EFFECT OF Ti REINFORCEMENT ON THE WEAR BEHAVIOUR OF AZ91/Ti COMPOSITES FABRICATED BY POWDER METALLURGY

被引:6
作者
Kumar, Naveen [1 ]
Bharti, Ajaya [1 ]
Chauhan, Akhilesh Kumar [2 ]
机构
[1] Motilal Nehru Natl Inst Technol Allahabad, Applied Mech Dept, Allahabad 211004, Prayagraj, India
[2] Kamla Nehru Inst Technol, Mechan Engn Dept, Sultanpur 228118, India
来源
MATERIALS PHYSICS AND MECHANICS | 2021年 / 47卷 / 04期
关键词
AZ91 mg alloy; powder metallurgy; titanium; composites; wear rate; MECHANICAL-PROPERTIES; MATRIX COMPOSITE; MAGNESIUM; FRICTION;
D O I
10.18149/MPM.4742021_7
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The low corrosion and wear resistance of magnesium limit its industrial applications despite its very high strength to weight ratio and environment-friendly nature. Researchers are working on the development of high wear-resistant magnesium matrix composites. Different types of reinforcements (i.e., B4C, SiC, carbon nanotubes, graphite, Ti, etc.) are added to the magnesium matrix to enhance wear resistance. Still, metallic reinforcement titanium is most suitable because the addition of Ti increases wear resistance without compromising mechanical strength and ductility. The effect of volume fraction of Ti reinforcement on the wear resistance of AZ91/Ti composites fabricated by powder metallurgy is investigated in the present work. It was observed that the wear rate and coefficient of friction decreased with the addition of Ti in the Mg matrix, and the lowest value of the wear rate and coefficient of friction was observed for Mg/Ti composite reinforced with 6 vol.% Ti.
引用
收藏
页码:600 / 607
页数:8
相关论文
共 20 条
[1]  
Blawert C, 2004, T INDIAN I METALS, V57, P397
[2]   Study on microstructure and strengthening mechanism of AZ91-Y magnesium alloy [J].
Cai, Huisheng ;
Guo, Feng ;
Su, Juan ;
Liu, Liang ;
Chen, Baodong .
MATERIALS RESEARCH EXPRESS, 2018, 5 (03)
[3]   Fabrication of magnesium-boron carbide metal matrix composite by powder metallurgy route: Comparison between microwave and spark plasma sintering [J].
Ghasali, Ehsan ;
Alizadeh, Masoud ;
Niazmand, Morteza ;
Ebadzadeh, Touradj .
JOURNAL OF ALLOYS AND COMPOUNDS, 2017, 697 :200-207
[4]   Development of novel carbon nanotube reinforced magnesium nanocomposites using the powder metallurgy technique [J].
Goh, CS ;
Wei, J ;
Lee, LC ;
Gupta, M .
NANOTECHNOLOGY, 2006, 17 (01) :7-12
[5]   An investigation of the microstructure and mechanical properties of B4C reinforced PM magnesium matrix composites [J].
Guleryuz, L. F. ;
Ozan, S. ;
Uzunsoy, D. ;
Ipek, R. .
POWDER METALLURGY AND METAL CERAMICS, 2012, 51 (7-8) :456-462
[6]   Effect of Sintering Duration on Some Properties of Pure Magnesium [J].
Gunes, I. ;
Uygunoglu, T. ;
Erdogan, M. .
POWDER METALLURGY AND METAL CERAMICS, 2015, 54 (3-4) :156-165
[7]  
Kandpal B C., 2014, International Journal of Research in Mechanical Engineering Technology, V4, P27
[8]   Magnesium and its alloys applications in automotive industry [J].
Kulekci, Mustafa Kemal .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2008, 39 (9-10) :851-865
[9]   Investigations of Mechanical Properties of Copper Matrix Hybrid Composite [J].
Kumar, Deepak ;
Bharti, Ajaya ;
Azam, Syed Mohd ;
Kumar, Naveen ;
Tripathi, Hariom .
ADVANCES IN MECHANICAL ENGINEERING, ICRIDME 2018, 2020, :671-676
[10]  
Kumar N, 2021, INDIAN J ENG MATER S, V28, P602