Design, Analysis and Fabrication for Conceptual Innovative Hand Tool

Bibliographic Details
Format: Restricted Document
_version_ 1860796933050728448
building INTELEK Repository
collection Online Access
collectionurl https://intelek.unisza.edu.my/intelek/pages/search.php?search=!collection407072
date 2014-08-13 14:28:39
format Restricted Document
id 10734
institution UniSZA
originalfilename 4850-01-FH02-FSTK-15-03010.pdf
person Dr Fazlil
recordtype oai_dc
resourceurl https://intelek.unisza.edu.my/intelek/pages/view.php?ref=10734
spelling 10734 https://intelek.unisza.edu.my/intelek/pages/view.php?ref=10734 https://intelek.unisza.edu.my/intelek/pages/search.php?search=!collection407072 Restricted Document Article Journal application/pdf 7 1.6 Adobe Acrobat Pro DC 20 Paper Capture Plug-in Dr Fazlil 2014-08-13 14:28:39 4850-01-FH02-FSTK-15-03010.pdf UniSZA Private Access Design, Analysis and Fabrication for Conceptual Innovative Hand Tool Applied Mechananics and Materials Dioscorea hispida is a poisonous plant normally found in forest where scientific studies have shown that its tuber contains toxic poison and can be consumed after its poison is removed. Traditionally the tubers were placed in flowing river water for several days. In the harvesting aspect, an innovative hand tool were conceptually designed to replace the traditional hoe or "cangkul". Using IMADA digital force gauge to measure the force required for pulling out the tuber and reverse engineering methods, an innovative hand tool were designed and developed. The results from experiments showed that the force required for harvesting the Dioscorea hispida tuber is found significant with its weight versus regression squared (R2) of 0.86. The information of optimum force required from field experiment is used to model the simulation and practicality in Computer Aided Design (CAD) environment system. The finite element on stress distribution on selected material of hand tool was simulated by uploading the material characteristic on simulation program embedded in Solidworks software. The end result of the simulation is based on visualization of analysis in Solidworks while producing the hand tool for designing and fabrication from material which is lighter and stronger. 564 1 752-757
spellingShingle Design, Analysis and Fabrication for Conceptual Innovative Hand Tool
summary Dioscorea hispida is a poisonous plant normally found in forest where scientific studies have shown that its tuber contains toxic poison and can be consumed after its poison is removed. Traditionally the tubers were placed in flowing river water for several days. In the harvesting aspect, an innovative hand tool were conceptually designed to replace the traditional hoe or "cangkul". Using IMADA digital force gauge to measure the force required for pulling out the tuber and reverse engineering methods, an innovative hand tool were designed and developed. The results from experiments showed that the force required for harvesting the Dioscorea hispida tuber is found significant with its weight versus regression squared (R2) of 0.86. The information of optimum force required from field experiment is used to model the simulation and practicality in Computer Aided Design (CAD) environment system. The finite element on stress distribution on selected material of hand tool was simulated by uploading the material characteristic on simulation program embedded in Solidworks software. The end result of the simulation is based on visualization of analysis in Solidworks while producing the hand tool for designing and fabrication from material which is lighter and stronger.
title Design, Analysis and Fabrication for Conceptual Innovative Hand Tool
title_full Design, Analysis and Fabrication for Conceptual Innovative Hand Tool
title_fullStr Design, Analysis and Fabrication for Conceptual Innovative Hand Tool
title_full_unstemmed Design, Analysis and Fabrication for Conceptual Innovative Hand Tool
title_short Design, Analysis and Fabrication for Conceptual Innovative Hand Tool
title_sort design, analysis and fabrication for conceptual innovative hand tool