Research Article
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Year 2020, Volume: 4 Issue: 2, 59 - 64, 30.06.2020

Abstract

Project Number

2

References

  • [1] G. W. Kidu and T. A. Asmamaw, Optimization of Sand Casting Process Parametersfor 46MnSi¬4 Alloy Steel Trash Plate Casting Applicable for Roller Stand, International Journal of Engineering Trends and Technology, Vol. 41, No. 8 pp. 399 – 409 2016.
  • [2] K. B. Rundman, Metal Casting Reference Book for MY4130, John Wiley and Sons Incorporated, New York 2000.
  • [3] E. Mares and J. H. Sokolonski,. Artificial Intelligence-based Control System for the Analysis of Metal Casting Properties,Journal of Achievement in Materials and Manufacturing Engineering, Vol. 40, No. 2, pp 149-154, 2010.
  • [4] K. Jain, Surface Plasmon Resonance Sensitivity of Metal Nanostructures, Journal of Physical Chemistry, Vol. 47, No. 111, pp. 17451-17454 ,2007.
  • [5] J. O. Oji, P. H. Sunday, and A. R. Adetunji,. Taguchi optimization of Process Parameters on The Hardness and Impact Energy of Aluminium Alloy Sand castings, Leonardo Journal for Science, Vol. 2, No. 23 pp. 1-12, 2013 .
  • [6] A. P. Pius,. Effect of some Casting Parameters on the Mechanical Properties of Aluminium Alloy and Medium Carbon Steel, B. Eng Project in Mechanical Engineering Deparatment, Federal University of Technology, Minna, 2000.
  • [7] D. Karunakar, and N. Yadav, Effect of Process Parameter on Mechanical Properties of the Investment Castings Produced by using Expandable Polystyrene Pattern, International Journal of Advances in Engineering and Technology ,Vol.1,No.3, pp. 128-137 ,2011.
  • [8] V. S. Mudakappanavar and H. M. Nanjundaswamy,. Multi-objective Optimization of Process Parameters During Solidification of Hypoeutectic Al-Si Alloy Casting Using Genetic Algorithm. International Journal of Latest Trends in Engineering and Technology , Vol. 2, No. 4, pp.424-434, 2013.
  • [9] O. O. Ajibola, and D. T. Olorutoba,. Wear and corrosion of cast AI Alloy Piston with and without Brake Oil, Indian Journal of materials, Science, Vol. 10, pp. 1 – 10, 2015.
  • [10] M. O. Durowoju, I. A. Babatund, W. A. Raheem and M. T. Ajala,. Effect ofAntimony on the Tensile Strength and the Morphology of Si Platelets in Recycled Aluminium Pistons Alloys. Journal of Material Science and Engineering, Vol. 3, No. 2 pp. 1 – 6, 2014.
  • [11] V. Mohiuddin,. A. Krishnaiah and F. Hussainy. Influence of Sand Moulding Process Parameter on Product Quality of Al-Si Alloy casting –An ANOVA Approach, International Journal of Advanced Research in Science and Engineering, Vol. 2, No. 4, pp. 1751-1760, 2015.
  • [12] M. N. Nekere, and A. P. Singh,. Casting process by using Taguchi̓ Robust Design Method. International Journal for Quality Research, Vol. 6, pp. 30-37, .2012.
  • [13] E. A. Ogbonnaya,, B. N. Nwankwojike,E. M. Adigio, J. A. Fadeyi and C. N. Nwogu, Development of CNC Program for Piston Production. Journal for Materials Processing, Vol. 1, No. 4, pp.117-122, 2014.
  • [14] S. Mohan, . Basic Mechanical Engineering, Second Edition, Laxmi Publication Limited, New Delhi, India ,2006. [15] M. P. Groover, Fundamental of Modern Manufacturing Materials, Process and Systems, Fourth Edition, Campbell Publishers, New York , 2010.
  • [16] V. Anjo, and R. Khan, Gating System Design for Casting Thin Aluminium Alloy (AI-Si) Plates. Learnardo Electronic Journal of Practices and Technologies Vol. 2, No. 23, pp. 51 – 62, 2013.

Gating System Design For 0.67hp Gasoline Generator Piston

Year 2020, Volume: 4 Issue: 2, 59 - 64, 30.06.2020

Abstract

The design of gating system is key in the production of various engine components. It serves as basis for determining quantity of materials to be used in the manufacture of components during sand casting. The 0.67Hp gasoline generator piston designed to withstand stress and temperature conditions that the generator will be subjected to during operation was manufactured from the assemblage of gating system components. In order to produce effective generator piston the gating system design parameters such as weight of casting, thickness of casting, pattern length, runner size, sprue size and pouring time were designed to be 0.128kg, 4.805mm, 54.86mm, 492.31mm2, 122mm2 and 11.88s respectively. The gating system calculations were used to produce wood pattern, sprue size, runners and mould cavity. From the result obtained it showed that the developed piston was devoid of casting defects. The experimental generator piston produced from the application of the gating system worked effectively in a 0.67Hp generator set.
Keywords: Gating system design, engine, casting and sandcasting

Supporting Institution

Auchi Polytechnic, Nigeria

Project Number

2

Thanks

Thanks

References

  • [1] G. W. Kidu and T. A. Asmamaw, Optimization of Sand Casting Process Parametersfor 46MnSi¬4 Alloy Steel Trash Plate Casting Applicable for Roller Stand, International Journal of Engineering Trends and Technology, Vol. 41, No. 8 pp. 399 – 409 2016.
  • [2] K. B. Rundman, Metal Casting Reference Book for MY4130, John Wiley and Sons Incorporated, New York 2000.
  • [3] E. Mares and J. H. Sokolonski,. Artificial Intelligence-based Control System for the Analysis of Metal Casting Properties,Journal of Achievement in Materials and Manufacturing Engineering, Vol. 40, No. 2, pp 149-154, 2010.
  • [4] K. Jain, Surface Plasmon Resonance Sensitivity of Metal Nanostructures, Journal of Physical Chemistry, Vol. 47, No. 111, pp. 17451-17454 ,2007.
  • [5] J. O. Oji, P. H. Sunday, and A. R. Adetunji,. Taguchi optimization of Process Parameters on The Hardness and Impact Energy of Aluminium Alloy Sand castings, Leonardo Journal for Science, Vol. 2, No. 23 pp. 1-12, 2013 .
  • [6] A. P. Pius,. Effect of some Casting Parameters on the Mechanical Properties of Aluminium Alloy and Medium Carbon Steel, B. Eng Project in Mechanical Engineering Deparatment, Federal University of Technology, Minna, 2000.
  • [7] D. Karunakar, and N. Yadav, Effect of Process Parameter on Mechanical Properties of the Investment Castings Produced by using Expandable Polystyrene Pattern, International Journal of Advances in Engineering and Technology ,Vol.1,No.3, pp. 128-137 ,2011.
  • [8] V. S. Mudakappanavar and H. M. Nanjundaswamy,. Multi-objective Optimization of Process Parameters During Solidification of Hypoeutectic Al-Si Alloy Casting Using Genetic Algorithm. International Journal of Latest Trends in Engineering and Technology , Vol. 2, No. 4, pp.424-434, 2013.
  • [9] O. O. Ajibola, and D. T. Olorutoba,. Wear and corrosion of cast AI Alloy Piston with and without Brake Oil, Indian Journal of materials, Science, Vol. 10, pp. 1 – 10, 2015.
  • [10] M. O. Durowoju, I. A. Babatund, W. A. Raheem and M. T. Ajala,. Effect ofAntimony on the Tensile Strength and the Morphology of Si Platelets in Recycled Aluminium Pistons Alloys. Journal of Material Science and Engineering, Vol. 3, No. 2 pp. 1 – 6, 2014.
  • [11] V. Mohiuddin,. A. Krishnaiah and F. Hussainy. Influence of Sand Moulding Process Parameter on Product Quality of Al-Si Alloy casting –An ANOVA Approach, International Journal of Advanced Research in Science and Engineering, Vol. 2, No. 4, pp. 1751-1760, 2015.
  • [12] M. N. Nekere, and A. P. Singh,. Casting process by using Taguchi̓ Robust Design Method. International Journal for Quality Research, Vol. 6, pp. 30-37, .2012.
  • [13] E. A. Ogbonnaya,, B. N. Nwankwojike,E. M. Adigio, J. A. Fadeyi and C. N. Nwogu, Development of CNC Program for Piston Production. Journal for Materials Processing, Vol. 1, No. 4, pp.117-122, 2014.
  • [14] S. Mohan, . Basic Mechanical Engineering, Second Edition, Laxmi Publication Limited, New Delhi, India ,2006. [15] M. P. Groover, Fundamental of Modern Manufacturing Materials, Process and Systems, Fourth Edition, Campbell Publishers, New York , 2010.
  • [16] V. Anjo, and R. Khan, Gating System Design for Casting Thin Aluminium Alloy (AI-Si) Plates. Learnardo Electronic Journal of Practices and Technologies Vol. 2, No. 23, pp. 51 – 62, 2013.
There are 15 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Articles
Authors

Blessıng Ngozı Goodluck Alıemeke

M. Oladeinde

Project Number 2
Publication Date June 30, 2020
Published in Issue Year 2020 Volume: 4 Issue: 2

Cite

IEEE B. N. G. Alıemeke and M. Oladeinde, “Gating System Design For 0.67hp Gasoline Generator Piston”, IJESA, vol. 4, no. 2, pp. 59–64, 2020.

ISSN 2548-1185
e-ISSN 2587-2176
Period: Quarterly
Founded: 2016
Publisher: Nisantasi University
e-mail:ilhcol@gmail.com