International Journal of Engineering and Modern Technology (IJEMT )
E-ISSN 2504-8848
P-ISSN 2695-2149
VOL. 10 NO. 7 2024
DOI: 10.56201/ijemt.v10.no7.2024.pg29.43
Alexander A. Offiong, Aniekan Offiong, Idorenyin .E. Markson, and A.P. Ihom
The effects of a four arm hammer cracker/ beater on the performance of a newly developed palm kernel cracking machine has been investigated. The work evaluated the performance of the machine with the four arm hammer head attached to it under constant load test. The shaft cracking speed was however, varied from 800 -1600 rpm during this period several parameters were measured. The result showed that as the shaft speed was increasing the cracking time of the palm kernel shells was decreasing. The shortest cracking time of 29.20 seconds occurred at a shaft speed of 1600 rpm while processing 3000g of palm kernels. At a shaft speed of 800 rpm the number of whole nuts was 473, this number increased to 529 at 1000 rpm and continued to decrease to 209 at 1600 rpm. At a shaft speed of 800 rpm the number of un-cracked nut was 21 as the speed continue to increase the number of un cracked nut decreased to 11 at 1000 rpm and continue to decrease to 1 at 1600 rpm, which means as the speed increases the number of un-cracked nut decreases. The work also discovered that the highest effective capacity using the four arm hammer beater was 102.74 and occurred at the shaft speed of 1600 rpm, likewise the highest cracking efficiency of 99.84 occurred at 1600 rpm. The highest performance efficiency of 82.66 however, occurred at the four arm hammer speed of 1000 rpm, considering other measured parameters like, number of whole nuts, number of broken nuts, performance efficiency, split nut loss, and overall efficiency the work concluded that the best operating speed for the newly developed palm cracker machine using the four arm hammer beater is 1000 rpm.
Adebayo, A. A. (2004). Development and Performance Evaluating of a Motorized palm Nut
cracking machine. Proceeding of the Annual Conference, Nigeria Institution of
Agricultural Engineers. Vol. 26, pp. 326-330.
Akubuo, C. O., Eje, B. E. (2002). Palm kernel and Shell Separator. Bio-systems Engineering,
81(2), 193-199. Doi:http://doi.org/10.1006/bioe.2001.0029.
Alade, E. I., Koya, O. A., and Omidiji, B. V., (2020). Development of a modified palm-nut cracker.
Agricultural Engineering International: CIGR Journal, 22(1), pp. 204-214.
Andoh, P. Y., Agyare, W. A., and Dadzie, J. (2015) selection of an ideal mesh size for the cracking
unit of a palm kernel processing plant. Journal of Science and Technology. Vol. 30 No.3,
pp. 109-118.
Antia, O. O; Olosunde, W., and Offiong A. (2014). Determination of optimum moisture content
of palm nut cracking for efficient production of whole kernel. Nigerian Journal of
Technological Development, vol. 11, No. 2, pp. 27-30.
Anyane, S. L. (1966) The Oil Palm Industries of West Tropical Africa. PhD Dissertation at
Stanford University.
Apeh, F. I., Yahaya, B. S., Achema, F., Fabiyi, M. O., and Apeh, E. S. (2015). Design analysis of
a locally fabricated palm kernel shells grinding machine. American Journal of
Engineering Research. 4(11), 1-7.
Asadullah, M., Adi, A. M., Suhada, N., Malek, N. H., Saringat M. I., and Azdarpour, A. (2014)
“Optimization of palm kernel shell torrefaction to produce energydensified bio-coal,”
energy Conversion and Management, vol. 88 pp. 1086-1093, 2014.
Asoiro, F. U and Udo, U. C (2013). Development of motorized oil palm fruit rotary digester.
Nigerian Journal of Technology, vol. 32. No 3, pp. 455-462.
Babatunde, O. O. and Okoli, J. O. (1988). “Investigation into the effect of nut size on the speed
needed for cracking palm nut in centrifugal nut cracker, “Nigerian Journal of Palm and
Oil Seeds, vol. 9, pp. 84-88.
Badmus, G. A. (1991) “NIFOR Automated Small Scale Oil Palm Processing Equipment, its need,
development and effectiveness “Proceeding of PORIM INTERNATIONAL Palm Oil
Conference, Nigeria 9-14 September 1990, Nigeria.
Babatunde, O. O., Ige, M. T., and Makanjuola, G. A., (1988). Effect of sterilization on fruit
recovery in oil palm fruit processing. Journal of Agricultural Engineering Research, vol.
41, Issue 2, pp. 75-79.
Cornish, E. H. (1991). Materials and Designer, Cambridge University Press, Cambridge, 28-29.
Emeka, V. E. and Julius .O.M. (2007). “Nutritional Evaluation of Palm Kernel Meat Types1.
Proximate Composition and Metabolizable energy Values,” African Journal of
Biotechnology vol. 6, issue 21, pp. 2484-2486.
Fashing, A. B; Disdrodola, O. S; and Hammed, I. A., (2017). Development and performance
evaluation of and oil palm fruit digester, Bioprocess Engineering 1(2): 49-53.
http://www.sciencepublishinggroup.com/j/be doi:10.11648/j.be.20170102.13.
Food and Agricultural Organization (2002) Statistical Yearbook. Journal for Food and
Agricultural Organization, 2/2.
Food and Agricultural Organization (2004) Statistical Yearbook. Journal for Food and
Agricultural Organization, 2/2.
Ibiyeye, D., Dlunloyo, O., Aderemi, A., Emmanuel, I., Akala, A., and Owolola, O. (2022). Design
and development of a palm kernel nut unit. Technology audit and Production Reserves,
1/3(63), pp. 30-44, doi:http://doi.org/10.15587/2706-5448.2022.253931.
Ibrahim, I. D., Jamiru, J., Sofuwa, O., and Onuoha, O. J., (2016). Design and performance
evaluation of horizontal-shaft palm kernel cracking machine. Proceeding of Covenant
University-3rd International Conference on African Development. Issues. pp. 337-3341.
.
Mba, O. I., Dumont, M. J., Ngadi, M. (2015) “Palm Oil Processing, characterization and utilization
in the food industry – A review, “Food Bioscience, Vol. 10, pp. 26-41.
Mosarof, M. H., kalam, M. A., Masjuki, H. H., Ashraful, A. M., Rashed, M. M., Imadadul, H. K.,
Monirul, I. M. (2015). “Implementation of palm biodiesel based on economic aspects,
performance, emission, and wear characteristics, Energy,” Conversion and Management,
Vol. 105 pp. 617-629.
Ndegwe, N. A., (1987). The oil Palm in Rivers State of Nigeria. Pp: 103-104.
Norazura, A. M. H. (2017). Usage of palm oil, palm kernel oil and their fractions as confectionery fats. Journal of Oil Palm Research, 29(3), 301-310.
Dio: http//dio.org/10.21894/jopr.2017.2903.01.
Offiong, A. (2024) Design and Production of Palm Kernel Cracking Machine, Undergraduate
Project work in the Department of Mechanical and Aerospace Engineering, University of
Uyo-Nigeria for the award of B.Eng. Degree.
Okoli, J. U. (2022). Optimum during time for palm nuts for efficient nut cracking in small scale
oil palm fruit processing mills. Global Journal of Engineering Research. Vol. 2, No. 1,
2003, pp. 7-10.
Ologunagba F. O., (2012). Design and Evaluation of a Horizontal shaft palm nut cracking machine.
Journal of Engineering and Applied Science, Vol. 4, pp 81.
Taofik, O. K; Adesola, O. K; Abu, R., and Olantunde, A. N., (2019). Development and
performance evaluation of small-scale palm kernel cracker. International Journal of
Mechanical and Civil Engineering, vol 2, Issue 1, pp. 15-27.
Udo, S. B., Adisa, A. F., Ismila, S. O and Adejujyibe, S. B., (2015). Development of palm kernel
nut cracking machine for rural use. Agric Eng Int: CIGR Journal 17(14): 379-388.