Design, build and test IIUM remote controlled glider

The main objective of this subject is to design and build a sailplane that meets certain performance requirement. Simple mission profile was used which is include warm up, taxi, takeoff, climb, cruise and landing. The cruising altitude, range and sailplanes requirements and specification has bee...

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Main Authors: Omar, Ashraf Ali, Abd Rihem, Mohd Hafizuddin, Mohamad Hashim, Abdul Rahman, Saiful Bahri, Hani Maisara, Mohamed Noor, Marissa, Ahsanah, Ahmad Najmuddin, Mahmud Zuhudi, Nurul Farahana, Joari, Iqbal, Yazid, Ahmad Shahir
Format: Conference or Workshop Item
Language:English
Published: 2010
Subjects:
Online Access:http://irep.iium.edu.my/23054/
http://irep.iium.edu.my/23054/
http://irep.iium.edu.my/23054/1/p140.pdf
id iium-23054
recordtype eprints
spelling iium-230542013-06-18T04:14:42Z http://irep.iium.edu.my/23054/ Design, build and test IIUM remote controlled glider Omar, Ashraf Ali Abd Rihem, Mohd Hafizuddin Mohamad Hashim, Abdul Rahman Saiful Bahri, Hani Maisara Mohamed Noor, Marissa Ahsanah, Ahmad Najmuddin Mahmud Zuhudi, Nurul Farahana Joari, Iqbal Yazid, Ahmad Shahir TL500 Aeronautics The main objective of this subject is to design and build a sailplane that meets certain performance requirement. Simple mission profile was used which is include warm up, taxi, takeoff, climb, cruise and landing. The cruising altitude, range and sailplanes requirements and specification has been decided base on certain criteria. The take off weight of the sailplane has been successfully estimated as 1.225 kg. NACA 4412 airfoil was used for the wing sectiion. The fuselage diensions were estimated. The length of the fuselage from nose to tail is 0.8 meter, and the fuselage cross section will be rectangular in shape. The power available was estimated as 0.2 hp. The static stability analysis shows good results since all three components which are wing fuselage and tail gives desirable stability results. After 13 weeks of hard work, the team had managed to complete the fabrication of sailplane and also had managed to have it flown by a hired RC pilot. The aircraft flew without any difficulty and the objectives was reached, which is to perform an unpowered gliding. 2010 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/23054/1/p140.pdf Omar, Ashraf Ali and Abd Rihem, Mohd Hafizuddin and Mohamad Hashim, Abdul Rahman and Saiful Bahri, Hani Maisara and Mohamed Noor, Marissa and Ahsanah, Ahmad Najmuddin and Mahmud Zuhudi, Nurul Farahana and Joari, Iqbal and Yazid, Ahmad Shahir (2010) Design, build and test IIUM remote controlled glider. In: IIUM Research, Innovation & Invention Exhibition (IRIIE 2010), 26 - 27 January 2010, Kuala Lumpur. http://www.iium.edu.my/irie/10/sub10/author/list_p.php
repository_type Digital Repository
institution_category Local University
institution International Islamic University Malaysia
building IIUM Repository
collection Online Access
language English
topic TL500 Aeronautics
spellingShingle TL500 Aeronautics
Omar, Ashraf Ali
Abd Rihem, Mohd Hafizuddin
Mohamad Hashim, Abdul Rahman
Saiful Bahri, Hani Maisara
Mohamed Noor, Marissa
Ahsanah, Ahmad Najmuddin
Mahmud Zuhudi, Nurul Farahana
Joari, Iqbal
Yazid, Ahmad Shahir
Design, build and test IIUM remote controlled glider
description The main objective of this subject is to design and build a sailplane that meets certain performance requirement. Simple mission profile was used which is include warm up, taxi, takeoff, climb, cruise and landing. The cruising altitude, range and sailplanes requirements and specification has been decided base on certain criteria. The take off weight of the sailplane has been successfully estimated as 1.225 kg. NACA 4412 airfoil was used for the wing sectiion. The fuselage diensions were estimated. The length of the fuselage from nose to tail is 0.8 meter, and the fuselage cross section will be rectangular in shape. The power available was estimated as 0.2 hp. The static stability analysis shows good results since all three components which are wing fuselage and tail gives desirable stability results. After 13 weeks of hard work, the team had managed to complete the fabrication of sailplane and also had managed to have it flown by a hired RC pilot. The aircraft flew without any difficulty and the objectives was reached, which is to perform an unpowered gliding.
format Conference or Workshop Item
author Omar, Ashraf Ali
Abd Rihem, Mohd Hafizuddin
Mohamad Hashim, Abdul Rahman
Saiful Bahri, Hani Maisara
Mohamed Noor, Marissa
Ahsanah, Ahmad Najmuddin
Mahmud Zuhudi, Nurul Farahana
Joari, Iqbal
Yazid, Ahmad Shahir
author_facet Omar, Ashraf Ali
Abd Rihem, Mohd Hafizuddin
Mohamad Hashim, Abdul Rahman
Saiful Bahri, Hani Maisara
Mohamed Noor, Marissa
Ahsanah, Ahmad Najmuddin
Mahmud Zuhudi, Nurul Farahana
Joari, Iqbal
Yazid, Ahmad Shahir
author_sort Omar, Ashraf Ali
title Design, build and test IIUM remote controlled glider
title_short Design, build and test IIUM remote controlled glider
title_full Design, build and test IIUM remote controlled glider
title_fullStr Design, build and test IIUM remote controlled glider
title_full_unstemmed Design, build and test IIUM remote controlled glider
title_sort design, build and test iium remote controlled glider
publishDate 2010
url http://irep.iium.edu.my/23054/
http://irep.iium.edu.my/23054/
http://irep.iium.edu.my/23054/1/p140.pdf
first_indexed 2023-09-18T20:34:56Z
last_indexed 2023-09-18T20:34:56Z
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