DocumentCode :
2570137
Title :
A Novel Magnetic Nickel Mold Combined Nano-Particle Fluid Electromagnetism Imprinting on Replicating Microstructures
Author :
Weng, Yung-Jin ; Weng, Yung-Chun ; Wong, Yong-Cheng ; Yang, Sen-Yeu
Author_Institution :
Center for Gen. Educ., Kainan Univ., Taoyuan, Taiwan
fYear :
2009
fDate :
15-17 May 2009
Firstpage :
967
Lastpage :
970
Abstract :
This study proposes a novel technology using nano-particle fluid electromagnetism to control the direct hot imprint resist of nickel mold. Combining the present gas-assisted nanoparticle hot imprint molding technology, electroforming technology, and self-designed heatable electromagnetic plate for even control and progressive pressuring technology, this study used electromagnetic nickel mold direct hot imprint to replicate micro structures, in order to make the molding technology and application of micro nanoimprint more mature. This study first used gas-assisted nanoparticle hot embossing method to replicate structures of microlens of original silicon molds on PC, so as to obtain complementary structural patterns. This PC film with structures of microlens is cast into nickel molds by electroforming. This nickel mold was used as the mold for magnetic embossing to imprint hot plastic PMMA.The result showed that through gas-assisted nanoparticle hot embossing molding, casting and component magnetic PDMS soft mold casting, molds of high costs and complicated production process can be massively replicated, and the replication precision is good. Hot gas embossing PDMS film and the surface of base materials can achieve even pressure and conformal contact, thus significantly improving the effective imprint area and imprintability. Through electroforming, casting duration of magnetic nickel molds can be shortened and costs can be effectively lowered. Moreover, electromagnetic plate was used to evenly control the direct hot pressure imprint resist, which is an advantage of the production process of micro structures.
Keywords :
casting; electroforming; embossing; moulding; nanolithography; nanoparticles; nickel; replica techniques; soft lithography; Ni; casting; direct hot imprint resist; electroforming technology; gas-assisted nanoparticle hot embossing; hot plastic PMMA; magnetic PDMS soft mold casting; magnetic mold; nanoparticle fluid electromagnetism imprinting; progressive pressuring technology; replicating microstructures; self-designed heatable electromagnetic plate; Casting; Embossing; Lenses; Magnetic films; Magnetic liquids; Microoptics; Microstructure; Nickel; Pressure control; Resists; Component casting; Electroforming; Electromagnetism controlled imprint; Gas-assisted nanoparticle hot embossing; magnetic nickel mold imprint;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
2009 International Conference on Signal Processing Systems
Conference_Location :
Singapore
Print_ISBN :
978-0-7695-3654-5
Type :
conf
DOI :
10.1109/ICSPS.2009.189
Filename :
5166935
Link To Document :
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