Application of shape memory alloy ( SMA ) in radiant - actuated solar panels' deploy mechanism of nano - satellite

This project focuses on development of smart-material-based deployable mechanism for space application. Main objective of this project is to achieve deployment of satellite components, with zero-power consumption from the satellite, by exploiting feasible designs of SMA Actuator that is able to harv...

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Bibliographische Detailangaben
1. Verfasser: Tan, Di Yang
Weitere Verfasser: Liu Yong
Format: Final Year Project (FYP)
Sprache:English
Veröffentlicht: 2015
Schlagworte:
Online Zugang:http://hdl.handle.net/10356/64000
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author Tan, Di Yang
author2 Liu Yong
author_facet Liu Yong
Tan, Di Yang
author_sort Tan, Di Yang
collection NTU
description This project focuses on development of smart-material-based deployable mechanism for space application. Main objective of this project is to achieve deployment of satellite components, with zero-power consumption from the satellite, by exploiting feasible designs of SMA Actuator that is able to harvest abundant solar energy in space. In this project, complete deployment system is presented, including the actuating mechanism and auxiliary mechanisms which complement the performance of the system. Two modes of actuating mechanisms are designed, namely Tensile Actuating and Slip-through Actuating, based on one-way memory effect of SMA in tensile mode. Both designs are first tested using forced convection heating, to examine its mechanical performances, such as reliability, reaction time, vibration endurance and compactness of the design. The most applicable design is then integrated with Radiation Collector and tested under the Sun-Simulator. Finally, conclusions will be drawn out based on the experimental results and future improvements will be proposed.
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spelling ntu-10356/640002023-03-04T19:28:12Z Application of shape memory alloy ( SMA ) in radiant - actuated solar panels' deploy mechanism of nano - satellite Tan, Di Yang Liu Yong School of Mechanical and Aerospace Engineering Satellite Engineering Centre DRNTU::Engineering::Electrical and electronic engineering::Satellite telecommunication This project focuses on development of smart-material-based deployable mechanism for space application. Main objective of this project is to achieve deployment of satellite components, with zero-power consumption from the satellite, by exploiting feasible designs of SMA Actuator that is able to harvest abundant solar energy in space. In this project, complete deployment system is presented, including the actuating mechanism and auxiliary mechanisms which complement the performance of the system. Two modes of actuating mechanisms are designed, namely Tensile Actuating and Slip-through Actuating, based on one-way memory effect of SMA in tensile mode. Both designs are first tested using forced convection heating, to examine its mechanical performances, such as reliability, reaction time, vibration endurance and compactness of the design. The most applicable design is then integrated with Radiation Collector and tested under the Sun-Simulator. Finally, conclusions will be drawn out based on the experimental results and future improvements will be proposed. Bachelor of Engineering (Mechanical Engineering) 2015-05-21T09:20:03Z 2015-05-21T09:20:03Z 2014 2014 Final Year Project (FYP) http://hdl.handle.net/10356/64000 en Nanyang Technological University 69 p. application/pdf
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Satellite telecommunication
Tan, Di Yang
Application of shape memory alloy ( SMA ) in radiant - actuated solar panels' deploy mechanism of nano - satellite
title Application of shape memory alloy ( SMA ) in radiant - actuated solar panels' deploy mechanism of nano - satellite
title_full Application of shape memory alloy ( SMA ) in radiant - actuated solar panels' deploy mechanism of nano - satellite
title_fullStr Application of shape memory alloy ( SMA ) in radiant - actuated solar panels' deploy mechanism of nano - satellite
title_full_unstemmed Application of shape memory alloy ( SMA ) in radiant - actuated solar panels' deploy mechanism of nano - satellite
title_short Application of shape memory alloy ( SMA ) in radiant - actuated solar panels' deploy mechanism of nano - satellite
title_sort application of shape memory alloy sma in radiant actuated solar panels deploy mechanism of nano satellite
topic DRNTU::Engineering::Electrical and electronic engineering::Satellite telecommunication
url http://hdl.handle.net/10356/64000
work_keys_str_mv AT tandiyang applicationofshapememoryalloysmainradiantactuatedsolarpanelsdeploymechanismofnanosatellite