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Aluminium metal matrix composites (AMMCs) playing a prominent part in the aerospace and automotive sectors owing to their superior mechanical and tribological properties. Hence, the aim of this work is to investigate the effect of titanium dioxide (10 wt.% TiO2) particles addition on hardness and tribological behaviour of Al-0.6Fe-0.5Si alloy (AA8011) composite manufactured by stir casting method. The surface morphology of developed composite clearly shows the inclusion of TiO2 particles evenly distributed within the matrix alloy. Hardness of the composite was measured using Vickers micro hardness tester and the maximum hardness was obtained at 95.6 Hv. A pin-on-disc tribometer was used to carried the wear test under dry sliding conditions. The influence of wear control parameters such as applied load (L), sliding speed (S) and sliding distance (D) were taken as the input parameters and the output responses considered as the specific wear rate (SWR) and co-efficient of friction (COF). The experimental results were analyzed using Technique for Order Preference by Similarity to Ideal Preferred Solution (TOPSIS). Based on the TOPSIS approach, the less SWR and COF achieved at the optimal parametric combination were found to be L = 30 N, S = 1 m/s and D = 2000 m. ANOVA results revealed that applied load (76.01%) has the primary significant factor on SWR and COF, followed by sliding speed (20.71%) and sliding distance (3.12%) respectively. Worn surface morphology was studied using SEM image of confirmation experiment specimen to understand the wear mechanism.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
1429--1438
Opis fizyczny
Bibliogr. 35 poz., fot., rys., tab., wzory
Twórcy
autor
- Rohini College of Engineering and Technology, Department of Mechanical Engineering, Kanyakumari-629 401, Tamil Nadu, India
autor
- Rohini College of Engineering and Technology, Department of Mechanical Engineering, Kanyakumari-629 401, Tamil Nadu, India
autor
- Mahath Amma Institute of Engineering and Technology, Department of Mechanical Engineering, Pudukkottai-622 101, Tamil Nadu, India
autor
- RVS College of Engineering and Technology, Department of Mechanical Engineering, Coimbatore-641 402, Tamil Nadu, India
Bibliografia
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- [2] Mazahery M.O. Shabani, Ceram. Int. 38, 1887-1895 (2012).
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- [5] A. Baradeswaran, A. Elaya Perumal, Compos. B Eng. 54, 146-152 (2013).
- [6] D.E.J. Dhas, C. Velmurugan, K.L.D. Wins, K.P. Boopathi Raja, Ceram, Int. 45, 614-621 (2019).
- [7] R. Soundararajan, A. Ramesh, N. Mohanraj, N. Parthasarathi, J. Alloys. Compd. 685, 533-545 (2016).
- [8] E. Marin, M. Lekka, F. Andreatta, I. Fedrizzi, G. Itskos, A. Moutsatsou, N. Koukouzas, N. Kouloumbi, Mater. Charact. 69, 16-30 (2012).
- [9] Zeeshan Ahmad, Sabah Khan, Shabahat Hasan, J. Mater. Res. Technol. 9, 9129-9135 (2020).
- [10] S. Dhanalakshmi, N. Mohanasundararaju, P.G. Venkatekrishnan, Appl. Mech. Mater. 592-594, 705-710 (2014).
- [11] S.V. Alagarsamy, M. Ravichandran, Mater. Res. Express. 6, 1-15 (2019).
- [12] Tetsuro Yanaseko, Hiroshi Sato, Karla Mossi, Hiroshi Asanuma, Sens. Actuators A. Phys. 331, 112518 (2020).
- [13] Min Zeng, Hong Yan, Ke Li, Yushun Lei, J. Alloys. Compd. 897, 163181 (2022).
- [14] Subramanya R. Prabhu, Arun K. Shettigar, Mervin A. Herbert, Shrikantha S. Rao, Trans. Nonferrous. Met. Soc. China. 29, 2229-2236 (2019).
- [15] K.R. Ramkumar, S. Natarajan, J. Alloys. Compd. 93, 526-532 (2019).
- [16] Samuel O Akinwamide, Serge M Lemika, Babatunde A Obadele, Ojo J Akinribide, Bolanle T Abe, Peter A Olubambi, J. Compos. Mater. 53, 3929-3938 (2019).
- [17] J. David Raja Selvam, D.S. Robinson Smart, I. Dinaharan, Energy. Procedia. 34, 637-646 (2013).
- [18] Jaswinder Singh, Amit Chauhan, Trans. Nonferrous. Met. Soc. China. 27, 2573-2586 (2017).
- [19] X. Roshan Xavier, S. Julyes Jaisingh, J. Mech. Sci. Technol. 35, 4917-4924 (2021).
- [20] K. Raju, M. Balakrishnan, Silicon. 14, 115-125 (2022).
- [21] Nenad Miloradovic, Rodoljub Vujanac, Blaza Stojanovic, Ana Pavlovic, Compos. Struct. 264, 113658 (2021).
- [22] S. Saravanan, S.T. Jayasuthahar, V. Dhinakaran, S. Sankar, AIP. Conf. Proc. 2283, 1-6 (2021).
- [23] Donanta Dhaneswara, Anne Zulfia Syahrial, Muhammad Tsabit Ayman, Procedia. Eng. 216, 43-50 (2017).
- [24] N.G. Siddesh Kumar, R. Suresh, G.S. Shiva Shankar, Compos. Commun. 19, 61-73 (2020)
- [25] J. Justin Maria Hillary, R.Ramamoorthi, Samson Jerold Samuel Chelladurai, Mater. Res. Express. 7, 1-16 (2020)
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- [27] S.V. Alagarsamy, M. Ravichandran, Ind. Lubr. Tribol. 71, 1064-1071 (2019).
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- [29] S. Thirumalai Kumaran, M. Uthayakumar, S. Aravindan, Tribol. 8, 187-193 (2014).
- [30] S.V. Alagarsamy, P. Raveendran, M. Ravichandran, Silicon. 13, 2529-2543 (2020).
- [31] A. Karthikeyan, S.V. Alagarsamy, C.Ilaiyaperumal. Surf. Rev. Lett. 29, 1-11 (2021).
- [32] S.V. Alagarsamy, M. Ravichandran, Mater. Res. Express. 7, 1-17 (2020).
- [33] Ajith Arul Daniel, Sakthivel Murugesan, Manojkumar, Sudhagar Sukkasamy, Mater. Res. 20, 1697-1706 (2017).
- [34] P. Raveendran, S.V. Alagarsamy, C. Chanakyan, M. Meignana-Moorthy, M. Ravichandran, S. Sakthivelu, Surf. Topogr: Metrol. Prop. 9, 1-12 (2021).
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Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki (2025)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bd5959a2-ded8-4066-b35a-341b4ebe47e3
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