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Development and characterization of titanium nitride reinforced aluminium MMC's through powder metallurgy technique

Identyfikatory
Warianty tytułu
Języki publikacji
PL
Abstrakty
EN
Aluminium (Al) reinforced with Titanium Nitride (TiN) Metal Matrix composites find its application for elevated temperature operating conditions. 5,10 and 15 weight percentage of TiN particles were added to aluminium to prepare the composite through powder metallurgy technique. The mixed powder was compacted at two compacting pressure of 250 MPa and 300 MPa to produce the specimens having h/d ratio in the range of 1.1 to 1.2. The specimens were sintered in nitrogen atmosphere at two different sintering temperatures of 400oC and 500oC with sintering time of 4 hours for each. Physical properties namely, green density, sintered density and mechanical properties such as hardness, compression strength and surface roughness were studied.
Rocznik
Strony
29--36
Opis fizyczny
Bibliogr. 12 poz., fot. kolor., wykr.
Twórcy
autor
  • Department of Mechanical Engineering REVA Institute of Technology and Management, Bangalore-560064, Karnataka, India
  • Department of Mechanical Engineering, Nitte Meenakshi Institute of Technology and Management, Bangalore-560064, Karnataka, India
  • Department of Mechanical Engineering, Nitte Meenakshi Institute of Technology and Management, Bangalore-560064, Karnataka, India
Bibliografia
  • [1] Surappa, M. K.: Aluminium matrix composites: Challenges and opportunities, Sadhana, 28, Parts 1-2, 319-334, 2003.
  • [2] Jang, G. B., Hur, M. D. and Kang, S. S.: A study on the development of a submission process by powder metallurgy in automobile parts, Journal of Materials Processing Technology, 100, 110-115, 2000.
  • [3] Rohatgi, P. K.: Metal Matrix Composites, Defense Science Journal, 43, 323-349, 1993.
  • [4] Rawal, S.: Metal Matrix Composites for Space Applications, Journal of Materials, 2000.
  • [5] Ahmed, A., Neely, A. J. and Shankar, K.: Experimental comparison of the effects of nano-metric and micrometric particles on the tensile properties and fracture behavior of aluminium composites at room and elevated temperatures, Metallurgical and Materials Transactions, 42(a), 795-815, 2011.
  • [6] Jeevan, V., Rao, C. S. P. and Selvaraj, N.: Compaction, Sintering And Mechanical Properties Of Al-SiCp Composites, International Journal Of Mechanical Engineering And Technology, 3, (3), 565-573, 2012.
  • [7] Purohit, R., Rana, R. S. and Verma, C. S.: Fabrication of Al-SiC Composites through Powder Metallurgy Process and Testing of properties, International Journal of Engineering Research and Applications, 2, 420-437, 2012.
  • [8] Roy, S.: Al-SiC Composites, Journal of Material Science, 28, 1993.
  • [9] Kapylou, A. V., Urbanovich, V. S., Andrievshi, R., Kuznetsov, D. A., Nohrin, A. V. and Klimczyk, P.: Effect of compacting pressure, powder degassing and thermo baric treatment on densification and properties of nanocrytalline titanium nitride, Journal of Processing and Application of Ceramics, 3, 161-166, 2009.
  • [10] Zhang, F., Kaczmarek, W. A., Lu, L. and Lai, M.O.: Formation of titanium nitrides via wet reaction ball milling, Journal Alloy Composites, 307, 249-253, 2000.
  • [11] Venkateswarlu, K., Saurabh, S., Rajinikanth, V., Sahu, R. K. and Ray, A. K.: Synthesis of TiN Reinforced Aluminium Metal Matrix Composites Through Microwave Sintering, Journal of Materials Engineering and Performance, 19(2), 231- 236, 2010.
  • [12] Ray, A. K., Venkateswarlu, K., Chaudhury, S. K., Das, S. K., Ravi Kumar, B. and Pathak, L. C.: Fabrication of TiN reinforced aluminium metal matrix composites through a powder metallurgical route, Materials Science and Engineering, A338, 160-165, 2002.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-43cf1d55-4c35-41bd-8498-d891fb2547af
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