Finite element analysis for stress distribution of hand tool harvester

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building INTELEK Repository
caption Procedia Engineering, 68 (2013) 219-224. doi:10.1016/j.proeng.2013.12.171
collection Online Access
collectionurl https://intelek.unisza.edu.my/intelek/pages/search.php?search=!collection407072
date 2024-08-28 18:47:35
format Restricted Document
id 14597
institution UniSZA
originalfilename 2699-01-FH02-FBIM-16-06745.pdf
person M.A.H.A. Ssomad
recordtype oai_dc
resourceurl https://intelek.unisza.edu.my/intelek/pages/view.php?ref=14597
spelling 14597 https://intelek.unisza.edu.my/intelek/pages/view.php?ref=14597 https://intelek.unisza.edu.my/intelek/pages/search.php?search=!collection407072 Restricted Document Article Journal application/pdf 7 Adobe Acrobat Pro DC 20 Paper Capture Plug-in with ClearScan 1.7 M.A.H.A. Ssomad Procedia Engineering, 68 (2013) 219-224. doi:10.1016/j.proeng.2013.12.171 2024-08-28 18:47:35 Procedia Engineering 68 (2013) 219-224. doi:10.1016/j.proeng.2013.12.171 2699-01-FH02-FBIM-16-06745.pdf 2013 UniSZA Private Access Finite element analysis for stress distribution of hand tool harvester Procedia Engineering This paper introduced the essential development of an innovative hand tool harvester since harvesting the tuber of Dioscorea hispida is tedious and difficult while the existing hand tool is heavy. The information of optimum force required from field experiment is used to model the simulation and practicability in Computer Aided Design (CAD) environment system. Several tests of maximum/minimum stress and displacement on different material of hand tool were simulated by uploading the material characteristic on simulation program embedded in Solidworks software. Three materials which were commonly available in market namely Plain Carbon Steel, Aluminium Alloy and Cast Carbon Steel were chosen. This modeling software is very helpful to manage the model and simulate the workability of the designed equipment through stress and displacement mode analysis. The comparison between the tools that are based on the acquired land and tuber weight factor were also noted via Solidworks simulation. The end result of the simulation is based on visualization of analysis in Solidworks while producing the hand tool for designing and fabrication from lighter and stronger material. 68 2013 219 -224 https://www.scopus.com/record/display.uri?eid=2-s2.0-8489956
spellingShingle Finite element analysis for stress distribution of hand tool harvester
subject Procedia Engineering
68 (2013) 219-224. doi:10.1016/j.proeng.2013.12.171
summary This paper introduced the essential development of an innovative hand tool harvester since harvesting the tuber of Dioscorea hispida is tedious and difficult while the existing hand tool is heavy. The information of optimum force required from field experiment is used to model the simulation and practicability in Computer Aided Design (CAD) environment system. Several tests of maximum/minimum stress and displacement on different material of hand tool were simulated by uploading the material characteristic on simulation program embedded in Solidworks software. Three materials which were commonly available in market namely Plain Carbon Steel, Aluminium Alloy and Cast Carbon Steel were chosen. This modeling software is very helpful to manage the model and simulate the workability of the designed equipment through stress and displacement mode analysis. The comparison between the tools that are based on the acquired land and tuber weight factor were also noted via Solidworks simulation. The end result of the simulation is based on visualization of analysis in Solidworks while producing the hand tool for designing and fabrication from lighter and stronger material.
title Finite element analysis for stress distribution of hand tool harvester
title_full Finite element analysis for stress distribution of hand tool harvester
title_fullStr Finite element analysis for stress distribution of hand tool harvester
title_full_unstemmed Finite element analysis for stress distribution of hand tool harvester
title_short Finite element analysis for stress distribution of hand tool harvester
title_sort finite element analysis for stress distribution of hand tool harvester