TY - JOUR A1 - Gebhardt, Andreas T1 - Rapid Prototyping : Grundlagen, Verfahren und Einsatzkriterien für die industrielle Praxis JF - Konstruieren mit Kunststoffen. - 3. Aufl. Y1 - 2003 SN - 3-935065-13-2 N1 - Kap. 7 PB - Springer -VDI-Verl. CY - Düsseldorf ER - TY - BOOK A1 - Gebhardt, Andreas T1 - Rapid prototyping : Werkzeug für die schnelle Produktentstehung. - 2., völlig überarb. Aufl. Y1 - 2000 SN - 3-446-21242-6 PB - Hanser CY - München [u.a.] ER - TY - JOUR A1 - Gebhardt, Andreas T1 - Rapid Prototyping and PIV Y1 - 2001 N1 - Workshop on Industrial Applications of Particle Image Velocimetry <2001, Köln> ER - TY - JOUR A1 - Gebhardt, Andreas A1 - Schmachtenberg, E. T1 - Rapid Prototyping und Tooling Y1 - 1996 N1 - Konferenz-Einzelbericht : 7. Würzburger Werkzeugtage, Produktivitätsverbesserungen, neue Technologien, Fachtagung, Würzburg, DE, 24.-25. Sep, 1996 SP - 1 EP - 20 ER - TY - CHAP A1 - Gebhardt, Andreas A1 - Hoetter, Jan-Steffen T1 - Rapid Tooling T2 - CIRP Encyclopedia of Production Engineering Y1 - 2019 SN - 978-3-662-53120-4 U6 - http://dx.doi.org/10.1007/978-3-662-53120-4 SP - 39 EP - 52 PB - Springer CY - Berlin, Heidelberg ER - TY - JOUR A1 - Gebhardt, Andreas T1 - Rapid Tooling. Der schnelle Weg zum Spritzgießwerkzeug. JF - Kunststoffe, München. 88 (1998), H. 11 Y1 - 1998 SN - 0023-5563 SP - 1992 EP - 2000 ER - TY - JOUR A1 - Gebhardt, Andreas T1 - Schnell und flexibel zur Kleinserie. Effizienzsteigerung bei der Realisierung von Komponenten und Teilsystemen JF - Ingenieur-Werkstoffe. 8 (1999), H. 3 Y1 - 1999 SN - 0935-5715 SP - 8 EP - 14 ER - TY - JOUR A1 - Gebhardt, Andreas A1 - Guntermann, P. A1 - Häming, L. T1 - Schweißen mit dem Nd:YAG-Laser JF - Der Praktiker, Schweißen und Schneiden. 49 (1997), H. 4 Y1 - 1997 SN - 0554-9965 SP - 170 EP - 172 ER - TY - JOUR A1 - Hötter, Jan-Steffen A1 - Fateri, Miranda A1 - Gebhardt, Andreas T1 - Selective laser melting of metals: desktop machines open up new chances even for small companies JF - Advanced materials research N2 - Additive manufacturing (AM) of metal parts by using Selective Laser Melting (SLM) has become a powerful tool mostly in the area of automotive, aerospace engineering and others. Especially in the field of dentistry, jewelry and related branches that require individualized or even one-of-a-kind products, the direct digital manufacturing process opens up new ways of design and manufacturing. In these fields, mostly small and medium sized businesses (SME) are operating which do not have sufficient human and economic resources to invest in this technology. But to stay competitive, the application of AM can be regarded as a necessity. In this situation a new desktop machine (Realizer SLM 50) was introduced that cost about 1/3 of a shop floor SLM machine and promises small quality parts. To find out whether the machine really is an alternative for SMEs the University of Applied Science, Aachen, Germany, designed, build and optimized typical parts from the dentistry and the jewelry branches using CoCr and silver material, the latter being new with this application. The paper describes the SLM procedure and how to find and optimize the most important parameters. The test is accompanied by digital simulation in order to verify the build parameters and to plan future builds. The procedure is shown as well as the resulting parts made from CoCr and silver material. Y1 - 2012 U6 - http://dx.doi.org/10.4028/www.scientific.net/AMR.622-623.461 SN - 1662-8985 (E-Journal); 1022-6680 (Print) VL - 622-623 SP - 461 EP - 465 PB - Trans Tech Publ. CY - Baech ER - TY - JOUR A1 - Fateri, Miranda A1 - Gebhardt, Andreas T1 - Selective Laser Melting of Soda-Lime Glass Powder JF - International Journal of Applied Ceramic Technology Y1 - 2015 U6 - http://dx.doi.org/10.1111/ijac.12338 SN - 1744-7402 VL - 12 IS - 1 SP - 53 EP - 61 PB - Wiley-Blackwell CY - Oxford ER -