PSI - Issue 42
Tsanka Dikova et al. / Procedia Structural Integrity 42 (2022) 1520–1528 Tsanka Dikova, Angel Anchev, Vladimir Dunchev, Dzhendo Dzhendov, Yavor Gagov / Structural Integrity Procedia 00 (2019) 000 – 000 9
1528
chromium and titanium dental alloys fabricated by casting, milling, and selective laser melting. Journal of prosthodontic research, 62(2), 184 194. Anusavice, K.J., Shen, C. and Rawls, H.R. eds., 2012. Phillips' science of dental materials. Elsevier Health Sciences. Elsevier Saunders: St. Louis, MO, USA. Chakmakchi, M., Eliades, G. and Zinelis, S., 2009. Bonding agents of low fusing cpTi porcelains: elemental and morphological characterization. Journal of Prosthodontic Research, 53(4), 166-171. Datasheet, PowderRange Ti64, Carpenter Additive, 2020 CRS Holdings Inc., 7 p., www.carpenteradditive.com (Accessed 17.03.2022) Dérand, T. and Herø, H., 1992. Bond strength of porcelain on cast vs. wrought titanium. European Journal of Oral Sciences, 100(3), 184-188. Dikova, T., 2012. Nano-engineered coatings on titanium implants. Scripta Scientifica Medica, 44(2), 23-25. Dikova, T., 2014. Dental Materials Science: Lectures and Laboratory Classes Notes Part II; MU-Varna: Varna, Bulgaria, 150. Dikova, T., Dzhendov, D., Gagov, Y., 2022. Surface morphology and roughness of Ti6Al4V alloy manufactured by milling and selective laser melting. INNOVATIONS 2022, Varna, Bulgaria, 1(6), 48-55. Dikova, T., Dzhendov, D., Simov, M., Katreva-Bozukova, I., Angelova, S., Pavlova, D., Abadzhiev, M. and Tonchev, T., 2015. Modern trends in the development of the technologies for production of dental constructions. Journal of IMAB – Annual Proceeding Scientific Papers, 21(4), 974-981. Gagov, Y., Dzhendov, D., Parushev, I., Dikova, T., 2022. Geometrical characteristics and density of Ti6Al4V alloy fabricated by milling and selective laser melting. XXVII International Scientific and Technical Conference “Foundry 2022”, Pleven, Bulgaria, 1(4), 40 -45. Haag, P. and Nilner, K., 2010. Bonding between titanium and dental porcelain: A systematic review. Acta Odontologica Scandinavica, 68(3), 154 164. ISO 9693:2019, Dentistry — Compatibility testing for metal-ceramic and ceramic-ceramic systems, https://www.iso.org/standard/75855.html (Accessed 11.07. 2022). Kazantseva, N., 2018, November. Main factors affecting the structure and properties of titanium and cobalt alloys manufactured by the 3D printing. In Journal of Physics: Conference Series (Vol. 1115, No. 4, p. 042008). IOP Publishing. Kazantseva, N., Krachmalev, P., Yadroitsev, I., Ezhov, I., Merkushev, A., Davidov, D., 2019, COMPARATIVE ANALYSIS OF THE STRUCTURE AND PROPERTIES OF TITANIUM AND COBALT MEDICAL ALLOYS MANUFACTURING BY 3D PRINTING. RAPDASA 2019 Conference Proceedings, 331-342. Lubas, M., Jasinski, J.J., Zawada, A. and Przerada, I., 2021. Influence of Sandblasting and Chemical Etching on Titanium 99.2 – Dental Porcelain Bond Strength. Materials, 15(1), 116. Mohsen, C.A., 2012. Effect of surface roughness and thermal cycling on bond strength of CP titanium and Ti – 6Al – 4V alloy to ceramic. Journal of Prosthodontic Research, 56(3), 204-209. Technical data sheet, CT PowderRange Ti64 F, Carpenter Additive, 2019 CRS Holdings, Inc., 4 p. www.carpenteradditive.com (Accessed 17.03.2022); Ti Milling Discs, Starbond Ti5 Disc, https://scheftner.dental/starbond-ti5-disc-en.html (Accessed 17.03.2022); VITA LUMEX AC, Instruction for use, VITA Zahnfabrik H. Rauter GmbH & Co.KG, Bad Sackingen, Germany, 54 p., www.vita-zahnfabrik.com (Accessed 11.07.2022); VITA NP BOND Paste, Instructions for use, VITA Zahnfabrik H. Rauter GmbH & Co.KG, Bad Sackingen, Germany, 54 p., www.vita zahnfabrik.com (Accessed 11.07.2022); Zinelis, S., Barmpagadaki, X., Vergos, V., Chakmakchi, M. and Eliades, G., 2010. Bond strength and interfacial characterization of eight low fusing porcelains to cp Ti. Dental materials, 26(3), 264-273.
Made with FlippingBook - Online catalogs