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Impact of the Internal Structure Density in the Process of Fabrication of Orthodontic Master Models by Fused Deposition Modeling


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[1] SOO-YEON, K., YOO-SEOK, S., HWI-DONG, J., CHUNG-JU, H., HYOUNG-SEON, B., JUNG-YUL, C. 2018. Precision and trueness of dental models manufactured with different 3-dimensional printing techniques. In: American Journal of Orthodontics and Dentofacial Orthopedics. Volume 153, Issue 1, 144-153. January 2018. Available at: https://www.sciencedirect.com/science/article/pii/S088954061730647910.1016/j.ajodo.2017.05.02529287640 Search in Google Scholar

[2] TANEVA, E., KUSNOTO, B., EVANS, C., A. 2015. 3D Scanning, Imaging, and Printing in Orthodontics. In: Issues in Contemporary Orthodontics. 147-181. Available at: https://www.intechopen.com/books/issues-in-contemporary-orthodontics/3d-scanning-imaging-and-printing-in-orthodontics10.5772/60010 Search in Google Scholar

[3] Raphael, R., et al. 2017. Intraoral Scanner Technologies: A Review to Make a Successful Impression. Journal of Healthcare Engineering, 1-9. 10.1155/2017/8427595. Search in Google Scholar

[4] CAMPBELL T., WILLIAMS C., IVANOVA O., GARRETT B. 2011. Generalized Additive Manufacturing Process. [online] Image. Available at: https://www.researchgate.net/publication/257942754_Could_3D_Printing_Change_the_World_Technologies_Potential_and_Implications_of_Additive_Manufacturing Search in Google Scholar

[5] KONTA, A., GARCÍA, M., SERRANO, D. 2017. Personalised 3D Printed Medicines: Which Techniques and Polymers Are More Successful? Bioengineering, 4. 1-16. 10.3390/bioengineering404007910.3390/bioengineering4040079574674628952558 Search in Google Scholar

[6] XYZPrinting. Tlačiareň Zortrax M200. Available at:https://xyzprint.eu/ihned-k-pouzitiu/612-3dtlaciaren-zortrax-m200-zortrax-.html Search in Google Scholar

[7] KEUN-YOUNG, L., JIN-WOO, C., NA-YOUNG, CH., JONG-MOON, CH., KYUNG-HWA, K., SANG-CHEOL, K., JIN-HYOUNG, C. 2015. Accuracy of three-dimensional printing for manufacturing replica teeth In: The Korean Association of Orthodontists, pp. 217-224 pISSN 2234-7518. eISSN 2005-372X http://dx.doi.org/10.4041/kjod.2015.45.5.21710.4041/kjod.2015.45.5.217459386626445716 Search in Google Scholar

[8] HEMANT, S. and ANJU, ANU J. 2018. 3D Printing in Dentistry - Sculpting the Way It Is. Journal of Scientific and Technical Research. Available at: http://www.publishingindia.com/jstr Search in Google Scholar

[9] British Standards Institute. Glossary of Dental Terms (BS4492). London: BSI, 1983. Search in Google Scholar

[10] DOĞRAMACI, E. J., ROSSI-FEDELE, G., JONES, A.G. 2015. Multi - disciplinary management of a patient with a post-traumatised incisor presenting concurrent replacement and inflammatory resorption: a case report. Aust Orthod J 2015;31:216-225.10.21307/aoj-2020-158 Search in Google Scholar

[11] RENKEMA, A. M., BRONKHORST, E., KUIJPERS –JAGTMAN, A. M. 2009. A survey on orthodontic retention procedures in the Netherlands. Eur J Orthod, 2009;31:432-437.10.1093/ejo/cjn13119401355 Search in Google Scholar

[12] VALIATHAN, M., HUGHES, E. 2010. Results of a survey - based study to identify common retention practices in the United States. Am J Orthod Dentofacial Orthop 2010;137:170-177.10.1016/j.ajodo.2008.03.02320152670 Search in Google Scholar

[13] Zendura. 2020. Clear aligner & retainer material. Online: https://www.zenduradental.com/products/125mm-round Search in Google Scholar

[14] SINGH, P., GRAMMATI, S., KIRSCHEN, R. 2009. Orthodontic retention patterns in the United Kingdom. J Orthod 2009;36:115-121.10.1179/1465312072304019487742 Search in Google Scholar

[15] HICHENS L., ROWLAND H., WILLIAMS A. 2007. Cost -effectiveness and patient satisfaction: Hawley and vacuum -formed retainers. Eur J Orthod 2007;29:372-378.10.1093/ejo/cjm03917702797 Search in Google Scholar

[16] PRATT, M.C., KLUEMPER, G. T., HARTSFIELD, J. K. JR., FARDO, D., NASH, D. A. 2011. Evaluation of retention protocols among members of the American Association of Orthodontists in the United States. Am J Orthod Dentofacial Orthop 2011;140:520-52610.1016/j.ajodo.2010.10.023516145721967939 Search in Google Scholar

[17] RAWLS, H.R. 2013. Dental Polymers. In: Anusavice KJ, Shen C, Rawls HR, eds. Philips’ Science of Dental Materials. 12th edn. St Louis: Elsevier; 2013:92-110. Search in Google Scholar

[18] RYOKAWA H., MIYAZAKI Y., FUJISHIMA A., MIYAZAKI T., MAKI K. 2006. The mechanical properties of dental thermoplastic materials in a simulated intraoral environment. Orthod Waves 2006;65:64-72.10.1016/j.odw.2006.03.003 Search in Google Scholar

[19] MILDE, J., & JURINA, F. 2019. Comparison of Selected Thermoplastic Materials in the Fused Deposition Modeling Process and their Influence on the Dimensional Accuracy of an Orthodontic Upper Teeth Model. Materials Science Forum, 952, 143–152. https://doi.org/10.4028/www.scientific.net/msf.952.14310.4028/www.scientific.net/MSF.952.143 Search in Google Scholar

[20] MILDE, J., MOROVIČ, L. BLAHA. J. 2017. Influence of the layer thickness in the Fused Deposition Modeling process on the dimensional and shape accuracy of the upper teeth model. Modern Technologies in Manufacturing (MTeM 2017). 137. https://doi.org/10.1051/matecconf/201713702006 Search in Google Scholar

[21] Eagle plastic limited. What is High Impact Polystyrene?. Available at https://www.eagleplastics.co.uk/what-is-high-impact-polystyrene-used-for/ Search in Google Scholar

[22] Omnexus.specialchem.com. 2020. Shrinkage Value of Plastics Material & Injection Molding Chart. [online] Available at:https://omnexus.specialchem.com/polymerproperties/properties/shrinkage Search in Google Scholar

eISSN:
1338-0532
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Engineering, Introductions and Overviews, other