Micromachined shape-memory-alloy microactuators and their application in biomedical devices

Shape memory alloys (SMAs) are a class of smart materials characterized by shape memory effect and pseudo-elastic behavior. They have the capability to retain their original form when subjected to certain stimuli, such as heat or a magnetic field. These unique properties have attracted many research...

全面介紹

Saved in:
書目詳細資料
Main Authors: Zainal, Mohammad Amri, Sahlan, Shafishuhaza, Mohamed Ali, Mohamed Sultan
格式: Article
語言:English
出版: MDPI 2015
主題:
在線閱讀:http://eprints.utm.my/id/eprint/58547/1/MohammadAmri2015_MicromachinedShapeMemoryAlloyMicroactuators.pdf
http://eprints.utm.my/id/eprint/58547/
http://dx.doi.org/10.3390/mi6070879
標簽: 添加標簽
沒有標簽, 成為第一個標記此記錄!
id my.utm.58547
record_format eprints
spelling my.utm.585472021-12-17T06:56:48Z http://eprints.utm.my/id/eprint/58547/ Micromachined shape-memory-alloy microactuators and their application in biomedical devices Zainal, Mohammad Amri Sahlan, Shafishuhaza Mohamed Ali, Mohamed Sultan TK Electrical engineering. Electronics Nuclear engineering Shape memory alloys (SMAs) are a class of smart materials characterized by shape memory effect and pseudo-elastic behavior. They have the capability to retain their original form when subjected to certain stimuli, such as heat or a magnetic field. These unique properties have attracted many researchers to seek their application in various fields including transportation, aerospace, and biomedical. The ease process adaption from semiconductor manufacturing technology provides many opportunities for designing micro-scale devices using this material. This paper gives an overview of the fabrication and manufacturing technique of thin-film and bulk micromachined SMAs. Key features such as material properties, transformation temperature, material composition, and actuation method are also presented. The application and micromechanism for both thin-film and bulk SMA are described. Finally, the microactuator devices emphasized for biomedical applications such as microgrippers and micropumps are highlighted. The presented review will provide information for researchers who are actively working on the development of SMA-based microscale biomedical devices. MDPI 2015 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/58547/1/MohammadAmri2015_MicromachinedShapeMemoryAlloyMicroactuators.pdf Zainal, Mohammad Amri and Sahlan, Shafishuhaza and Mohamed Ali, Mohamed Sultan (2015) Micromachined shape-memory-alloy microactuators and their application in biomedical devices. Micromachines, 6 (7). pp. 879-901. ISSN 2072-4292 http://dx.doi.org/10.3390/mi6070879 DOI:10.3390/mi6070879
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Zainal, Mohammad Amri
Sahlan, Shafishuhaza
Mohamed Ali, Mohamed Sultan
Micromachined shape-memory-alloy microactuators and their application in biomedical devices
description Shape memory alloys (SMAs) are a class of smart materials characterized by shape memory effect and pseudo-elastic behavior. They have the capability to retain their original form when subjected to certain stimuli, such as heat or a magnetic field. These unique properties have attracted many researchers to seek their application in various fields including transportation, aerospace, and biomedical. The ease process adaption from semiconductor manufacturing technology provides many opportunities for designing micro-scale devices using this material. This paper gives an overview of the fabrication and manufacturing technique of thin-film and bulk micromachined SMAs. Key features such as material properties, transformation temperature, material composition, and actuation method are also presented. The application and micromechanism for both thin-film and bulk SMA are described. Finally, the microactuator devices emphasized for biomedical applications such as microgrippers and micropumps are highlighted. The presented review will provide information for researchers who are actively working on the development of SMA-based microscale biomedical devices.
format Article
author Zainal, Mohammad Amri
Sahlan, Shafishuhaza
Mohamed Ali, Mohamed Sultan
author_facet Zainal, Mohammad Amri
Sahlan, Shafishuhaza
Mohamed Ali, Mohamed Sultan
author_sort Zainal, Mohammad Amri
title Micromachined shape-memory-alloy microactuators and their application in biomedical devices
title_short Micromachined shape-memory-alloy microactuators and their application in biomedical devices
title_full Micromachined shape-memory-alloy microactuators and their application in biomedical devices
title_fullStr Micromachined shape-memory-alloy microactuators and their application in biomedical devices
title_full_unstemmed Micromachined shape-memory-alloy microactuators and their application in biomedical devices
title_sort micromachined shape-memory-alloy microactuators and their application in biomedical devices
publisher MDPI
publishDate 2015
url http://eprints.utm.my/id/eprint/58547/1/MohammadAmri2015_MicromachinedShapeMemoryAlloyMicroactuators.pdf
http://eprints.utm.my/id/eprint/58547/
http://dx.doi.org/10.3390/mi6070879
_version_ 1720436879415836672
score 13.252575