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Model Design and Development of a Telescopic Palm Fruit Harvester

DOI: 10.4236/mme.2023.131001, PP. 1-20

Keywords: Design Model, Telescopic, Palm Fruit Harvester, Boom, Mast, Hydraulic Cylinder, Solidworks

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Abstract:

This research paper presents a comprehensive conceptual design approach for the development of a telescopic machine system, which is portable and will provide a safe method of harvesting palm fruits. For this machine system development, the material for each component of the machine system was first selected, the boom length, maximum boom angle, force and stroke length of each hydraulic cylinder, the hydraulic pump pressure, base weight, permissible weight of the cutting system and power required were then calculated in the design analysis. Furthermore, from the calculated parameters, the model of the system was created using SolidWorks engineering software, the model was developed and tested. The result shows that the cutting time of the system for one bunch of palm fruit was longer when compared to conventional systems. It was concluded that though the machine is maintenance friendly and portable, further improvements in its design are necessary so as to develop a system that will give desirable economic output at a shorter time.

References

[1]  Murphy, D.J., Goggin, K. and Peterson, R.R.M. (2021) Oil Palm in the 2020s and beyond: Challenges and Solutions. CABI Agriculture and Bioscience, 2, Article No. 39.
https://doi.org/10.1186/s43170-021-00058-3
[2]  Begum, H., Ferdous-Alam, A.S.A. and Awang, A. (2019) Sustainability of Malaysian Oil Palm: A Critical Review. International Journal of Environment and Sustainable Development, 18, 409-429.
https://doi.org/10.1504/IJESD.2019.103467
[3]  Murphy, D.J. (2014) The Future of Oil Palm as a Major Global Crop: Opportunities and Challenges. Journal of Oil Palm Research, 26, 1-24.
[4]  Bassey, O.I. (2016) Overview of Oil Palm Production in Nigeria; Comparative Social and Environmental Impacts: The Case of the Ekong Anaku Community in Cross River State, Nigeria. Institute of Social Science, Erasmus University of Rotterdam, The Hague, Netherlands.
[5]  Maluin, F.N., Hussein, M.Z. and Idris, A.S. (2020) An Overview of Oil Palm Industry; Challenges and Some Emerging Opportunities for Nanotechnology Development. Agronomy, 10, Article 356.
https://doi.org/10.3390/agronomy10030356
[6]  Carrere, R. (2010) Oil Palm in Africa: Past, Present and Future Scenarios. WRM Series on Tree Plantations, 15, 1-78.
[7]  Biodun, M.B., Akinlabi, E.T., Okokpuje, I.P. and Fayomi, O.S.I. (2021) An Overview of Palm Oil Production Processing-Nigeria: A Case Study of Ilashe, Nigeria. IOP Conference Series: Material Science and Engineering, Ota, Nigeria, 10th-14th August 2020, Article ID: 012134.
https://doi.org/10.1088/1757-899X/1107/1/012134
[8]  MPOC (Malaysia Palm Oil Council) (2022) Palm Oil Industry Facing Collapse.
https://mpoc.org.my/palm-oil-industry-facing-collapse/
[9]  Lim, C.H., Cheah, Z.H., Lee, X.H., How, B.S., Qin Ng, W.P., Ngan, S.L., Lim, S. and Lam, H.L. (2021) Harvesting and Evacuation Route Optimization Model for Fresh Fruit Bunch in the Oil Palm Plantation Site. Journal of Cleaner Production, 307, Article ID: 127238.
https://doi.org/10.1016/j.jclepro.2021.127238
[10]  Poku, K. (2002) Small Scale Palm Oil Processing in Africa. Food and Agriculture Organization of the United Nations. FAO Agricultural Services Bulletin 148.
[11]  Jelani, A.R., Ahmad, D., Hitam, A., Yahya, A. and Jamak, J. (1999) Reaction Force and Energy Requirement for Cutting Oil Palm Fronds by Spring Power Sickle Cutter. Journal of Oil Palm Research, 2, 114-122.
[12]  Adetan, D.A., Adekoya, L.O. and Oladejo, K.A. (2007) An Improved Pole-and Knife Method of Harvesting the Oil Palms. Agricultural Engineering International: CIGR Ejournal, IX, 1-11.
[13]  Parra-Ruiz, L., Quintero-Medina, J. and García, M.F.M. (2018) Diseño de una herramienta de corte para racimos de palma aceitera. Revista UIS Ingenierías, 17, 59-68.
https://doi.org/10.18273/revuin.v17n1-2018006
[14]  Syuaib, M.F. (2015) Ergonomic of the Manual Harvesting Tasks of Oil-Palm Plantation in Indonesia Based on anthropometric. Posture and Work Motion Analysis. Agricultural Engineering International: CIGR Journal, 17, 248-262.
[15]  Akande, F., Kazeem, O., Oluwole, O. and Gbolahan, B. (2013) Level of Oil Palm Production Mechanization in Selected Local Government Areas of Oyo and Osun states, Nigeria. Innovative System Design and Engineering, 4, 36-40.
[16]  Aramide, B.P., Owolarafe, O.K. and Adeyemi, N.A. (2016) Development of a Support Mechanism for the Use of Motorized Oil Palm Fruit Bunch Cutter. Agricultural Engineering International: CIGR Journal, 18, 201-212.
[17]  Akyurt, M., Rehbini, E., Bogis, H.A. and Aljinaidi, A.A. (2002) A Survey of Mechanization Efforts on Date Palm Crown Operations. The 6th Saudi Engineering Conference, 5, 475-489.
[18]  Guturu, K., Sahitya, K., Komali, V.N., Kiran, B.R. and Satyanarayana, C.V.V. (2015) Design and Fabrication of Prototype Telescopic Raising Platform for Harvesting Oil Palm Fresh Fruit Bunches. Indian Journal of Science and Technology, 8, 1-5.
https://doi.org/10.17485/ijst/2015/v8i17/71350
[19]  Jelani, A.R., Shuib, A.R., Ahmad, H., Johari, J. and Malik, M.N. (2003) Hand-Held Mechanical Cutter. MPOB Information Series, No. 180.
[20]  Shuib, A.R., Mohd, R.K. and Mohd, S.D. (2011) Innovation and Technologies for Oil Palm Mechanization. Further Advances in Oil Research (2000-2010) (pp. 570-597).
[21]  Jelani, A.R., Muhamad, N.M., Shuib, A.R., Mohamed, A.T. and Ahmad, K.D. (2010) An Improved Oil Palm Motorized Cutter-Cantas Mark II. MPOB Information Series, No. 448.
[22]  Jelani, A.R., Ahmad, H., Johari, J., Aminulrashid, M., Yusri, G., Fauzi, I. and Malik, M.N. (2008) Motorized Chisel (Ckat) for Short Palm Harvesting. MPOB Information Series, No. 409.
[23]  Jelani, A.R., Mohd, R.A., Mohd, I.H.A., Mohamed, Z., Yosri, G., Syahmin, S., Aduka, A., Aziz, A., Azwan, B., Azman, I.A., Shuib, R., Norman, K. and Ahmad, K.D. (2017) Battery Powered Oil Palm Harvester Tool. MPOB Information Series, No. 613.
[24]  Jayaselan, H.A.J., Ismail, W.I.W. and Ahmad, D. (2012) Manipulator Automation for Fresh Fruit Bunch (FFB) Harvester. International Journal of Agricultural and Biological Engineering, 5, 7-12.
[25]  Khalid, M.R. and Shuib, A.R. (2014) Field Evaluation of Harvesting Machine for Tall oil Palms. Journal of Oil Palm Research, 26, 125-132.
[26]  Rafea, A.M.A., Desa, A., Nazmi, M.N. and Muhamad, S.M.K. (2018) Mechanized Harvesting of Oil Palm Fresh Fruit Bunches: A Review. Proceeding-7th Kuala Lampur International Agriculture, Forestry and Plantation Conference (KLIAFPZ), Malaysia, 10-11 December, 77-89.
[27]  Varvatsoulakis, M.N. (2008) Design and Implementation Issues of a Control System for Rotary Saw Cutting. Control Engineering Practice, 17, 198-202.
https://doi.org/10.1016/j.conengprac.2008.06.003
[28]  Judith, D.S. and Paul, S. (2007) Pythagorean Triples. Root to Research: A Vertical Development of Mathematical Problems. American Mathematical Society Book Store, p. 63.
[29]  Beer, F.P., Johnston, E.R., Dewolf, J.T. and Mazurek, D.F. (2012) Mechanics of Materials. 6th Edition, McGraw-Hill Publisher, New York.
[30]  Andrew, P. (2011) Hydraulic and Pneumatic. 3rd Edition, Butterworth-Heinemann, Oxford, 1-29.
[31]  Blue Machinery (2019) E-Crane Equilibrium. Your Partner in Performance.
https://blue-group.com/wp-content/uploads/2019/12/E-Crane-General-USE-FOR-ALL-MODELS.pdf
[32]  Tadesse, M. and Meshesha, T. (2017) Design and Development of a Portable Crane in Production Workshop: Case Study in Bishoptu Automotive Industry, Ethiopia. American Journal of Mechanical Engineering, 5, 41-50.
[33]  Budynas, R.G. and Nisbett, J.K. (2011) Shigley’s Mechanical Engineering Design. 9th Edition, McGraw-Hills, New York.
[34]  Kamel, M. (2022) Deflection of Steel Beams.
https://magedkamel.com/24-deflection-of-steel-beams/
[35]  Beer, F.P., Johnston, E.R., Dewoulf, J.T. and Mazurek, D.F. (2006) Mechanics of Materials. 5th Edition, McGraw Hill, New York, 27-28.
[36]  E.L.S. (Engineered Lifting Systems and Equipment Inc.) (2013) Certified Lifting Devices-The Value of Certification.
https://engliftsystems.com/
[37]  Rajapakse, R. (2016) Construction Engineering Design Calculations and Rules of Thumb. 1st Edition, Butterworth-Heinemann, Oxford.
https://doi.org/10.1016/B978-0-12-809244-6.00001-9
[38]  Khurmi, R.S. and Gupta, J.K. (2005) A Textbook of Machine Design. 15th Edition, Chand and Company Ltd., New Delhi, 734-762.

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