You are here: Home Material didáctico Desarrollo MICROFORMING 8. REFERENCES
Document Actions

8. REFERENCES


    [1]     QUICK DRAW & MACHINING, INC. www.quickdraw.com . 2009.
    [2]     Robotiker, "Microsistemas/microtecnologias," Revista_Robotiker, pp. 1-20, Oct.2003.
    [3]     T.A.Kals and Ralf Eckstein, "Miniaturization in sheet metal working," Journal of Materials processing technology, vol. 103 pp. 95-101, 2000.
    [4]     The Carby Corporation. www.carbycorp.com . 2009.
    [5]     Lyons Co., Inc. www.lyonsco.com . 2009.
    [6]     INVENTABLES. https://technology.inventables.com/technologies/extreme-deep-draw . 2009.
    [7]     U.Engel and R.Eckstein, "Microforming from basic research to its realization," Journal of Materials processing technology, vol. 125-126 pp. 35-44, 2002.
    [8]     Jens P.Wulfsberg, Sven-Eric Hilpert, Andreas Ostendorf, Christian Kulik, Thorsten Temme, and Katja Samm, "Sapphire tools for laser-assisted microforming," Laboratory of production engineering, University of the Federal armed forces Hamburg and Laser Zentrum Hannover, pp. 1-5, 2000.
    [9]     J.P.Wulfsberg, S.E.Hilpert, A.Ostendorf, and K.Samm, "Fundamentals of laser-assisted microforming," 1.Colloquium Processscaling, Bremen, pp. 1-8, 2003.
    [10]     R.Neugebauer, A.Schubert, J.Kadner, and T.Burkhardt. High precision embossing of microparts. Advanced technology of plasticity II, 921-926. 1999.
    [11]     N.Witulski, H.Justinger, and G.Hirt, "Validation Of FEM-Simulation For Micro Deep Drawing Process Modeling," Materials Processing and Design Modeling, Simulation and Applications,NUMIFORM 2004, pp. 952-957, 2004.
    [12]     Xianghuai Dong and Ning Ma. A estudy on size effects on process design of micro deep drawing. ICTP . 9-10-2005.
    [13]     H.Schulze Niehoff and F.Vollertsen. Versatile Micro Forming Press. 2nd ICNFT , 167-176. 2007.
    [14]     M.Terzi, K.Samm, F.von Scotti, J.Quintanilla Sanchez, A.Ostendorf, and J.Wulfsberg. Laser-Assisted Micro Forming Using Laser Structured Sapphire Dies. 2nd ICNFT , 653-663. 2007.
    [15]     G.Hirt, H.Justinger, and N.Witulski. Analysis of size effects in Micro Sheet Forming. 1.Colloquium Processscaling, Bremen . 2003.
    [16]     M.Geiger, M.Kleiner, R.Eckstein, N.Tiesler, and U.Engel, "Microforming," Annals of the cirp, vol. 50 pp. 1-18, 2001.
    [17]     Ulf Engel. Tribology in microforming. WEAR 260, 265-273. 2006.
    [18]     C.J.Wang, D.B.Shan, J.Zhou, B.Guo, and L.N.Sun. Size effects of the cavity dimension on the microforming ability during coining process. Journal of Materials processing technology 187-188, 256-259. 2007.
    [19]     F.Vollertsen. Size effects in manufacturing. 1.Colloquium Processscaling, Bremen . 2003.
    [20]     F.Vollertsen and Z.Hu. Tribological Size effects in Sheet metal forming measured by a Strip drawing test. Annals of the cirp 55. 2006.
    [21]     Linfa Peng, Fang Liu, Jun Ni, and Xinmin Lai. Size effects in thin sheet metal forming and its elastic-plastic constitutive model. Materials and Design 28, 1731-1736. 2007.
    [22]     Z.Hu, H.Schulze Niehoff, and F.Vollertsen. Tribological Size Effects in Deep Drawing. 2nd ICNFT , 573-582. 2007.
    [23]     I.Ibarrondo Mz-Iturralde, Embutición Extraprofunda, Universidad del País Vasco ed. 1985.
    [24]     Robert H.Wagoner, Fundamentals of metal forming, John Wiley and Sons ed. 2009.
    [25]     A.Messner, U.Engel, R.Kals, and F.Vollertsen, "Size effect in the fe-simulation of micro-forming processes," Journal of Materials processing technology, vol. 45 pp. 371-376, 1994.
    [26]     H.Justinger, Norbert Wituski, and Gerhard Hirt, "Experimental and numerical investigation of miniaturisation in deep drawing," Suppl.Metal Forming, pp. 693-698, 2004.
    [27]     P.Picart and J.F.Michel, "Effects of size and texture on the constitutive behaviour for very small components in sheet metal forming," Advanced technology of plasticity, vol. II pp. 895-900, 2005.
    [28]     H.Justinger, G.Hirt, and N.Witulski, "Analysis of cup geometry and temperature conditions in the miniaturized deep drawing process.," 8th ICTP, Oct.2005.
    [29]     Jenn-Terng Gau, Chris Principe, and Miao Yu. Springback behavior of brass in micro sheet forming. Preceedings of AMPT 2006 . 2006.
    [30]     M.Geiger, F.Vollertsen, and R.Kals, "Fundamentals on the Manufacturing of Sheet Metal Microparts," Annals of the cirp, vol. 45 pp. 277-282, 1996.
    [31]     H.Justinger and G.Hirt. Scaling Effects in the Miniaturization of the Deep drawing Process. 2nd ICNFT , 665-674. 2007.
    [32]     G.Sepold and M.Grupp. Laser Materials Processing- Quo Vadis? Bias- Bremen Institute of Applied Beam Technology, Bremen, Germany . 10-10-1000.
    [33]     J.M.Franco and J.J.Cubero. Aplicaciones del láser en los procesos de fabricación industrial. Técnica industrial 240, 74-83. 2001.
    [34]     Dieter Schuöcker, "Laser assisted forming," Proceedings of SPIE, vol. 4065 pp. 117-127, 2000.
    [35]     M.Geiger, "Synergy of laser material proccesing and metal forming," Annals of the cirp, vol. 43 pp. 563-570, 1994.
    [36]     Kratky Alexander. Laser Assisted Forming Techniques. Proceedings of SPIE 6346, 634615-1-634615-11. 26-4-2007.
    [37]     Dieter Schuöcker, "Laser assisted forming_a promising new application of very high-power lasers," Proceedings of SPIE, vol. 3888 pp. 280-288, 2000.
    [38]     K.Bartkowiak, S.P.Edwardson, J.Borowski, G.Dearden, and K.G.Watkins. Laser forming of thin metal components for 2D and 3D applications using a High beam quality, low power Nd:YAG Laser and Rapid Scanning Optics. Intenational Workshop on Thermal Forming . 2007. 13-4-2005.
    [39]     F.Vollertsen. Laser induced and laser assisted forming technologies. ICTP . 9-10-2005.
    [40]     Pridham-Mark and Thomson-Ga. Laser forming. Manufacturing engineer 74, 137-139. 1995.
    [41]     Dieter Schuöcker. Lasers- An overview. Chair of Nonconventional Processing, Forming & Laser Technology . 10-12-2001.
    [42]     "Procedimiento y aparato para la embutición profunda de chapa metálica". [ES 2188446T3]. 2009.
    [43]     Dr.Dieter Schuöcker. "Procedimiento para el procesado de material mediante una combinación de efecto de fuerza mecánica y radiación láser". [AT407498B]. 23-6-2001.
    [44]     García Crespo C., Ortubay Ibabe R., Oruna Otalora A., Pé Asín M., and Tato Vega G. "Aparato para conformado asistido láser".  7-2-2008.
    [45]     A.Kratky, G.Liedl, and R.Bielak. LADD-Laser Assisted Deep drawing. Laser assisted net shape engineering 4, 1125-1134. 2007.
    [46]     D.Schuöker, G.Liedl, and A.Kratky. Laser assisted shaping of metallic sheet and wires - a promising new application of high power lasers. SPIE 4760, 633-644. 2002.
    [47]     Bayer, A., Gillner, A., and Groche, P., "Laser-assisted forming of metallic micro-parts," Proceedings of the society of photo-optical instrumentation, vol. 5063 pp. 157-162, 2003.
    [48]     A.Gillner, J.Holtkamp, C.Hartman, A.Olowinsky, J.Gedicke, K.Klages, L.Bosse, and A.Bayer. Laser applications in microtechnology. Journal of Materials processing technology 167, 494-498. 2006.

[49]     Vollertsen, F.et al.: Journal of Materials Processing Technology, 151 (2004) 70.

[50]    Dirscherl, M. et al.: J. Laser Micro/ Nanoengineering, 1, (2006) 50
[51]    Schmidt, M. et al.: J. Laser Applications, 19 (2007) 124.
[52]    Geiger, M. et al. (Eds): Second International Symposium on Laser Precision Microfabrication. Proceedings of SPIE Volume: 4426, 2002, DOI: 10.1117/12.456823.
[53]    Zhang, W. et al.: Transactions of the ASME, Vol. 126 (2004), 10
[54]    Ocaña, J.L. et al., in C.R. Phipps, M. Niino (Eds), High-Power Laser Ablation II SPIE Proceedings, Vol. 3885, (2000), 252.
[55]    Ocaña, J.L. et al., in M Geiger and A Otto (Eds.). Laser assisted Net Shape Engineering 3, Meisenbach-Verlag, 2001, p. 199.
[56]    Ocaña, J.L. et al.: Appl. Surf. Sci., 238 (2004) 242.
[57]    Johnson, G.R., Cook, W.H.: Int. J. Eng. Fract. Mech., 21 (1985) 31

[58]    R. M.German and A. Bose, “Injection Molding of Metals and Ceramics” Metal Powder Industries Federation. Princeton, NJ,1997.

[59]    P. J. Vervoort,; R. Vetter; J. Duszczyk, “Overview of powder injection moulding” Advanced Performance Materials. vol 3; nº 2 (1996) 123-151.

[60]    P. U. Gummerson, “The metal injection moulding opportunity- A critical view”. The International Journal of Powder Metallurgy. vol 25; nº 3. (1989) 207-216.

[61]    J. R. Alcock; M. W. Darlington; D. J. Stephenson, “Developments in powder injection moulding”. Powder Metallurgy. vol. 39; nº 4. (1996) 252-254.

[62]    M. T. Maryn; P. J. James; B. Haworth “Injection moulding of hardmetal components”. Metal Powders Report; nº12 (1988) 45-46.

[63]    Laag “P/M ´89: Special report on progress in injection molding”. Powder Metallurgy International vol. 21; nº5 (1989) 37-39.

[64]    R. M. German. “Powder Injection Molding”. Metal Powder Industries Federation. Princeton, NJ, 1990.

65]    J. Huggins,  US Patent 5,491,181 (1996)

[66]    K. Menke, US Patent 5,098,942 (1992)

[67]    K. F. Hens, US Patent 5,332,537 (1994)

[68    R. Raman, W. Slike, R. M. German., Ceram. Eng. Sci. Proc., vol. 14 nº 11 (1993) 66-186.

[69]    S. T. Lin, R. M. German, Powder Met. Int. vol 21 nº 5 (1989) 19-24.

[70]    Angermann, H.H. y Van der Biest, O. Int. J. of Powder Metall., 30 (2), 445-452, 1994

[71]    H. J. Sterzel, J. H. ter Maat, European Patent nº 0 446 708 (1991).

[72]    R. Vetter, M.J. Sanders, L.Z. Zhuang and J. Duszczyk, Int. J. Powder Metallurgy, 30 (1) 115-124, 1994.

[73]    H. Cohrt, M. Enders, E. Dudenhöfer, Proc. of the P/M World Conference’94, Paris, Junio 6-9, 1994, Les Editions de Phisique, pp. 1169-1172. 1994.

 


BackFinish

 

 

 

Powered by Plone, the Open Source Content Management System

This site conforms to the following standards: