2022, Accepted 18 Aug 2022, Published online: 26 Oct 2022

References

  • Azqadan, Erfan, Jared Uramowski, Ali A. Roostaei, Seyed Behzad Behravesh, Amjad Javaid, Bruce W. Williams, Mary A. Wells, and Hamid Jahed. 2022. “The Effect of Cooling Rate and Degassing on Microstructure and Mechanical Properties of Cast AZ80 Magnesium Alloy.” Materials Science and Engineering: A 844: 143176. doi:10.1016/j.msea.2022.143176.
  • Balachandar, R., R. Balasundaram, and G. Rajkumar. 2018. “Dry Sliding Wear Characteristics of Aluminum 6061-T6, Magnesium Az31 and Rock Dust Composite.” IOP Conference Series: Materials Science and Engineering 314: 012013.
  • Burke, PaulInvestigation of the Sintering Fundamentals of Magnesium PowdersJanuary(2011), http://hdl.handle.net/10222/13574.
  • Decker, S., S. Martin, and l. Kruger. 2015. “Influence of Powder Particle Size on the Compaction Behavior and Mechanical Properties of a High-Alloy Austenitic CrMnni TRIP Steel During Spark Plasma Sintering.” Metallurgical and Materials Transactions A. doi:10.1007/s11661-015-2861-0.
  • Dinesh Kumar, S., M. Ravichandran, S. Sakthivelu, M. Meignanamoorthy, C. Chanakyan, and S. V. Alagarsamy. 2020. “Mechanical Properties of Magnesium-Silicon Carbide Composite Fabricated Through Powder Metallurgy Route.“ Materials Today Proceedings 27 (2): 1137–1141.
  • Dobrzański, L.A., M. Król, and T. Tańsk. 2010. “Influence of Cooling Rate on Crystallization, Structure and Mechanical Properties of MCMgAl6zn1 Alloy.” Archives of Foundry Engineering 10 (3): 105–110.
  • Faisal, Habib, Soenoko Rudy, SudjitoSoeparman, and Yudy SuryaIrawan. 2019. “Effect of Heavy Fraction on Hardness and Morphology of Aluminium –Marble Powder Metallurgy Composites.” ARPN Journal of Engineering and Applied Science 14 (14): 2478–2484.
  • Franxcis Xavier, L., and Paramasivam Suresh. 2016. ”Wear behaviour of Aluminium Metal Matrix Composites Prepared from Industrial Waste.” The Scientific World Journal 8. doi:10.1155/2016/6538345. Article ID 6538345.
  • Geetha, B., and K. Ganesan. 2019. Experimental Investigation on Influence of Particle Size on Mechanical Properties and Wear Behaviour of A356-RedMud Metal Matrix Composite. AIP Conference Proceedings 2128: 020017. doi:10.1063/1.5117929.
  • H-J, Hu, and ZW. Ou. 2015. “The Influences of Die Structure Parameters on Extrusion Force of Manufacturing AZ31 Magnesium Alloy.” Australian Journal of Mechanical Engineering 13 (2): 118–126. doi:10.7158/M13-080.2015.13.2.
  • Jaroslav Čapek, and Dalibor Vojtěch. 2014. “Porous Magnesium for Medical Applications - Influence of Powder Size on Mechanical Properties.” Key Engineering Materials 592-593: 342–345.
  • Jiao, Yuhong, Jianfeng Zhu, Xuelin Li, Chunjie Shi, Bo Lu, Fen Wang, and Waras Abdul. 2021. “Mechanical Properties of Al Matrix Composite Enhanced by in situ Formed SiC, MgAl2o4, and MgO via Casting Process.” Materials 14: 1767. doi:10.3390/ma14071767.
  • Kanthasamy, S., and T.S. Ravikumar. 2021. “Synthesis of AZ31 Alloy by Magnesia Packed Sintering.” Australian Journal of Mechanical Engineering. doi:10.1080/14484846.2021.1960673.
  • Kenneth, KanayoAlaneme, and Jeremiah Bamike Bethel. 2018. “Characterization of Mechanical and Wear Properties of Aluminium Based Composites Reinforced with Quarry Dust and Silicon Carbide.” Ain Shams Engineering Journal 9: 2815–2821.
  • Krishnan, Ravi Kumar, Kothavady Mylsamy Mohanasundaram, Arumaikkannu Ganesan, and Ramanathan Subramanian. 2012. “Effect of Particle Size on Mechanical Properties and Tribological Behaviour of Aluminium/Fly Ash Composites.” Science and Engineering of Composite Materials 19: 247–253. doi:10.1515/secm-2011-0139.
  • Krishnaprasadyadav, G.R., J. Kishore, and V. Mahanandhi Reddy. 2019. “Fabrication and Structural Analysis of Aluminium alloy(lm16) Reinforced with Graphite and Granite Powder.” International Journal of Mechanical and Production Engineering Research and Development 9 (5): 725–732.
  • Kurzynowski, T., A. Pawlak, and I. Smolina. 2020. ”The Potential of SLM Technology for Processing Magnesium Alloys in Aerospace Industry Archives of Civil and Mechanical Engineering.” 20: 23. doi:10.1007/s43452-020-00033-1.
  • Levent, Elen, Cicek Bunyamin, Koc Erkan, Turen Yunus, Sun Yavuz, and Hayrettin Ahlatci. 2019. “Effects of Alloying Element and Cooling Rate on Properties of AM60 Mg Alloy, Mater.” Materials Research Express 6: 096511. doi:10.1088/2053-1591/ab2b13.
  • MacDonald, J.E., R.H.U. Khan, M. Aristizabal, K.E.A. Essa, M.J. Lunt, and M.M. Attallah. 2019. “Influence of Powder Characteristics on the Microstructure and Mechanical Properties of HIPped CM247LC Ni Super Alloy.” Materials & Design 174: 107796. doi:10.1016/j.matdes.2019.107796.
  • Ma, Guonan, Dong Wang, Bolv Xiao, and Zongyi Ma. 2021. ”Effect of Particle Size on Mechanical Properties and Fracture Behaviors of Age Hardening SiC/al–Zn–Mg–Cu Composites Acta Metallurgica Sinica (English Letters.” 34: 1447–1459. doi:10.1007/s40195-021-01254-w.
  • Moosbrugger, Charles, Engineering Properties of Magnesium Alloys, https://www.asminternational.org>docuents.
  • Nai-Guang, Wang, Wangri-Chu, Peng Chao-Qun, Feng Yan. 2010. Transactions of Nonferrous Metal Society of China 20, 1936–1943.
  • SasanDadbakhsh, Leander Verbelen, Tom Vandeputte, Dieter Strobbe, Peter Van Puyvelde, and Jean-Pierre Kruth. 2016. “Effect of Powder Size and Shape on the SLS Processability and Mechanical Properties of a TPU Elastomer.” Physics Procedia 83: 971–980.
  • Subbarao, B., K. VijayaBhaskar, K. Ravindra, and Z. Rameshbabu. 2018. “Mechanical and Wear Behaviour of Aluminium Metal Matrix Composites Reinforced with Dissipate Material-A Review.” International Journal of Mechanical and Production Engineering Research and Development 8 (I): 1065–1078.
  • Tan, L., J. Dong, J. Chen, and K. Yang. 2017. “Development of Magnesium Alloys for Biomedical Applications: Structure, Process to Property Relationship.” Materials Technology. doi:10.1080/10667857.2017.1405890.
  • Tan, J., and S. Ramakrishna. 2021. “Applications of Magnesium and Its Alloys: A Review.” Applied Sciences 11: 6861. doi:10.3390/app11156861.
  • Yu-Hua, LI., Liu Bo Xue, Bo Zhang Xiao, Zhao Feng and JING. Li-Li, 2021. Application of Lightweight Magnesium Alloy in Satellite Antenna Products, Journal of Physics: Conference Series 1885, 052001, doi:10.1088/1742-6596/1885/5/052001.
  • Zhang, Hongmei, Hongnan Li, Ling Yan, Chao Wang, Fangfang Ai, Yan Li, Na Li, and Zhengyi Jiang. 2019. “Effect of Particle Size on Microstructure and Element Diffusion at the Interface of Tungsten Carbide/High Strength Steel Composites.” Materials 12: 4164. doi:10.3390/ma12244164.
  • Zhao, Weigang, Song-Jeng Huang, Wu Yi-Jhang, and Cheng-Wei Kang. 2017. “Particle Size and Particle Percentage Effect of AZ61/SiCp Magnesium Matrix Micro and Nano-Composites on Their Mechanical Properties Due to Extrusion and Subsequent Annealing.” Metals 7: 293. doi:10.3390/met7080293.
  • Zhou, Mingyang, LingbaoRen XiaoniQu, Lingling Fan, Yuwenxi Zhang, GaofengQuan YangyangGuo, Qi Tang, Bin Liu, and Hao Sun. 2017. “The Effects of Carbon Nanotubes on the Mechanical and Wear Properties of AZ31 Alloy.” Materials 10: 1385. doi:10.3390/ma10121385.

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