Apparatus And Method For Additive Manufacturing - EP3067186

The patent EP3067186 was granted to Siemens Industry Software on Jan 17, 2018. The application was originally filed on Mar 9, 2016 under application number EP16159384A. The patent is currently recorded with a legal status of "Revoked".

EP3067186

SIEMENS INDUSTRY SOFTWARE
Application Number
EP16159384A
Filing Date
Mar 9, 2016
Status
Revoked
Feb 4, 2022
Grant Date
Jan 17, 2018
External Links
Slate, Register, Google Patents

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OPEN MINDOct 17, 2018THUMADMISSIBLE

Patent Citations (12) New

Patent citations refer to prior patents cited during different phases such as opposition or international search.

Citation PhasePublication NumberPublication Link
OPPOSITIONUS2002008335
OPPOSITIONUS2011240607
OPPOSITIONUS2014265034
OPPOSITIONUS2014271964
OPPOSITIONUS5121329
OPPOSITIONUS5303141
OPPOSITIONUS6027326
OPPOSITIONUS6401795
OPPOSITIONWO2008083358
OPPOSITIONWO2014014977
SEARCHUS5303141
SEARCHWO2008083358

Non-Patent Literature (NPL) Citations (11) New

NPL citations refer to non-patent references such as research papers, articles, or other publications cited during examination or opposition phases.

Citation PhaseReference TextLink
OPPOSITION- C. BRECHER et al., "Machine tool for the automated repairing of worn- out molds and dies with integrated 3D-measuring system and an adaptive two-axis- laser -cladding head", 4th international conference on Laser Assisted Net Shape Engineering, vol. 2, ISBN 3-87525-202-0, (20040921), pages 905 - 916, URL: http://publica.fraunhofer.de/dokumente/N-52163.html, XP055525532-
OPPOSITION- DINESH KANNAPPAN, "Mastercam Surface Rough Pocket (www.mastercam-training.com", youtube, (20110220), URL: https://www.youtube.com/watch?v=zK8sYk4RGCI, XP054978884-
OPPOSITION- D.J. CLAXTON, "Development of a parametric software tool for the design and manufacturing of micro air vehicles", Master Thesis, (20070000), URL: http://ufdrimages.uflib.ufl.edu/uf/e0/p7/01/24/00001/claxtond.pdf, XP055525568-
OPPOSITION- J. ZHANG et al., "Laser additive manufacturing process planning and automation", Proceedings of the 10th Annual Solid Freeform Fabrication Symposium, (20000000), pages 243 - 250, URL: https://www.researchgate.net/publication/268325811_ LASER _ADDITIVE_MANUF ACTURING_PROCESS_PLANNING_AN D _AUTOMATION, XP055525562-
OPPOSITION- K.A. SHAMSUDDIN et al., "A Comparison of Milling Cutting Path Strategies for Thin-Walled Aluminium Alloys Fabrication", The International Journal Of Engineering And Science (IJES, vol. 2, no. 3, ISBN 2319-1805, (20130000), pages 01 - 08, URL: http://www.theijes.com/papers/v2-i3/A0230108.pdf, XP055525547-
OPPOSITION- L. REN et al., "Three dimensional die repair using a hybrid manufacturing system", Solid Freeform Fabrication Proceedings 2006, (20060000), pages 51 - 59, URL: https://www.semanticscholar.org/paper/Three-dimensional- die-repa i r-usi ng-a-hybrid-system-Ren- Padathu/e142ea3bc93d57f5bb42c055e8858bb70b1f2237, XP055206055-
OPPOSITION- L.W. KARIUKI et al., "generation and Optimization of Pocket Milling Tool Paths - A Review", Proceedings of 2014 International Conference on Sustainable Research and Innovation, vol. 5, (20140507), pages 129 - 133, URL: http://sri.jkuat.ac.ke/ojs/index.php/proceedings/article/view/107/64, XP055525540-
OPPOSITION- "Mastercam X Basic 3D Machining", word class Machining, (20101000), pages 1 - 122, URL: httD://eng.auburn.edu/~griffgj/training/Basic_3D_Machining.pdf, XP055525534-
OPPOSITION- DING et al., "A tool-path generation strategy for wire and arc additive manufacturing", International Journal of Advanced Manufacturing Technology, vol. 73, no. 1- 4, (20140411), pages 173 - 18 3, URL: https://link.sprinqer.com/article/10.1007/s00170-014-5808-5, XP055472255
OPPOSITION- DING et al., "A practical path planning methodology for wire and arc additive manufacturing of thin-walled structures", Robotics and Computer- Integrated Manufacturing, vol. 34, (20150800), pages 8 - 19, URL: https:/ /www.sciencedirect.com/ science / a rticle/pii/S0736584515000 162, (20150204), XP055525533
OPPOSITION- "Automatisierte Reparatur-Fertigungszelle fur den Werkzeugbau basierend auf optischer In-Prozess-Messtechnik und laserintegrierter Bearbeitung - OptoRep", Fraunhofer-Institut fur Produktionstechnologie IPT, (20060700), pages 1 - 53, URL: https://www.tib.eu/de/suchen/id/TIBKAT%3A514 597291/ Automatisierte- Repa ratu r-Fertig u ngszelle-für-den, XP055525556

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