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  3. An in vitro comparison of the dimensional stability of four 3D-printed models under various storage conditions.

An in vitro comparison of the dimensional stability of four 3D-printed models under various storage conditions.

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DOI
10.48620/84872
Publisher DOI
10.2319/081223-557.1
PubMed ID
38639456
Abstract
Objectives
To investigate the dimensional stability of various 3D-printed models derived from resin and plant-based, biodegradable plastics (PLA) under specific storage conditions for a period of up to 21 weeks.Materials And Methods
Four different printing materials, including Draft V2, study model 2, and Ortho model OD01 resins as well as PLA mineral, were evaluated over a 21-week period. Eighty 3D-printed models were divided equally into two groups, with one group stored in darkness and the other exposed to daylight. All models were stored at a constant room temperature (20°C). Measurements were taken at 7-week intervals using the Inspect 3D module in OnyxCeph software (Image Instruments GmbH, Chemnitz, Germany).Results
Dimensional change was noted for all of the models with shrinkage of up to 0.26 mm over the study period. Most contraction occured from baseline to T1, although significant further contraction also arose from T1 to T2 (P < .001) and T1 to T3 (P < .001). More shrinkage was observed when exposed to daylight overall and for each resin type (P < .01). The least shrinkage was noted with Ortho model OD01 resin (0.16 mm, SD = 0.06), and the highest level of shrinkage was observed for Draft V2 resin (0.23 mm, SD = 0.06; P < .001).Conclusions
Shrinkage of 3D-printed models is pervasive, arising regardless of the material used (PLA or resin) and being independent of the brand or storage conditions. Consequently, immediate utilization of 3D printing for orthodontic appliance purposes may be preferable, with prolonged storage risking the manufacture of inaccurate orthodontic retainers and appliances.
Date Issued
2024-05-01
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
3D printing
•
Dimensional stability
•
Orthodontic
•
Resin
•
Shrinkage
Language(s)
en
Author(s)
Knode, Vanessa
Ludwig, Björn
Hamadeh, Sinan
Pandis, Nikolaos  
School of Dental Medicine, Clinic of Orthodontics  
Fleming, Padhraig S
Additional Credits
School of Dental Medicine, Clinic of Orthodontics  
Journal
The Angle orthodontist
Publisher
Allen Press
ISSN
1945-7103
Access(Rights)
restricted
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