DocumentCode :
74960
Title :
Fabrication and analytical evaluation of three-dimensional microsolenoids achieved in fused silica by femtosecond-laser-based microsolidifying process
Author :
Keyin Liu ; Qing Yang ; Yulong Zhao ; Feng Chen ; Chao Shan ; Xiaole Fan ; Xiangwei Meng ; Guangqing Du ; Hao Bian
Author_Institution :
State Key Lab. for Manuf. Syst. Eng. & Key Lab. of Photonics Technol. for Inf. of Shaanxi Province, Xi´an Jiaotong Univ., Xi´an, China
Volume :
8
Issue :
10
fYear :
2013
fDate :
Oct. 2013
Firstpage :
623
Lastpage :
628
Abstract :
In this reported work, a femtosecond-laser-based microsolidifying method was employed to fabricate three-dimensional (3D) microsolenoids by injecting liquid metal into helicalmicrochannels in fused silica and solidifying the liquid metal, and a proposed finite element method-3D-vector simulation approach was used to analyse the structure influence. An improved femtosecond laser irradiation followed by chemical etching technology was used to fabricate the complex 3D microchannels, in which an optimal laser power compensation strategy of tuning laser power from 7 to 12 mW was involved. Asilanisation process was carried out before the injection process to facilitate the injection of gallium. 3D numerical simulations of the microsolenoids were carried out by an electromagnetic-coupled analysis method; and a simulation-based co-energy calculation method was used to evaluate the inductance of the 3D microsolenoids. 3D microsolenoids of optimised configurations were then achieved according to the analytical results.
Keywords :
finite element analysis; laser materials processing; microfabrication; solenoids; 3D microchannels; 3D microsolenoids; 3D numerical simulations; asilanisation process; chemical etching technology; electromagnetic-coupled analysis; femtosecond laser irradiation; femtosecond-laser-based microsolidifying process; finite element method-3D-vector simulation; fused silica; helicalmicrochannels; liquid metal; optimal laser power compensation strategy; power 7 mW to 12 mW; simulation-based co-energy calculation method; three-dimensional microsolenoids; tuning laser;
fLanguage :
English
Journal_Title :
Micro & Nano Letters, IET
Publisher :
iet
ISSN :
1750-0443
Type :
jour
DOI :
10.1049/mnl.2013.0306
Filename :
6651460
Link To Document :
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