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Rapid Prototyping of Polymer Microfluidic Devices Using CAD/CAM Tools for Laser Micromachining  

Iovenitti, Pio G. (Industrial Research Institute Swinburne, Faculty of Engineering & Industrial Sciences Swinburne University of Technology)
Mutapcic, Emir (Industrial Research Institute Swinburne, Faculty of Engineering & Industrial Sciences Swinburne University of Technology)
Hume, Richard (Industrial Research Institute Swinburne, Faculty of Engineering & Industrial Sciences Swinburne University of Technology)
Hayes, Jason P. (Industrial Research Institute Swinburne, Faculty of Engineering & Industrial Sciences Swinburne University of Technology)
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Abstract
A CAD/CAM system has been developed for rapid prototyping (RP) of microfluidic devices based on excimer laser micromachining. The system comprises of two complementary softwares. One, the CAM tool, creates part programs from CAD models. The other, the Simulator Tool, uses a part program to generate the laser tool path and the 2D and 3D graphical representation of the machined microstructure. The CAM tool's algorithms use the 3D geometry of a microstructure, defined as an STL file exported from a CAD system, and process parameters (laser fluence, pulse repetition frequency, number of shots per area, wall angle), to automatically generate Numerical Control (NC) part programs for the machine controller. The performance of the system has been verified and demonstrated by machining a particle transportation device. The CAM tool simplifies part programming and replaces the tedious trial-and-error approach to creating programs. The simulator tool accepts manual or computer generated part programs, and displays the tool path and the machined structure. This enables error checking and editing of the program before machining, and development of programs for complex microstructures. Combined, the tools provide a user-friendly CAD/CAM system environment for rapid prototyping of microfluidic devices.
Keywords
Excimer laser micromachining; CAD/CAM; RP; Polymer microstructures; Microfluidic devices;
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1 Stassen Boehlen, I., Fieret, J., Holmes A. S. and Lee K. W., (2003), CAD/CAM software for an industrial laser micro-manufacturing tool, SPIE Vol. 4977 Conference Proceedings, 198-206
2 Hume, R.G., Iovenitti, P.G., Hayes, J.P. and Harvey, E., (2002), Simulation of Excimer Laser Micromachined 3D Surface using a CAD Solid Modelling Package, Symposium Proceedings on Smart Structures, Devices, and Systems, SPIE Vol. 4935, 436-444
3 Mutapcic, E., Iovenitti, P. and Hayes, J.P, (2002), Automated generation of NC part programs for excimer laser ablation micromachining from known 3D surfaces, Symposium Proceedings on Smart Materials, Nano-, and Micro-Smart Systems, SPIE Vol. 4935, 445-453
4 Chang, C-H., Melkanoff, M.A., (1989), NC machine programming and software design, Prentice Hall
5 Narasimhan, J. and Papautsky, I., (2004), Polymer embossing tools for rapid prototyping of plastic microfluidic devices, J. Micromech. Microeng. 14, 96–103
6 Tonshoff HK, Graumann C, Hesener H, Rinke M, (1998), NC-controlled production of smooth 3-D surfaces in brittle materials with 193nm Excimer Laser, Micromachining and Microfabrication Process Technology IV , SPIE Vol. 3511 Conference Proceedings, 56-66
7 Duffy, D.C., Schueller, O.J.A, Brittain, S.T. and Whitesides, G.M., (1999), Rapid prototyping of microfluidic switches in poly(dimethyl siloxane) and their actuation by electro-osmotic flow, J. Micromech. Microeng. 9, 211–217   DOI   ScienceOn
8 Krishnan, A. and Nassar, R., (1998), Rapid prototyping using excimer laser microfabrication system, Materials and Device Characterization in Micromachining, SPIE Vol. 3512 Conference Proceedings, 374-385
9 Mutapcic, E., Iovenitti, P. and Hayes, J.P., (2005), A prototyping and microfabrication CAD/CAM tool for excimer laser micromachining process, The International Journal of Advanced Manufacturing Technology. In press (Published online 24November 2005)
10 Hume, R.G., Iovenitti, P.G., and Harvey, E., (2003), CAD Simulator for Excimer Laser Micromachined 3D Surfaces, mstnews 2/03, 43-45
11 Oxley, A., (1985), Surface fitting by triangulation, The Computer Journal (28/3), 335-339   DOI   ScienceOn
12 Mutapcic, E., Iovenitti, P. and Harvey, E., (2000), A 3D visualization tool for Excimer laser micromachining, Smart Materials and MEMS, SPIE Vol. 4236 Conference Proceedings, 230-241
13 Perkins, D., (2000), CAD/CAM systems for an Excimer 8000 Series Laser Micro Machining System, MEng(Honours) Dissertation, Computer Systems Engineering, University of Wales, Bangor
14 Sandison, M, E, and Morgan, H., (2005), Rapid fabrication of polymer microfluidic systems for the production of artificial lipid bilayers, J. Micromech. Microeng. 15, S139–S144
15 Tonshoff, H.K., von Alvensleben, F. and Kulik, C., (1999), Advanced 3D-CAD-interface for micromachining with excimer lasers, Design, Test, and Microfabrication of MEMS and MOEMS, SPIE Vol. 3680 Conference Proceedings, 340-348