Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham

In this modem technologies, manufacturing industries facing a crisis that affect the environmental performance which is exceed of energy consumption in production. The machinists and manufacturers have found a way of reducing energy consumption during machining processes such as machining strategies...

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Main Author: Badrulsham, Muhammad Ikmal Hakim
Format: Student Project
Language:English
Published: 2020
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/37763/1/37763.pdf
http://ir.uitm.edu.my/id/eprint/37763/
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spelling my.uitm.ir.377632020-12-03T22:16:07Z http://ir.uitm.edu.my/id/eprint/37763/ Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham Badrulsham, Muhammad Ikmal Hakim Machine shops and machine shop practice Machine tools and machining Abrading machinery. Grinding, lapping, etc. Sharpening Power resources Energy consumption Energy audits In this modem technologies, manufacturing industries facing a crisis that affect the environmental performance which is exceed of energy consumption in production. The machinists and manufacturers have found a way of reducing energy consumption during machining processes such as machining strategies optimization. Unfortunately, manufacturing industries have difficulties in practicing the optimization of machining strategies which is there is limited guidance to measure and predict the energy usage. This research developed a prediction tool to analyze the energy consumption in CNC milling machine operation and verified the effectiveness and functionality of the energy prediction tool. The prediction tool was generated using MATLAB Graphical User Interface (GUI) which study the energy consumption of CNC milling machine which affected by the optimization of machining parameters such as spindle speed (rpm), feed rate (mm/min) and depth of cut (mm) and also the behaviour of cutting paths used which are morph spiral, parallel and spiral. The finding of this research is the development of comprehensive GUI tool to predict the energy consumption during machining operation of 5-axis CNC milling. The accuracy of this developed GUI is measured to be 95% accurate which is done by comparing the predicted value with experimental data. As a consequence, the proposed machining energy GUI is capable to measure and predict the energy usage during machining operation of 5-axis CNC milling. 2020-07 Student Project NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/37763/1/37763.pdf Badrulsham, Muhammad Ikmal Hakim (2020) Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham. [Student Project]
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Machine shops and machine shop practice
Machine tools and machining
Abrading machinery. Grinding, lapping, etc. Sharpening
Power resources
Energy consumption
Energy audits
spellingShingle Machine shops and machine shop practice
Machine tools and machining
Abrading machinery. Grinding, lapping, etc. Sharpening
Power resources
Energy consumption
Energy audits
Badrulsham, Muhammad Ikmal Hakim
Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham
description In this modem technologies, manufacturing industries facing a crisis that affect the environmental performance which is exceed of energy consumption in production. The machinists and manufacturers have found a way of reducing energy consumption during machining processes such as machining strategies optimization. Unfortunately, manufacturing industries have difficulties in practicing the optimization of machining strategies which is there is limited guidance to measure and predict the energy usage. This research developed a prediction tool to analyze the energy consumption in CNC milling machine operation and verified the effectiveness and functionality of the energy prediction tool. The prediction tool was generated using MATLAB Graphical User Interface (GUI) which study the energy consumption of CNC milling machine which affected by the optimization of machining parameters such as spindle speed (rpm), feed rate (mm/min) and depth of cut (mm) and also the behaviour of cutting paths used which are morph spiral, parallel and spiral. The finding of this research is the development of comprehensive GUI tool to predict the energy consumption during machining operation of 5-axis CNC milling. The accuracy of this developed GUI is measured to be 95% accurate which is done by comparing the predicted value with experimental data. As a consequence, the proposed machining energy GUI is capable to measure and predict the energy usage during machining operation of 5-axis CNC milling.
format Student Project
author Badrulsham, Muhammad Ikmal Hakim
author_facet Badrulsham, Muhammad Ikmal Hakim
author_sort Badrulsham, Muhammad Ikmal Hakim
title Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham
title_short Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham
title_full Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham
title_fullStr Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham
title_full_unstemmed Development of graphical user interface for milling machine energy prediction tool / Muhammad Ikmal Hakim Badrulsham
title_sort development of graphical user interface for milling machine energy prediction tool / muhammad ikmal hakim badrulsham
publishDate 2020
url http://ir.uitm.edu.my/id/eprint/37763/1/37763.pdf
http://ir.uitm.edu.my/id/eprint/37763/
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score 13.159267