A Critical Review of Mechanical and Wear Resistance Characterizations on Developed Aluminium Matrix Composite Reinforced with MgO Particulates

Authors

  • Hartaj Singh Department of Mechanical Engineering, JCT University, Punjab, India 142024
  • Kapil Singh Department of Mechanical Engineering, JCT University, Punjab, India 142024
  • Sachit Vardhan Department of Mechanical Engineering, JCT University, Punjab, India 142024
  • Sanjay Mohan Sharma School of Mechanical Engineering, SMVDU, Katra, Jammu and Kashmir, India 182320

DOI:

https://doi.org/10.57159/gadl.jcmm.2.4.23088

Keywords:

Aluminum matrix Composites, Magnesium oxide, Reinforcement, Mechanical properties, Wear resistance

Abstract

The implementation of GST led to a notable transformation in taxation for different sectors, such as Indian handicrafts, but its contribution to sustainability in this industry requires more investigation. This research aims to uncover and analyze the role of Goods and Services Tax (GST) in promoting sustainability within the Indian handicrafts sector. By utilizing secondary data sources, the study seeks to provide insights into the mechanisms through which GST contributes to sustainable growth and development in this culturally significant industry. Thus, the study reveals how GST helps promote sustainability in the Indian handicrafts sector through various dimensions, including simplifying tax procedures and fostering innovation, emphasizing the strategic significance of GST in supporting sustainable growth. Thus, the study further suggests more future research that could complement these findings with primary data collection to provide a more comprehensive understanding of the practical implications of GST on sustainability within the Indian handicrafts sector.

References

A. Nirala, S. Soren, N. Kumar, V. K. Dwivedi, and D. R. Kaushal, “A comprehensive review on stir cast al-sic composite,” Materials Today: proceedings, vol. 21, pp. 1610–1614, 2020.

P. Nov´ak, “Advanced powder metallurgy technologies,” Materials, vol. 13, no. 7, p. 1742, 2020.

J. Hashim, L. Looney, and M. S. J. Hashmi, “Metal matrix composites: production by the stir casting method,” Journal of Materials Processing Technology, vol. 92, pp. 1–7, 1999.

A. K. T. Nripjit and N. Singh, “Characterization of fabricated a 384.1-MgObased metal matrix composite and optimization of tensile strength using Taguchi techniques,” Advances in pp. 2622–2629, 2012. Applied Science Research, vol. 3, no. 5,

G. S. Marahleh, “Strengthening of aluminum by sic, al2o3 and MgO,” JJMIE, vol. 5, no. 6, pp. 533–541, 2011.

H. Abdizadeh, P. H. Vajargah, and M. A. Baghchesara, “Fabrication of MgOnanoparticulates reinforced aluminum matrix composites using stir-casting method,” Kovove Mater., vol. 53, p. 319, 2015.

A. C. Reddy, “Constitutive behavior of aa5050/MgO metal matrix composites with interface debonding: the fi- nite element method for uniaxial tension,” in 2nd National Conference on Materials and Manufacturing Processes, pp. 121–127, 2000.

G. G. Shetty, A. Kumar, A. Kumar, A. V. Hegde, and L. Ritti, “Mechanical characterization of aluminum-based hybrid metal matrix composites,” International Journal of Advance Research, Ideas and Innovations in Technology, vol. 4, no. 3, pp. 707–713, 2018.

N. K. Bhoi, H. Singh, and S. Pratap, “Developments in the aluminum metal matrix composites reinforced by micro/nanoparticles–a review,” Journal of Composite Materials, vol. 54, no. 6, pp. 813–833, 2020.

M. Pul, “The effect of MgO ratio on surface roughness in Al-MgO composıtes,” Materials and manufacturing processes, vol. 28, no. 9, pp. 963–968, 2013.

R. Calin, M. Pul, and Z. O. Pehlivanli, “The effect of reinforcement volume ratio on porosity and thermal conductivity in Al-MgO composites,” Materials Research, vol. 15, pp. 1057–1063, 2012.

A. Arab, Z. D. I. Sktani, Q. Zhou, Z. A. Ahmad, and P. Chen, “Effect of MgO addition on the mechanical and dynamic properties of zirconia toughened alumina (zta) ceramics,” Materials, vol. 12, no. 15, p. 2440, 2019.

B. Subramaniam, V. R. Purusothaman, S. M. Karuppusamy, S. H. Ganesh, and R. K. Markandan, “Review on properties of aluminium metal matrix composites,” Journal of Mechanical and Energy Engineering, vol. 4, no. 1, pp. 57–66, 2020.

G. F., C. Efe, M. Ipek, S. Zeytin, and C. Bindal, “Research on engineering structures and materials,” vol. 2, pp. 67–74, 2016.

H. Abdizadeh, R. Ebrahimifard, and M. A. Baghchesara, “Investigation of microstructure and mechanical properties of nano MgO reinforced al composites manufactured by stir casting and powder metallurgy methods: A comparative study,” Composites Part B: Engineering, vol. 56, pp. 217–221, 2014.

H. Abdizadeh, R. Ebrahimifard, and M. A. Baghchesara, “Comparative study on the properties of al 356 and al/MgOmetal matrix composite produced by stir casting method,” International Journal of Engineering Science Invention Research & Development, vol. 2, pp. 756–762, 2014.

M. A. Baghchesara, H. Abdizadeh, and H. R. Baharvandi, “Effects of MgO nano particles on microstructural and mechanical properties of aluminum matrix composite prepared via powder metallurgy route,” in International Journal of Modern Physics: Conference Series, vol. 5, pp. 607–614, World Scientific Publishing Company, 2012.

R. Calin and R. Citak, “Effect of powder size on infiltration height in producing MgO reinforced al matrix composite by vacuum infiltration method,” in Materials Science Forum, vol. 534, pp. 797–800, Trans Tech Publications Ltd, 2007.

R. Kamalakannan, T. Abineesh, L. Rajeshkumar, and K. Arun Kumar, “Dry sliding wear behavior of aa2219 reinforced with magnesium oxide and graphite hybrid metal matrix composites,”

C. R. Sagar, T. K. Chandrashekar, and B. T. Chandra, “Effect of MgO particulates on dry sliding wear of al lm13 metal matrix composite,” in Recent Trends in Mechanical Engineering: Select Proceedings of ICIME 2019, pp. 447– 453, Springer Singapore, 2020.

M. E. Pul, R. Calin, and F. Gu¨l, “Investigation of abrasion in al–mgo metal matrix composites,” Materials Research Bulletin, vol. 60, pp. 634–639, 2014.

S. K. Rana and S. Lata, “Ga-based optimization of process parameters for drilling on Al-MgO metal matrix composite,” Materials Today: Proceedings, vol. 5, no. 2, pp. 5837–5844, 2018.

S. M. Kumar, R. Pramod, and H. K. Govindaraju, “Evaluation of mechanical and wear properties of aluminium aa430 reinforced with sic and mgo,” Materials Today: Proceedings, vol. 4, no. 2, pp. 509–518, 2017.

K. S. Rao, “Sliding wear behavior of cast al-7075 alloy reinforced with MgO particulates,” Materials Today: Proceedings, vol. 4, no. 10, pp. 11096–11101, 2017.

K. J. Joshua, S. J. Vijay, D. P. Selvaraj, and P. Ramkumar, “Influence of MgO particles on microstructural and mechanical behaviour of aa7068 metal matrix composites,” in IOP Conference Series: Materials Science and Engineering, vol. 247, p. 012011, IOP Publishing, 2017.

O. Bican, “Microstructural, mechanical and dry sliding wear properties of the MgO reinforced aluminium matrix composites produced by vacuum infiltration,” Kovove Materialy-Metallic Materials, vol. 52, pp. 77–83, 2014.

K. D. Salman and H. H. Abbas, “The effect of MgO & tio2 on wear behavior of composite material,” J Mech Eng Res Dev, vol. 43, pp. 288–297, 2020.

K. B. Girisha and H. C. Chittappa, “Characterization and property evaluation of a356. 1 aluminum alloy reinforced with MgO nanoparticle,” International Journal of Engineering Research & Technology (IJERT), vol. 3, no. 6,pp. 1545–1551, 2014.

M. E. Pul, R. Calin, and F. Gu¨l, “Investigation of abrasion in al–mgo metal matrix composites,” Materials Research Bulletin, vol. 60, pp. 634–639, 2014.

A. Y. Awad, M. N. Ibrahim, and M. K. Hussein, “Effects of rice husk ash–magnesium oxide addition on wear behavior of aluminum alloy matrix hybrid composites,” Tikrit Journal of Engineering Sciences, vol. 25, no. 4, pp. 16–23, 2018.

I. Ovalı, C. Esen, S. Albayrak, and H. Karakoc, “Effect of gr contents on wear properties of al2024/MgO/Al2O3/gr hybrid composites,” 2018.

P. P. Bhingole, G. P. Chaudhari, and S. K. Nath, “Processing, microstructure and properties of ultrasonically processed in situ MgO–al2o3–mgal2o4 dispersed magnesium alloy composites,” Composites Part A: Applied Science and Manufacturing, vol. 66, pp. 209–217, 2014.

S. S. Irhayyim, H. S. Hammood, and A. D. Mahdi, “Mechanical and wear properties of hybrid aluminum matrix composite reinforced with graphite and nano MgO particles prepared by powder metallurgy technique,” AIMS Mater Sci, vol. 7, pp. 103–115, 2020.

Y. Tasgın, “Effect of MgO, al2o3 and fecr2o4 on microstructure and wear resistance of babbitt metal (sn–sb–cu),” Materials Research Express, vol. 6, no. 4, p. 046548, 2019.

Z. Y. Zhang, Y. H. Guo, Y. T. Zhao, G. Chen, J. L. Wu, and M. P. Liu, “Effect of reinforcement spatial distribution on mechanical properties of MgO/zk60 nanocomposites by powder metallurgy,” Materials Characterization, vol. 150, pp. 229–235, 2019.

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Published

30-09-2023

How to Cite

[1]
H. Singh, K. Singh, S. Vardhan, and S. M. Sharma, “A Critical Review of Mechanical and Wear Resistance Characterizations on Developed Aluminium Matrix Composite Reinforced with MgO Particulates”, J. Comput. Mech. Manag, vol. 2, no. 4, pp. 45–56, Sep. 2023.

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Section

Review Articles

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Received 2023-08-19
Accepted 2023-09-04
Published 2023-09-30