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The article has presented the method of 3D Digital Light Processing printing as one of the technologies used for rapid prototyping of dental models and making elements of dentures. in this work the research was presented, which the aim was to determine the effect of additional exposure time on the properties of the obtained printouts. Dynamic Mechanical Analysis test showed significant differences in stiffness between uncured specimens as well as specimens cured for 10, 20 and 30 minutes. in turn the obtained TG and DTG curves allowed to determine the most optimal curing time for DLP printouts. These studies provide the basis for determining the most appropriate method for handling printouts after the process of printing from liquid resin, so that they are the best possible quality for dentists and prosthodontists.
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Czasopismo
Rocznik
Tom
Strony
419--424
Opis fizyczny
Bibliogr. 27 poz., fot., rys., tab., wzory
Twórcy
autor
- Czestochowa University of Technology, Faculty of Mechanical Engineering and Computer Science, Department of Technology and Automation, 21 Armii Krajowej A V., 42-201 Czestochowa, Poland
autor
- Czestochowa University of Technology, Faculty of Mechanical Engineering and Computer Science, Department of Technology and Automation, 21 Armii Krajowej A V., 42-201 Czestochowa, Poland
autor
- Czestochowa University of Technology, Faculty of Mechanical Engineering and Computer Science, Department of Technology and Automation, 21 Armii Krajowej A V., 42-201 Czestochowa, Poland
Bibliografia
- [1] A. Dawood, B. M. Marti, V. Sauret-Jackson, A. Darwood, Br. Dent. J. 219 (11), 521-529 (2015), DOI: 10.1038/sj.bdj.2015.914
- [2] A. Hazeveld , J. J. R. Huddleston Slater, Y. Red, Am. J. Orthod. Dentofac. 145 (1), 108-115 (2014), DOI: 10.1016/j.ajodo.2013.05.011
- [3] S. Kim, Y. Shin, H. Jung, C. Hwang, H. Baik, J. Cha, Am. J. Orthod. Dentofac. 153 (1), 144-153 (2018), DOI: 10.1016/j.ajodo.2017.05.025
- [4] M. Revilla-León, A. Besné-Torre, J. L. Sánchez-Rubio, J. J. Fábrega, M. Özcan, J. Prosthet. Dent. 121 (1), 3-8 (2019), DOI: 10.1016/j.prosdent.2018.02.020
- [5] G. Oberoi, S. Nitsch, M. Edelmayer, K. Janjić, A.S. Müller, H. Agis, Front. Bioeng. Biotechnol. 6, 1-13 (2018), DOI: 10.3389/fbioe.2018.00172
- [6] H.-J. Hwang, S. J. Lee, E.-J. Park, H.-I. Yoon, J. Prosthet. Dent. 122 (1), 110-117 (2019), DOI: 10.1016/j.prosdent.2018.02.018
- [7] M. Revilla‐León, M. Özcan, J. Prosthodont. 28 (2), 146-158 (2018), DOI: 10.1111/jopr.12801
- [8] C. Groth, N. Kravitz, P. Jones, J. Graham, W. Redmond, J. Clin. Orthod. 48 (8), 475-485 (2014).
- [9] M. Monzón, Z. Ortega, A. Hernández, R. Paz, F. Ortega, Material. 10 (1), 1-15 (2017), DOI: 10.3390/Ma10010064
- [10] J. W. Stansbury, M. J. Idacavage, Dent. Mater. 32 (1), 54-64 (2016), DOI: 10.1016/j.dental.2015.09.018
- [11] T. Ngo, A. Kashani, G. Imbalzano, K. Nguyen, D. Hui, Compos. Part B-Eng. 143, p. 172-196 (2018), DOI: 10.1016/j.compositesb.2018.02.012
- [12] A. Tahayeri, M. C. Morgan, A. P. Fugolin, D. Bompolaki, A. Athirasala, C. S. Pfeifer, J. L. Ferracane, L. E. Bertassoni, Dent. Mater. 34 (2), 192-200 (2018), DOI: 10.1016/j.dental.2017.10.003
- [13] E. Moraru, D. Besnea, O. Dontu, G. I. Gheorghe, V. Constantin, Proceedings of the International Conference of Mechatronics and Cyber-Mixmechatronics - 201, 8-17 (2018), DOI: 10.1007/978-3-319-96358-7_2
- [14] W. Zhu, X. Ma, M. Gou, D. Mei, K. Zhang, S. Chen, Curr. Opin. Biotech. 40, 103-112 (2016), DOI: 10.1016/j.copbio.2016.03.014
- [15] A. Azari, S. Nikzad, Rapid Prototyping J. 15 (3), 216-225 (2009), DOI: 10.1108/3552540910961946
- [16] R. Sobczak, Z. Nitkiewicz, J. Koszkul, Composites 2 (3), 78-79 (2002).
- [17] E. Bociąga, T. Jaruga, Materiały Niemetalowe, Wydawnictwo Politechniki Częstochowskiej (2013)
- [18] https://www.netzsch-thermal-analysis.com/pl/produkty-rozwiazania/jednoczesna-analiza-termiczna/sta-449-f1-jupiter/
- [19] M. Labus, Nafta-Gaz 75 (1), 3-9 (2019), DOI: 10.18668/ng.2019.01.01
- [20] M. Szumera, Lab Laboratoria, Aparatura, Badania 17 (6), 28-34 (2012).
- [21] M. Szumera, Lab Laboratoria, Aparatura, Badania 18 (1), 24-33 (2013).
- [22] ISO 6721:2019 Plastics - Determination of Dynamic Mechanical Properties.
- [23] M. Lombardini, M. Chiesa, A. Scribante, M. Colombo, C. Pogglo, Dent. Research Journ. 9 (6), 735-740 (2012), DOI: 10.4103/1735-3327.107581
- [24] G. V. Salmoria, C. H. Ahrens, V. E. Beal, A. Pires, V. Soldi, Mater. Des. 30 (3), 758-763 (2009), DOI: 10.1016/j.matdes.2008.05.016
- [25] Y. Yang, L. Lin, J. Zhao, Mater. Des. 162, 418-428 (2019), DOI:10.1016/j.matdes.2018.12.009
- [26] J. M. Dulieu-Barton, M. C. Fulton, Strain 36 (2), 81-87 (2000), DOI:10.1111/j.1475-1305.2000.tb01177.x
- [27] K. W. Ahmad, Z. Mohamad, N. Othman, S. H. C. Man, M. Jusoh, Chem. Eng. Trans. 78, 565-570, (2020), DOI: 10.3303/CET2078095
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f25af0a4-99b4-4654-aef0-385060783954