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Day-to-day life advanced composite materials usage is increasing continuously and replacing the existing monolithic materials. These composite materials are designed and fabricated for human needs with specific applications and also meet the standard requirements. In present study, the agro and industrial wastes derived ceramic reinforcements based Aluminium metal matrix composites, i.e. AA7075/welding slag and AA7075/Rice husk ash are fabricated through liquid metal stir casting route with varying the reinforcement contents from 2 to 12 (wt.%) in the matrix. Mechanical and microstructural characterization of the AA7075 metal matrix composite were measured and compared to the base material. The results show an improved mechanical strength and high hardness in composites. Impact energy has also significantly improved at higher concentrations of reinforcement particles. Impact energy of the composites increases to 3 J for 9% and 12%, the maximum tensile strength obtained is 173 MPa for 12% Weld Slag MMC. The highest hardness achieved is 98 BHN for 12% Weld Slag MMC. Furthermore, the microstructural results reflect significant grain refinement with stir casting process with good interface characteristics in the matrix and uniform dispersion of agro reinforcement’s particles.
Wydawca
Czasopismo
Rocznik
Tom
Strony
545--552
Opis fizyczny
Bibliogr. 38 poz., fot., rys., tab.
Twórcy
autor
- Lakireddy Bali Reddy College of Engineering, Mylavaram, Andhra Pradesh, India
autor
- R&D Mechatronics, Design and Engineering, VEM Technologies PVT Ltd, Hyderabad, Telangana, India
autor
- Gokaraju Rangaraju Institute of Engineering and Technology, Mechanical Engineering, Hyderabad - 500090, Telangana State, India
Bibliografia
- [1] W.S. Lee, W.C. Sue, C.F. Lin, Compos. Sci. Technol. 60 (10), 1975-1983 (2000).
- [2] M.O. Bodunrin, K.K. Alaneme, L.H. Chown, J. Mater. Res. Technol. 4 (4), 434-445 (2015).
- [3] A. Mortensen, J. Llorca, Annu. Rev. Mater. Res. 40, 243-270 (2010).
- [4] X. Zhang, Y. Chen, J. Hu, Prog. Aeronaut. Sci. 97, 22-34 (2018).
- [5] K. Shirvanimoghaddam, H. Khayyam, H. Abdizadeh, M.K. Akbari, A.H. Pakseresht, F. Abdi, M. Naebe, Ceram. Int. 42 (5), 6206-6220 (2016).
- [6] N.E. Udoye, O.S.I. Fayomi, A.O. Inegbenebor, IOP Conf. Ser. Mater. Sci. Eng. 640 012066 (2019). DOI: https://doi.org/10.1088/1757-899X/640/1/012066
- [7] T.S. Kumar, S. Shalini, K.K. Kumar, R. Thavamani, R. Subramanian, Mater. Today: Proc. 5 (2), 7123-7130 (2018).
- [8] M. Kolli, D.S. Naresh, K. Ravi Prakash Babu, Experimental studies on mechanical characteristics of bamboo leaf ash reinforcement with aluminum 7075 alloy using rotary stir casting technique, International Conference on Advanced Manufacturing and Materials Processing, Malaviya National Institute of Technology Jaipur, Rajasthan, India, July 24-25, (2021).
- [9] M.S. Kumar, M. Vasumathi, S.R. Begum, S.M. Luminita, S. Vlase, C.I. Pruncu, J. Mater. Res. Technol. 15, 1201-1216 (2021).
- [10] P. Paranthaman, P.M. Gopal, N. Sathiesh Kumar, Characterization of economical aluminium MMC reinforced with weld slag particles. In: S. Hiremath, N. Shanmugam, B. Bapu, (eds) Advances in Manufacturing Technology. Lecture Notes in Mechanical Engineering. Springer, Singapore (2019). DOI: https://doi.org/10.1007/978-981-13-6374-0_2
- [11] M. Kolli, S.N. Dasari, N.S. Potluri, A.V.S. Ramprasad, Aust. J. Mech. Eng. 1-10 (2020). DOI: https://doi.org/10.1080/14484846.2020.1842299
- [12] H.C. Anilkumar, H.S. Hebbar, K.S. Ravishankar, Int. J. Mech. Mater. Eng. 6, (1), 41-45 (2011).
- [13] I.N. Murthy, N.A. Babu, J.B. Rao, Journal of Minerals and Materials Characterization and Engineering 2, 319-333 (2014).
- [14] J.M. Kumar, N. Gopikrishna, Technol. 8 (11), 277-284 (2017).
- [15] E.O. Alves, D.R.A. Amaro, E.C.D.O. Silva, O.O.D. Araújo Filho, K.G.B. Alves, Mater. Res. 21 (6), e20170779 (2018). DOI: https://doi.org/10.1590/1980-5373-MR-2017-0779
- [16] J. Petrović, S. Mladenović, I. Marković, S. Dimitrijević, Mater. Technol. 56 (2), 115-122 (2022).
- [17] S. Reddy, S.V. Chetty, S. Premkumar, H.N. Reddappa, Procedia Mater. Sci. 5, 508-516 (2014).
- [18] D.R.J. Selvam, D.R.I. Dinaharan, Energy Procedia 34, 637-646 (2013).
- [19] Murahari Kolli, Dasari Sai Naresh, K. Ravi Prakash Babu, Manufacturing and Processing of Advanced Materials 3-19 (2021).
- [20] Murahari Kolli, J. Paulo Davim, Waste Residue Composites 16, 2023, Walter de Gruyter GmbH & Co KG.
- [21] M. Kolli, A.V.S. Ram Prasad, D.S. Naresh, SN Appl. Sci. 3 (7), 1-14 (2021).
- [22] P.K. Bannaravuri, A.K. Birru, Results Phys. 10, 360-373 (2018).
- [23] ASTM E28.04. ASTM E8/E8M - 21 Standard Test Methods for Tension Testing of Metallic Materials. ASTM International, West Conshochcken, PA. (2018). Available from: https://www.astm.org/Standards/E8.htm
- [24] ASTM E28.06. ASTN E10-18 Standard Test Method for Brinell Hardness of Metallic Materials. ASTM International, West Conshochcken, PA. (2018). Available from: https://www.astm.org/Standards/E10
- [25] ASTM E28.07. ASTM E23 - 18 Standard Test Methods for Notched Bar Impact Testing of Metallic Materials. ASTM International, West Conshochcken, PA. (2018). Available from: https://www.astm.org/Standards/E23.htm
- [26] l. Poovazhagan, K. Kalaichelvan, T. Sornakumar, Mater. Manuf. Processes 31 (10), 1275-1285 (2016).
- [27] J. Zhang, R.G. Guan, D. Tie, X. Wang, X.H. Guan, B.C. Chen, Mater. Manuf. Processes 30 (3), 340-5 (2015).
- [28] Y.T. Yao, L.Q. Chen, Mater. Manuf. Processes 31 (10), 1286-91 (2016).
- [29] S. Aravindan, P.V. Rao, K. Ponappa, J. Magnesium Alloys 3 (1), 52-62 (2015).
- [30] V. Balaji, N. Sateesh, M.M. Hussain, Mater. Today: Proc. 2 (4-5), 3403-8 (2015).
- [31] B. Praveen Kumar, A. Kumar Birru, Kov. Mater. 56 (5), 325-37 (2018).
- [32] X. Guo, Q. Guo, J. Nie, Z .Liu, Z. Li, G. Fan, D. Zhang, Mater. Sci. Eng. A. 711, 643-649 (2018).
- [33] B. Ravi, B.B. Balu Naik, J. Udaya Prakash, Mater. Today Proc. 2 (4-5), 2984-2990 (2015).
- [34] R. Vinayagamoorthy, Polym. Polym. Compos. 28 (6), 410-420 (2020).
- [35] H. Ghandvar, S. Farahany, M.H. Idris, Tribol. Trans. 61 (1), 88-99 (2017).
- [36] V. Mohanavel, K. Rajan, S.S. Kumar, S. Udishkumar, C. Jayasekar, Mater. Today. Proc. 5 (1), 2938-44 (2018).
- [37] C.U. Atuanya, A.T. Esione, F.A. Anene, J. Chin. Adv. Mater. Soc. 6 (4), 543-52 (2018).
- [38] N.K. Bhoi, H. Singh, S. Pratap, J. Compos. Mater. 54 (6), 813-833 (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8b1fabf1-058b-41ab-a450-f2ea6279696f
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