Anti-sticking behavior of DLC-coated silicon micro-molds

被引:46
作者
Saha, B. [1 ]
Liu, E. [2 ]
Tor, S. B. [1 ,2 ]
Khun, N. W. [2 ]
Hardt, D. E. [3 ]
Chun, J. H. [3 ]
机构
[1] Nanyang Technol Univ, Singapore MIT Alliance, Singapore 637460, Singapore
[2] Nanyang Technol Univ, Sch Mech & Aerosp Engn, Singapore 639798, Singapore
[3] MIT, Dept Mech Engn, Singapore MIT Alliance, Cambridge, MA 02139 USA
关键词
TETRAHEDRAL AMORPHOUS-CARBON; SURFACE FREE-ENERGY; MECHANICAL-PROPERTIES; NANOMECHANICAL PROPERTIES; THERMAL-EXPANSION; RAMAN-SPECTRA; FILMS; COATINGS; WEAR; MICROSTRUCTURE;
D O I
10.1088/0960-1317/19/10/105025
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Pure carbon-(C), nitrogen-(N) and titanium-(Ti) doped diamond-like carbon (DLC) coatings were deposited on silicon (Si) micro-molds by dc magnetron sputtering deposition to improve the tribological performance of the micro-molds. The coated and uncoated Si molds were used in injection molding for the fabrication of secondary metal-molds, which were used for the replication of micro-fluidic devices. The bonding structure, surface roughness, surface energy, critical load and friction coefficient of the DLC coatings were characterized with micro-Raman spectroscopy, atomic force microscopy (AFM), contact angle, microscratch and ball-on-disc sliding wear tests, respectively. It was observed that the doping conditions had significant effects on Raman peak positions, mechanical and tribological properties of the coatings. The G peak shifted toward a lower position with N and Ti doping. The DLC coating deposited with 1 sccm N-2 flow rate showed the lowest G peak position and the smoothest surface. The surface energies of the pure carbon and Ti-doped DLC coatings were lower than that of the N-doped DLC, which was more significant at a higher N-2 flow rate. In terms of adhesion and friction coefficient, it was observed that the Ti-doped DLC coating had the best performance. Ti incorporated in the DLC coating decreased the residual stress of the coating, which improved the adhesive strength of the coating with the Si substrate.
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页数:7
相关论文
共 40 条
[1]   Human micro-vascular endothelial cell seeding on Cr-DLC thin films for mechanical heart valve applications [J].
Ali, N. ;
Kousar, Y. ;
Okpalugo, T. I. ;
Singh, V. ;
Pease, M. ;
Ogwu, A. A. ;
Gracio, J. ;
Titus, E. ;
Meletis, E. I. ;
Jackson, M. J. .
THIN SOLID FILMS, 2006, 515 (01) :59-65
[2]   The mechanical and biocompatibility properties of DLC-Si films prepared by pulsed DC plasma activated chemical vapor deposition [J].
Bendavid, A. ;
Martin, P. J. ;
Comte, C. ;
Preston, E. W. ;
Haq, A. J. ;
Ismail, F. S. Magdon ;
Singh, R. K. .
DIAMOND AND RELATED MATERIALS, 2007, 16 (08) :1616-1622
[3]   The demolding of powder injection molded micro-structures: analysis, simulation and experiment [J].
Fu, G. ;
Tor, S. B. ;
Loh, N. H. ;
Tay, B. Y. ;
Hardt, D. E. .
JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2008, 18 (07)
[4]  
FU G, 2008, 5 INT S NAN
[5]   A micro powder injection molding apparatus for high aspect ratio metal micro-structure production [J].
Fu, Gang ;
Tor, Shubeng ;
Loh, Ngiaphiang ;
Tay, Beeyen ;
Hardt, David E. .
JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2007, 17 (09) :1803-1809
[6]  
HENANN DL, 2008, BULK METALLIC GLASSE
[7]   Analyses of mechanical failure in nanoimprint processes [J].
Hsueh, Chun-Hway ;
Lee, Sanboh ;
Lin, Hung-Yi ;
Chen, Lai-Sheng ;
Wang, Wei-Han .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2006, 433 (1-2) :316-322
[8]   SURFACE-ENERGY ANALYSIS OF BIOADHESION [J].
KAELBLE, DH ;
MOACANIN, J .
POLYMER, 1977, 18 (05) :475-482
[9]   Tribological and dry machining evaluation of superhard TiB2/TiC multilayer coatings deposited on Si(001), M2 steel, and C3WC cutting tool inserts using magnetron sputtering [J].
Lee, KW ;
Chung, YW ;
Korach, C ;
Keer, LM .
SURFACE & COATINGS TECHNOLOGY, 2005, 194 (2-3) :184-189
[10]   Mechanical characteristics and corrosion behavior of (Ti,Al)N coatings on dental alloys [J].
Liu, GT ;
Duh, JG ;
Chung, KH ;
Wang, JH .
SURFACE & COATINGS TECHNOLOGY, 2005, 200 (07) :2100-2105