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In this paper, aluminium alloy of grade ADC-12 was considered as a base metal and chromium carbide (Cr3C2) particles were reinforced through friction stir process. A detailed analysis of mechanical property and metallurgical characterization studies were performed to evaluate the surface composite. Remarkable changes were observed in the developed composite due to the mechanical force produced by the stir tool with an increase in hardness. The metallurgical investigation infers that the presence of silica in ADC-12 alloys has undergone mechanical fracture and long needle structure changed to reduced size. On the other hand, at higher tool rotational speed, the uniform distribution of hard particles was confirmed through SEM micrographs. Thus the modified surface composite has produced good mechanical property with high metallurgical qualities.
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Rocznik
Tom
Strony
1527--1532
Opis fizyczny
Bibliogr. 28 poz., fot., rys.
Twórcy
autor
- AVS Engineering College, Department of Mechanical Engineering, 636 003, Tamilnadu, India
autor
- Velalar College of Engineering and Technology, Department of Metallurgical Engineering, Salem 638 012, Tamilnadu, India
autor
- Coimbatore Institute of Technology, Department of Mechanical Engineering, Coimbatore 641 014, Tamilnadu, India
autor
- Coimbatore Institute of Technology, Department of Mechanical Engineering, Coimbatore 641 014, Tamilnadu, India
Bibliografia
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- [4] B. Rajeswari, K. S. Amirthagadeswaran, K. G. Anbarasu, Aust. J. Mech. Eng. 13 (2), 127-135 (2015), DOI: 10.7158/M13-051.2015.13.2.
- [5] A. Thangarasu, N. Murugan, I. Dinaharan, S. J. Vijay, Arch. Civ. Mech. Eng. 15 (2), 324-334 (2015), DOI: 10.1016/j.acme.2014.05.010
- [6] M. Puviyarasan, V. S. Kumar, Procedia Eng. 38 (2012), DOI: 1094-1103.10.1016/j.proeng.2012.06.138
- [7] T. Thankachan, K. S Prakash, V. Kavimani, Mater. Manuf. Process. 33 (3), 299-307 (2018), DOI: 10.1080/10426914.2017.1291952
- [8] G. S. Priyadharshini, R. Subramanian, N. Murugan, R. Sathiskumar, Mater. Manuf. Process. 32 (12), 1416 (2017), DOI: 10.1080/10426914.2017.1339318.
- [9] Q. Liu, L. Ke, F. Liu, C. Huang, L. Xing, Mater. Design. 45, 343-348 (2013), DOI: 10.1016/j.matdes.2012.08.036
- [10] T. Thankachan, K. S. Prakash, M. Loganathan, Mater. Manuf. Process. 33 (3), 350-358 (2017), DOI: 10.1080/10426914.2017.1339311
- [11] S. Sahraeinejad, H. Izadi, M. Haghshenas, A. P. Gerlich, Mat. Sci. Eng. A-Struct. 626, 505-513 (2015), DOI: 10.1016/j.msea.2014.12.077
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- [13] Z. Y. Ma, Metall. Mater. Trans A 39A, 642-658 (2008).
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- [16] G. Herranz, G. Matula, A. Romero, Powder. Metall. 60 (2), 120-130 (2017).
- [17] P. Selvakumar, N. Muthukumarasamy, S. Agilan, Mater. Res. Bull. 108, 61-72 (2018).
- [18] T. Satiskumar, R. Subramanian, S. Shalini, P. C. Angelo, J. Sci. Ind. Res. India75, 89-94 (2016).
- [19] T. Satiskumar, R. Subramanian, S. Shalini, A. Gowrishankar, P. C. Angelo, Met. Sci. Heat. Treat. 59 (7-8), 509-512 (2017).
- [20] J. Nampoothiri, R. Baldev, K. Ravi, T. Indian. I. Metals. 68, 1101-1106 (2015).
- [21] G. S. Priyadharshini, R. Subramanian, N. Murugan, R. Sathiskumar, Mater. Manuf. Process. 32 (12), 1416-1427 (2017).
- [22] M. Sabbaghian, M. Shamanian, H. R. Akramifard, M. Esmailzadeh, Ceram. Int. 40 (8), 12969-12976 (2014).
- [23] M. Barmouz, M. K. Givi, J. Jafari, Adv. Mat. Res. 154-155, 1761-1766 (2011).
- [24] M. Sharifitabar, A. Sarani, S. Khorshahian, M. S. Afarani, Mater. Des. 32, 4164-4172 (2011).
- [25] R. Fernandez, B. Jodoin, J. Therm. Spray. Techn. 26 (6), 1356-1380 (2017).
- [26] A. Thangarasu, N. Murugan, I. Dinaharan, S. J. Vijay, Sadhana-Acad. P. Eng. S. 37 (5), 579-586 (2012).
- [27] T. Thankachan, K. S. Prakash, Mat. Sci. Eng. A-Struct. 688, 301-308 (2017), DOI: 10.1016/j.msea.2017.02.010
- [28] G. S. Priyadharshini, R. Subramanian, N. Murugan, R. Sathiskumar, J. Mech. Sci. Technol. 31 (8), 3755-3760 (2017), DOI: 10.1007/s12206-017-0718-8
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c5853661-c5b5-43a0-8895-bfb6aced82a0