Microstructural and Mechanical Characterization of Sintered …
417
7. Gajakosh AK, Keshavamurthy R, Ugrasen G, Adarsh H (2018) Investigation on mechanical behavior of hot rolled Al7075-TiB 2 in-situ metal matrix composite. Mater Today: Proc
5:25605–25614
8. Reddy MP, Manakari V, Parande G, Shakoor RA, Mohamed AMA, Gupta M (2019) Structural,
mechanical and thermal characteristics of Al–Cu–Li particle reinforced Al-matrix composites
synthesized by microwave sintering and hot extrusion. Compos Part B: Eng 164:485–492
9. Sattari S, Jahani M (2017) An investigation of parameters involved and defects in the fabrication
of Al–SiC nanocomposite using hot extrusion technique. Trans Indian Inst Metals 70:2361–
2370
10. Senthilkumar R, Arunkumar N, Manzoor Hussian M (2015) A comparative study on low cycle
fatigue behaviour of nano and micro Al 2 O 3 reinforced AA2014 particulate hybrid composites.
Results Phys 5:273–280
11. Da Costa CE, Zapata WC, Velasco F, Ruiz-Prieto JM, Torralba JM (1999) Wear behaviour of
aluminum reinforced with nickel aluminide MMCs. J Mater Process Technol 92:66–70
12. Chandrashekar A, Ajaykumar BS, Reddappa HN (2018) Mechanical, structural and corrosion
behaviour of AlMg 4.5/nano Al 2 O 3 metal matrix composites. Mater Today: Proc 5:2811–2817
13. Shirvanimoghaddam K, Khayyam H, Abdizadeh H, Karbalaei Akbari M, Pakseresht AH, Abdi
F, Abbasi A, Naebe M (2016) Effect of B 4 C, TiB 2 and ZrSiO 4 ceramic particles on mechanical properties of aluminium matrix composites: experimental investigation and predictive
modelling. Ceram Int 42:6206–6220
14. Baradeswaran A, ElayaPerumal A (2014) Study on mechanical and wear properties of
Al7075/Al 2 O 3/ graphite hybrid composites. Compos Part B: Eng 56:464–471
15. Jayavelu S, Mariappan R, Rajkumar C (2018) Wear characteristics of sintered AA2014 with
alumina and titanium di-Boride metal matrix composites. Int J Ambient Energy 1–6
16. Baskaran S, Anandakrishnan V, Duraiselvam M (2014) Investigations on dry sliding wear
behavior of in situ casted AA7075–TiC metal matrix composites by using Taguchi technique.
Mater Des 60:184–192
17. Wang Z-G, Li C-P , Wang H-Y, Zhu X, Wu M, Jiang Q-C (2016) Effect of nano-SiC content on
mechanical properties of SiC/2014Al composites fabricated by powder metallurgy combined
with hot extrusion. Pow Metall 59:236–241
18. Suresh S, ShenbagaVinayaga Moorthi N, Vettivel SC, Selvakumar N (2014) Mechanical behavior and wear prediction of stir cast Al–TiB 2 composites using response surface
methodology. Mater Des 59:383–396
19. Kok M (2005) Production and mechanical properties of Al 2 O 3 particle-reinforced 2024
aluminium alloy composites. J Mater Process Technol 161:381–387
20. Bodukuri AK, Eswaraiah K, Rajendar K, Sampath V (2016) Fabrication of Al–SiC–B 4 C
metal matrix composite by powder metallurgy technique and evaluating mechanical properties.
Perspect Sci 8:428–431
21. Jayavelu S, Mariappan R, Rajkumar C, Surryaprakash D (2018) Study on microstructure,
mechanical and wear characteristics of sintered AA2014 with alumina and titanium di-boride
metal matrix composite. Int J Mech Prod Eng Res Dev 2018:125–130
22. Canakci A, Varol T(2014) Microstructure and properties of AA7075/Al–SiC composites
fabricated using powder metallurgy and hot pressing. Pow Technol 268:72–79
23. Reddy MP, Ubaid F, Shakoor RA, Parande G, Manakari V, Mohamed AMA, Gupta M (2017)
Effect of reinforcement concentration on the properties of hot extruded Al-Al 2 O 3 composites
synthesized through microwave sintering process. Mater Sci Eng: A 696:60–69
24. Alaneme KK, Sanusi KO (2015) Microstructural characteristics, mechanical and wear
behaviour of aluminium matrix hybrid composites reinforced with alumina, rice husk ash
and graphite. Eng Sci Technol, Int J 18:416–422
25. El-Kady O, Fathy A(2014) Effect of SiC particle size on the physical and mechanical properties
of extruded Al matrix nano composites. Mater Des 54:348–353
26. Tan A, Teng J, Zeng X, Fu D, Zhang H (2017) Fabrication of aluminium matrix hybrid composites reinforced with SiC microparticles and TiB 2 nanoparticles by powder metallurgy. Pow
Metall 60:66–72
Précédent

- 408/1110

Suivant