Open Access

Comparative Analysis of Macro- and Microstructure of Printed Elements in the FDM, SLS and MJ Technologies


Cite

[1] Kluska E., Gruda P., Majca-Nowak N. The accuracy and the printing resolution comparison of different 3D printing technologies. Warsaw: Institute of Aviation, 2019.10.2478/tar-2018-0023 Search in Google Scholar

[2] Kluska E., Gruda P., Majca-Nowak N. Additive manufacturing in conduction with optical methods used for optimization of 3D models. Warsaw: Institute of Aviation, 2018.10.2478/tar-2018-0022 Search in Google Scholar

[3] Vishwakarma S., Pandey P., Gupta N. Characterization of ABS material: Review. Journal of Research in Mechanical Engineering. 5, 2017, Vol. 3, pages 13-16. Search in Google Scholar

[4] Lammens N., De Baere I., Van Paepegem W. On the orthotropic elasto-plastic material response of additively manufactured polyamide 12. Zwijnaarde, Belgium: Ghen University, 2017. Search in Google Scholar

[5] Schmid M., Amado A., Wegener K. Polymer powders for Selective Laser Sintering (SLS). Switzerland : API Conference - American Institute of Physics, 2015. Volume 1664.10.1063/1.4918516 Search in Google Scholar

[6] Hafsa M., Ibrahim M., Wahab M., Zahid M. Evaluation of FDM pattern with ABS and PLA material. Applied Mechanics and Materials. 2013, Vols. 465-466, pages 55-59. Search in Google Scholar

[7] Niino T., Haraguchi H., Itagaki Y. Microstructural observation and mechanical property evaluation of plastic parts obtained by preheat free laser sintering. Japan: Institute of Industrial Science - Tokyo University, August 2012. Search in Google Scholar

[8] Kassim N, Saidin Wahab M, Yusof Y. Bali Physical properties and fracture surface of acrylic denture bases processed by conventional and vacuum casting fabrication technique. 12th International Conference on QiR (Quality in Research), 2011. ISSN 114-1284. Search in Google Scholar

[9] Bourell D., Leu M., Rosen D. Rodamap for Additive Manufacturing: Identifying the Future of Freeform Processing. Austin: Tech Rep, 2009. Search in Google Scholar

[10] Zarringhalam H., Hopkinson N., Kamperman N.F., de Vlieger J.J. Effects of processing on microstructure and properties of SLS nylon 12. United Kingdom: Loughborough University, 2008. Search in Google Scholar

[11] ABS-acrylonitrile butadiene styrene. [Online] 2003. http://designinsite.dk/htmsider/m0007.htm. Search in Google Scholar

[12] M., Stocker. From Rapid Prototyping to Rapid Manufacturing. Auto Technology. 2002, Vol. 2, pages 38-40. Search in Google Scholar

[13] Rodriguez J., Thomas J., Renaud J. Characterization of the mesostructure of styrene materials. Rapid Prototyping Journal. 3, 2000, Vol. 6, pages 175-185.10.1108/13552540010337056 Search in Google Scholar

[14] Bernal C., Frontini P., Sforza M., Bibbo M. Microstructure, Deformation, and Fracture Behavior of Commercial ABS Resins. Journal of Applied Polymer Science. DOI: 10.1002/app.1995.070580101, October 1995.10.1002/app.1995.070580101 Search in Google Scholar

eISSN:
2545-2835
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other, Geosciences, Materials Sciences, Physics