Simulation and Analysis of Innovative Hand Tool Harvester

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internalnotes Amir FAG, Ssomad MAHA, Hudzari RM, Noordin AM, Ishak WIW, Sapuan SM (2011). The Concept of Simulation Analysis for Innovative Hand Tool Harvester. International Conference in Mechanical, Automotive and Aerospace Engineering, 17-19 May, The Legend Hotel, Kuala Lumpur, Malaysia, pp. 653-656. Bradbury JH (1988). The chemical composition of tropical root crops. ASEAN Food J., 4: 3-136. Darius El, Pebrian and Azmi Yahya (2003), Design and Development of a Prototype Trailed Type Oil palm Seedling Transplanter, J. Oil Palm Res., 15(1):32-40 Hudzari RM, Hasbullah M, Noordin AMN, Ishak WIW (2011), A Review On Farm Mechanization and Analysis Aspect For Dioscorea hispida, J. Crop Sci., 2(1):21-26. Morteza Z, Mahmoud O, Asadollah A (2010). Assessment of Agricultural Mechanization Status of Potato Production by Means of Artificial Neural Network Model”, Austr. J. Crop Sci., 4(5): 372-377. Nashriyah M, Nornasuha Y, Salmah T, Norhayati N, Rohaizad M (2010), Dioscorea hispida Dennst. (Dioscoreaceae): An Overview, Bulletin Universiti Sultan Zainal Abidin, 4: 12-13. Peter R (1987). Design of structural steelwork (2nd ed.), Taylor & Francis, p. 1. Razali MH, Ishak WIW, Ramli AR, Sulaiman MN (2008). Modeling of Oil Palm Fruit Maturity for the Development of an Outdoor Vision System. Int. J. Food Eng., 4(3): 1396-1396. Sapuan SM, Imihezri SSS, Sulaiman S, Hamdan M, Zainudin ES (2007). Comparison of simulated and actual product of polymer composite automotive clutch pedal. Int. J. Mech. Mater. Eng., 2(1): 29-39. Sapuan SM, Maleque MA (2005). Design and fabrication of natural woven fabric reinforced epoxy composite for household telephone stand. Mater. Des., 26(1): 65-71. Sapuan SM, Maleque MA, Hameedullah M, Suddin MN, Ismail N (2005). A note on the conceptual design of polymeric composite automotive bumper system, J. Mater. Process. Technol., 159(2): 145- 151. Sapuan SM, Osman MR, Nukman Y (2006). State of the-art of the concurrent engineering technique in automotive industry. J. Eng. Design,. 17(2): 143-157, 2006. Sarah KB (2008), The Architectural designer and Their Digital Media, PhD Thesis, Royal Melbourne Institute of Technology (RMIT) University. Udensi EA, Oselebe HO, Iweala OO (2008). “The Investigation of Chemical Composition and Functional Properties of Water Yam (Dioscorea alata): Effect of Varietal Differences”, Pak. J. Nutr., 7(2): 324-344. Yulfian A (2011) Personal Communication, Department of Mechanical and Aeronautics Engineering of IIUM (International Islamic University of Malaysia).
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spelling 7643 https://intelek.unisza.edu.my/intelek/pages/view.php?ref=7643 https://intelek.unisza.edu.my/intelek/pages/search.php?search=!collection407072 Restricted Document Article Journal application/pdf 8 1.6 Adobe Acrobat Pro DC 20 Paper Capture Plug-in UDM KOTA 2012-05-24 16:20:15 3309-01-FH02-FRTK-14-00486.pdf UniSZA Private Access Simulation and Analysis of Innovative Hand Tool Harvester Simulation and Analysis of Innovative Hand Tool Harvester There is a real need to develop a hand tool harvester since harvesting tubers of Dioscorea hispida (ubi gadong) is time tedious and consuming. The tubers were surrounded by roots, which were well gripped to the soil which made harvesting process difficult. Therefore, a new tool equipped with cutting device to cut the roots of D. hispida is required. The information from the experiments is used to model and simulate the tool in Computer Aided Design (CAD) environment. The solid modeling software solidworks was used for the design, modeling and simulation of the equipment and the finite element analysis to determine the stress, force and displacement were also conducted. 7 1864-1871 Amir FAG, Ssomad MAHA, Hudzari RM, Noordin AM, Ishak WIW, Sapuan SM (2011). The Concept of Simulation Analysis for Innovative Hand Tool Harvester. International Conference in Mechanical, Automotive and Aerospace Engineering, 17-19 May, The Legend Hotel, Kuala Lumpur, Malaysia, pp. 653-656. Bradbury JH (1988). The chemical composition of tropical root crops. ASEAN Food J., 4: 3-136. Darius El, Pebrian and Azmi Yahya (2003), Design and Development of a Prototype Trailed Type Oil palm Seedling Transplanter, J. Oil Palm Res., 15(1):32-40 Hudzari RM, Hasbullah M, Noordin AMN, Ishak WIW (2011), A Review On Farm Mechanization and Analysis Aspect For Dioscorea hispida, J. Crop Sci., 2(1):21-26. Morteza Z, Mahmoud O, Asadollah A (2010). Assessment of Agricultural Mechanization Status of Potato Production by Means of Artificial Neural Network Model”, Austr. J. Crop Sci., 4(5): 372-377. Nashriyah M, Nornasuha Y, Salmah T, Norhayati N, Rohaizad M (2010), Dioscorea hispida Dennst. (Dioscoreaceae): An Overview, Bulletin Universiti Sultan Zainal Abidin, 4: 12-13. Peter R (1987). Design of structural steelwork (2nd ed.), Taylor & Francis, p. 1. Razali MH, Ishak WIW, Ramli AR, Sulaiman MN (2008). Modeling of Oil Palm Fruit Maturity for the Development of an Outdoor Vision System. Int. J. Food Eng., 4(3): 1396-1396. Sapuan SM, Imihezri SSS, Sulaiman S, Hamdan M, Zainudin ES (2007). Comparison of simulated and actual product of polymer composite automotive clutch pedal. Int. J. Mech. Mater. Eng., 2(1): 29-39. Sapuan SM, Maleque MA (2005). Design and fabrication of natural woven fabric reinforced epoxy composite for household telephone stand. Mater. Des., 26(1): 65-71. Sapuan SM, Maleque MA, Hameedullah M, Suddin MN, Ismail N (2005). A note on the conceptual design of polymeric composite automotive bumper system, J. Mater. Process. Technol., 159(2): 145- 151. Sapuan SM, Osman MR, Nukman Y (2006). State of the-art of the concurrent engineering technique in automotive industry. J. Eng. Design,. 17(2): 143-157, 2006. Sarah KB (2008), The Architectural designer and Their Digital Media, PhD Thesis, Royal Melbourne Institute of Technology (RMIT) University. Udensi EA, Oselebe HO, Iweala OO (2008). “The Investigation of Chemical Composition and Functional Properties of Water Yam (Dioscorea alata): Effect of Varietal Differences”, Pak. J. Nutr., 7(2): 324-344. Yulfian A (2011) Personal Communication, Department of Mechanical and Aeronautics Engineering of IIUM (International Islamic University of Malaysia).
spellingShingle Simulation and Analysis of Innovative Hand Tool Harvester
summary There is a real need to develop a hand tool harvester since harvesting tubers of Dioscorea hispida (ubi gadong) is time tedious and consuming. The tubers were surrounded by roots, which were well gripped to the soil which made harvesting process difficult. Therefore, a new tool equipped with cutting device to cut the roots of D. hispida is required. The information from the experiments is used to model and simulate the tool in Computer Aided Design (CAD) environment. The solid modeling software solidworks was used for the design, modeling and simulation of the equipment and the finite element analysis to determine the stress, force and displacement were also conducted.
title Simulation and Analysis of Innovative Hand Tool Harvester
title_full Simulation and Analysis of Innovative Hand Tool Harvester
title_fullStr Simulation and Analysis of Innovative Hand Tool Harvester
title_full_unstemmed Simulation and Analysis of Innovative Hand Tool Harvester
title_short Simulation and Analysis of Innovative Hand Tool Harvester
title_sort simulation and analysis of innovative hand tool harvester