Chemical treatment in 3D dental model production for clear aligners via additive manufacturing: a comprehensive evaluation

IF 3.4 4区 工程技术 Q1 ENGINEERING, MECHANICAL Rapid Prototyping Journal Pub Date : 2024-05-06 DOI:10.1108/rpj-08-2023-0300
Mohammad Vahid Ehteshamfar, Amir Kiadarbandsari, Ali Ataee, Katayoun Ghozati, Mohammad Ali Bagherkhani
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Abstract

Purpose Stereolithography (SLA) additive manufacturing (AM) technique has enabled the production of inconspicuous and aesthetically pleasing orthodontics that are also hygienic. However, the staircase effect poses a challenge to the application of invisible orthodontics in the dental industry. The purpose of this study is to implement chemical postprocessing technique by using isopropyl alcohol as a solvent to overcome this challenge. Design/methodology/approach Fifteen experiments were conducted using a D-optimal design to investigate the effect of different concentrations and postprocessing times on the surface roughness, material removal rate (MRR), hardness and cost of SLA dental parts required for creating a clear customized aligner, and a container was constructed for chemical treatment of these parts made from photocurable resin. Findings The study revealed that the chemical postprocessing technique can significantly improve the surface roughness of dental SLA parts, but improper selection of concentration and time can lead to poor surface roughness. The optimal surface roughness was achieved with a concentration of 90 and a time of 37.5. Moreover, the dental part with the lowest concentration and time (60% and 15 min, respectively) had the lowest MRR and the highest hardness. The part with the highest concentration and time required the greatest budget allocation. Finally, the results of the multiobjective optimization analysis aligned with the experimental data. Originality/value This paper sheds light on a previously underestimated aspect, which is the pivotal role of chemical postprocessing in mitigating the adverse impact of stair case effect. This nuanced perspective contributes to the broader discourse on AM methodologies, establishing a novel pathway for advancing the capabilities of SLA in dental application.
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通过快速成型技术制作透明矫治器三维牙科模型时的化学处理:综合评估
目的立体光刻(SLA)增材制造(AM)技术能够生产出不显眼、美观且卫生的牙齿矫正器。然而,阶梯效应对隐形正畸在牙科行业的应用提出了挑战。本研究的目的是使用异丙醇作为溶剂,实施化学后处理技术,以克服这一挑战。设计/方法/途径采用 D-optimal 设计进行了 15 项实验,以研究不同浓度和后处理时间对创建透明定制矫正器所需的 SLA 牙科部件的表面粗糙度、材料去除率 (MRR)、硬度和成本的影响,并构建了一个容器,用于对这些由光固化树脂制成的部件进行化学处理。研究结果研究发现,化学后处理技术能显著改善牙科 SLA 零件的表面粗糙度,但浓度和时间选择不当会导致表面粗糙度不佳。浓度为 90、时间为 37.5 时,表面粗糙度最佳。此外,浓度和时间最低(分别为 60% 和 15 分钟)的牙科零件的 MRR 最低,硬度最高。浓度最高和时间最长的部件所需的预算分配最多。最后,多目标优化分析的结果与实验数据一致。 原创性/价值 本文揭示了以前被低估的一个方面,即化学后处理在减轻楼梯效应的不利影响方面的关键作用。这种细致入微的视角有助于更广泛地讨论 AM 方法,为提高 SLA 在牙科应用中的能力开辟了一条新途径。
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来源期刊
Rapid Prototyping Journal
Rapid Prototyping Journal 工程技术-材料科学:综合
CiteScore
8.30
自引率
10.30%
发文量
137
审稿时长
4.6 months
期刊介绍: Rapid Prototyping Journal concentrates on development in a manufacturing environment but covers applications in other areas, such as medicine and construction. All papers published in this field are scattered over a wide range of international publications, none of which actually specializes in this particular discipline, this journal is a vital resource for anyone involved in additive manufacturing. It draws together important refereed papers on all aspects of AM from distinguished sources all over the world, to give a truly international perspective on this dynamic and exciting area. -Benchmarking – certification and qualification in AM- Mass customisation in AM- Design for AM- Materials aspects- Reviews of processes/applications- CAD and other software aspects- Enhancement of existing processes- Integration with design process- Management implications- New AM processes- Novel applications of AM parts- AM for tooling- Medical applications- Reverse engineering in relation to AM- Additive & Subtractive hybrid manufacturing- Industrialisation
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