Performance Evaluation of a Power Rotary Slicing Machine
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Abstract
This paper presents the performance evaluation of a power operated rotary slicer capable of slicing plantain, cocoyam, cassava among others. The machine is designed and fabricated to aid production of chips in plantain, cassava, cocoyam and other related farm products for frying and as well drying for immediate consumption and storage purposes. The machine is made up of two blades cutter and operated at speed of 1440rpm to overcome drawbacks of existing hands or power operated slicer and to meet the demand of small scale processing industries. Samples was taken for plantain, cocoyam and cassava to evaluate the efficiency and capacity of the machine. The machine has 83% efficiency and capable of producing 22.9kg/h.
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Adesina, A. O., Ajiboshin, I. O., Adedeji, W. O., and Adelana, S. O., (2015): Design, Development And Performance Evaluation Of Plantain Slicing Machine, International Journal of Emerging Trends in Engineering and Development, Issue 5, Vol.1pp 204-216
Akande, F.B & Onifade, T. B. (2015). Modification of a plantain slicing machine. Innovative Systems Design and Engineering, 6 (10), 41-52
Akinyemi, S. O., Aiyelaagbe, I. O., & Akyeampong, E. (2010): Plantain (Musa spp.) Cultivation in Nigeria: a Review of Its Production, Marketing and Research in the Last Two Decades. Acta Horticulturae, 1, 879, 211-218. https://doi.org/10.17660/ActaHortic.2010.879.19
Chilakpu, K. and Ezeagba, A. C (2018): Development and Evaluation of a Motorized plantain Slicing Machine, FUTOJNLS 2018 Vol 4 Issue-1 page 135-142
Khurmi, R.S. and Ghupta, J.K. (2004). A Textbook of Machine Design. 25th Edition. Eurasaia Publishing House (PVT) Ltd. India.
M.B Usman and I.T Bello (2017): Development of an Automated Plantain Slicing Machine. International Journal of Scientific & Engineering Research Volume 8, Issue 10, October-2017
McGorry R. W., Dowd P. C., and Dempsey P. G., (2005): “The effect of blade finish and blade edge angle on forces used in meat cutting operations,” Applied Ergonomics, vol. 36, no. 1, pp. 71– 77, 2005. https://doi.org/10.1016/j.apergo.2004.08.002
Obeng, G.Y. (2004). Development of Mechanized Plantain Slicer. Journal of Science and Technology, 24(2). https://doi.org/10.4314/just.v24i2.32925
Okafor, B.E., and Okafor, V.C., (2013): Design of a Plantain Chips Slicing Machine. International Journal of Engineering and Technology Volume 3 No. 10, October, 2013
V.A., Z., E.A, S., N.A, T., E.V, R., & N.S, A. (2019). Theoretical and Experimental Aspects of the Combined Cutting Process with Preheating Of Non-Rigid Parts (Shafts). In International Journal of Innovative Technology and Exploring Engineering (Vol. 9, Issue 2, pp. 3118–3122). https://doi.org/10.35940/ijitee.b7536.129219
Yaxshiyev, Sh. N., Ashurov, Kh. Kh., & Mamadiyarov, A. J. (2020). Dynamics of Spindle Assembly of Metal-Cutting Machine. In International Journal of Engineering and Advanced Technology (Vol. 9, Issue 3, pp. 3121–3125). https://doi.org/10.35940/ijeat.c6119.029320
Bhuvaneswari, M., Raj, E. G., & Vignesh, T. (2019). Automatic Fish Cutting and Cleaning Machine using Digital Image Processing. In International Journal of Recent Technology and Engineering (IJRTE) (Vol. 8, Issue 2, pp. 612–615). https://doi.org/10.35940/ijrte.b1635.078219
Sistla, S. (2022). Predicting Diabetes u sing SVM Implemented by Machine Learning. In International Journal of Soft Computing and Engineering (Vol. 12, Issue 2, pp. 16–18). https://doi.org/10.35940/ijsce.b3557.0512222
Hemavathi, S., & Velmurugan, K. J. (2019). Segmentation of Affected Crops using Deep Learning. In International Journal of Engineering and Advanced Technology (Vol. 8, Issue 5s3, pp. 232–234). https://doi.org/10.35940/ijeat.e1052.0785s319