Testing of thermal micro-actuator of polymer composite

A new class of thermal micro-actuators has been developed based on a multi-material composite, which consists of a silicon skeleton, a SU-8 epoxy thermal expander and an aluminium heater. As a composite, it has room for performance improvements by design. The performance of these micro-actua...

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المؤلف الرئيسي: Teo, Yu Hao.
مؤلفون آخرون: School of Mechanical and Aerospace Engineering
التنسيق: Final Year Project (FYP)
اللغة:English
منشور في: 2011
الموضوعات:
الوصول للمادة أونلاين:http://hdl.handle.net/10356/45689
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author Teo, Yu Hao.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Teo, Yu Hao.
author_sort Teo, Yu Hao.
collection NTU
description A new class of thermal micro-actuators has been developed based on a multi-material composite, which consists of a silicon skeleton, a SU-8 epoxy thermal expander and an aluminium heater. As a composite, it has room for performance improvements by design. The performance of these micro-actuators is determined by their ability to expand under heat, namely the coefficient of linear thermal expansion (CTE). The CTE refers to how much a material will expand per degree of temperature, and can be expressed as a ratio of change in length to the product of initial length and change in temperature. The CTE was evaluated by recording the changes in lengths during heating. Comparisons of results using different magnifications were performed. In total, nine samples were tested and the best three sample results were selected. On average, results showed coefficients of thermal expansion between 2.7x10-5 K–1 to 3.4x10-5 K–1, which was in the expected range. The actuator is a very important part of the hard disk that partakes in the function and performance of the drive. Hence, improvements in the actuator design are critical to enhancing the seek time of a hard disk.
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spelling ntu-10356/456892023-03-04T18:26:56Z Testing of thermal micro-actuator of polymer composite Teo, Yu Hao. School of Mechanical and Aerospace Engineering Lau Gih-Keong DRNTU::Engineering::Mechanical engineering::Control engineering A new class of thermal micro-actuators has been developed based on a multi-material composite, which consists of a silicon skeleton, a SU-8 epoxy thermal expander and an aluminium heater. As a composite, it has room for performance improvements by design. The performance of these micro-actuators is determined by their ability to expand under heat, namely the coefficient of linear thermal expansion (CTE). The CTE refers to how much a material will expand per degree of temperature, and can be expressed as a ratio of change in length to the product of initial length and change in temperature. The CTE was evaluated by recording the changes in lengths during heating. Comparisons of results using different magnifications were performed. In total, nine samples were tested and the best three sample results were selected. On average, results showed coefficients of thermal expansion between 2.7x10-5 K–1 to 3.4x10-5 K–1, which was in the expected range. The actuator is a very important part of the hard disk that partakes in the function and performance of the drive. Hence, improvements in the actuator design are critical to enhancing the seek time of a hard disk. Bachelor of Engineering (Mechanical Engineering) 2011-06-16T03:40:33Z 2011-06-16T03:40:33Z 2011 2011 Final Year Project (FYP) http://hdl.handle.net/10356/45689 en Nanyang Technological University 55 p. application/pdf
spellingShingle DRNTU::Engineering::Mechanical engineering::Control engineering
Teo, Yu Hao.
Testing of thermal micro-actuator of polymer composite
title Testing of thermal micro-actuator of polymer composite
title_full Testing of thermal micro-actuator of polymer composite
title_fullStr Testing of thermal micro-actuator of polymer composite
title_full_unstemmed Testing of thermal micro-actuator of polymer composite
title_short Testing of thermal micro-actuator of polymer composite
title_sort testing of thermal micro actuator of polymer composite
topic DRNTU::Engineering::Mechanical engineering::Control engineering
url http://hdl.handle.net/10356/45689
work_keys_str_mv AT teoyuhao testingofthermalmicroactuatorofpolymercomposite