Open Access
Issue |
MATEC Web Conf.
Volume 370, 2022
2022 RAPDASA-RobMech-PRASA-CoSAAMI Conference - Digital Technology in Product Development - The 23rd Annual International RAPDASA Conference joined by RobMech, PRASA and CoSAAMI
|
|
---|---|---|
Article Number | 06001 | |
Number of page(s) | 19 | |
Section | Process Development | |
DOI | https://doi.org/10.1051/matecconf/202237006001 | |
Published online | 01 December 2022 |
- S.C. Ligon, R. Liska, J. Stampfl, M. Gurr, R. Mülhaupt, Chem. Rev., 117, 15, (2017) [Google Scholar]
- M. Saffarzadeh, G.J. Gillispie, P. Brown, Selective laser sintering (LS) rapid prototyping technology: A review of medical applications, in the 53rd Annual Rocky Mountain Bioengineering Symposium, RMBS 2016 and 53rd International ISA Biomedical Sciences Instrumentation Symposium, 8–10 April 2016, Denver, United States (2016) [Google Scholar]
- J. Li, S. Yuan, S., J. Zhu, W. Zhang, S. Li, S. C. Wang, J. Manuf. Process, 67, 2021, (2021) [Google Scholar]
- I. Flores Ituarte, O. Wiikinkoski, A. Jansson, Polym. J, 10, 12, (2018) [Google Scholar]
- A.A. Dastjerdi, M.R. Movahhedy, J. Akbari, Addit. Manuf., 18, 2017, (2021) [Google Scholar]
- X. Liu, M. Boutaous, S. Xin, Modeling the radiative heat transfer in selective laser sintering of polymers: scattering effect, in the ASME International Mechanical Engineering Congress and Exposition, 13–19 November 2015, Houston, United States (2015) [Google Scholar]
- E.L. Papazoglou, N.E. Karkalos, P. Karmiris-Obratański, A.P. Markopoulos, Arch. Comput. Methods Eng., 1, 1, (2021) [Google Scholar]
- N.K. Jain, V.K. Jain, & K. Deb, Int. J. Mach. Tools Manuf., 47, 6, (2007) [Google Scholar]
- E. Boillat, S. Kolossov, R. Glardon, M. Loher, D. Saladin, G. Levy, Int. J. Mach. Tools, 218, 6, (2004) [Google Scholar]
- A. Mokrane, M.H. Boutaous, S. Xin, Comptes Rendus Mécanique, 346, 11, (2018) [Google Scholar]
- U.W. Gedde, M.S. Hedenqvist, M. Hakkarainen, F. Nilsson, O. Das, J. Appl. Polym. Sci., 5, 7, (2021) [Google Scholar]
- M. Hemmatnezhad, G.H. Rahimi, M. Tajik, F. Pellicano, Compos. Struct., 120, 2015, (2015) [Google Scholar]
- B. Soundararajan, D. Sofia, D. Barletta, M. Poletto, Addit. Manuf., 47, 2021, (2021) [Google Scholar]
- R. Brighenti, M.P. Cosma, L. Marsavina, A. Spagnoli, M. Terzano, J. Mater. Sci., 56, 2, (2021) [Google Scholar]
- P. Lambert, Sculpteo, (2014), Retrieved from https://www.sculpteo.com/blog/2014/05/13/right-plastic-production-method/. (Accessed on 27/05/2022). [Google Scholar]
- D. Drummer, S. Greiner, M. Zhao, K. Wudy, Addit. Manuf., 27,2019, (2019) [Google Scholar]
- Y. Lee, S. Simunovic, A.K. Gurnon, Quantification of powder spreading process for metal additive manufacturing (No. ORNL/TM-2019/1382; CRADA/NFE-17–06812). Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States), (2019) [Google Scholar]
- M. Seita, Materials & Design, 164, 1, (2019) [Google Scholar]
- J. Zhang, Y. Tan, T. Bao, Y. Xu, X. Xiao, S. Jiang, Mater. Des., 13,10, (2020) [Google Scholar]
- T.P. Le, X. Wang, K.P. Davidson, J.E. Fronda, M. Seita, Addit. Manuf., 39, 1, (2021) [Google Scholar]
- M.Y. Shaheen, A.R. Thornton, S. Luding, T. Weinhart, Discrete particle simulation of the spreading process in additive manufacturing in the 8th International Conference on Discrete Element Methods (DEM8), 21–26 July 2019, Enschede, Netherlands (2019) [Google Scholar]
- J. Weinberg, Design and implementation of an experimental and numerical framework for powder recoating research in selective laser melting, Doctoral Thesis, Massachusetts Institute of Technology Cambridge United States, (2018) [Google Scholar]
- S. Rüsenberg, S. Josupeit, H.J. Schmid, Adv. Mech. Eng., 6, 2014, (2014) [Google Scholar]
- F. Osmanlic, Modeling of Selective Laser Sintering of Viscoelastic Polymers, Doctorate Thesis (University of Erlangen-Nuremberg, (2019) [Google Scholar]
- Y. Yang, D. Gu, D. Dai, C. Ma, Mater. & Des., 143, 2018, (2018) [Google Scholar]
- M. Schmid, K. Wegener, Procedia Eng., 149, 2016, (2016) [Google Scholar]
- F. Lupone, E. Padovano, F. Casamento, C. Badini, Materials, 15, 1 (2021) [Google Scholar]
- L. Benedetti, B. Brulé, N. Decraemer, K.E. Evans, O. Ghita, Powder Technol., 342, 1, (2019) [Google Scholar]
- T.M. Wischeropp, C. Emmelmann, M. Brandt, A. Pateras, Addit. Manuf., 28, 1, (2019) [Google Scholar]
- S. Greiner, L. Lanzl, K. Wudy, D. Drummer, AIP Conf Proc, 2055, 1, (2019) [Google Scholar]
- F.M. Mwania, M. Maringa, J.G. van der Walt, Polymers, 14, 5, (2022) [Google Scholar]
- M. Schmidt, P. Thorne, U. Engström, J. Gabler, T.J. Jesberger, S. Feldbauer, PM2 TEC, 1, 1, (2004) [Google Scholar]
- Y. Liao, C. Liu, B. Coppola, G. Barra, L. Di Maio, L. Incarnato, K. Lafdi, Polymers, 11, 9, (2019) [Google Scholar]
- C. Kummert, W. Diekmann, K. Tews, H.J. Schmid, Influence of part microstructure on mechanical properties of PA6X laser sintered specimens, in 2019 International Solid Freeform Fabrication Symposium, 12–14 August 2019, University of Texas at Austin, United States (2019) [Google Scholar]
- A. Amado, M. Schmid, K. Wegener, AIP Conf Proc, 1664, 1, (2015) [Google Scholar]
- J. Li, S. Yuan, J. Zhu, W. Zhang, S. Li, C. Wang, J. Manuf. Process., 67, 2021, (2021) [Google Scholar]
- A. Pilipović, T. Brajlih, I. Drstvenšek, Polymers, 10, 11, (2018) [Google Scholar]
- S. Beitz, R. Uerlich, T. Bokelmann, A. Diener, T. Vietor, A. Kwade, Materials, 12, 2, (2019) [Google Scholar]
- R.K. Ganeriwala, Multiphysics modelling of selective laser sintering/melting, University of California, Berkeley, (2015) [Google Scholar]
- Bourell, D. L., Watt, T. J., Leigh, D. K., & Fulcher, B. 2014. Performance limitations in polymer laser sintering. Physics Procedia, Vol.56, No.2014, pp.147–156. [CrossRef] [Google Scholar]
- R.D. Goodridge, C.J. Tuck, R.J.M. Hague, Prog. Mater. Sci., 57, 2, (2012) [Google Scholar]
- M.C. Leu, S. Pattnaik, G.E. Hilmas, Optimisation of selective laser sintering process for fabrication of zirconium diboride parts, in the Proceeding of International Solid Freeform Fabrication Symposium, 9–11 August 2010, Austin, United States (2010) [Google Scholar]
- A. Armillotta, M. Bellotti, M. Cavallaro, Robot Comput Integr Manuf, 50, 1, (2018) [Google Scholar]
- J. Li, S. Yuan, J. Zhu, S. Li, W. Zhang, Polymers, 12, 6, (2020) [Google Scholar]
- C. Schmutzler, A. Zimmermann, M.F. Zaeh, Procedia CIRP, 41, 2016, (2016) [Google Scholar]
- P. Peyre, Y. Rouchausse, D. Defauchy, G. Régnier, Mater. Process. Technol., 225, 2015, (2015) [Google Scholar]
- H. Yaagoubi, H. Abouchadi, M.T. Janan, E3S Web Conf., 234, 00006, (2021) [CrossRef] [EDP Sciences] [Google Scholar]
- X. Liu, M. Boutaous, S. Xin, Modeling the radiative heat transfer in selective laser sintering of polymers: scattering effect, in ASME International Mechanical Engineering Congress and Exposition, 13–19 November 2015, Houston, Texas, (2015) [Google Scholar]
- I.S. Liu, Contin. Mech. Thermodyn., 2, 4, (1990) [Google Scholar]
- J.M. Jamal, Finite element analysis of curl development in the selective laser sintering process, Doctoral dissertation, University of Leeds, (2001) [Google Scholar]
- J. Sjöström, Linkage of macro- and micro-scale modelling tools for additive manufacturing, Degree thesis, KTH School of Industrial Technology and Management, (2020) [Google Scholar]
- M. Mehrpouya, D. Tuma, T. Vaneker, M. Afrasiabi, M. Bambach, I. Gibson, Rapid Prototyp J., 28, 11, (2022). [CrossRef] [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.