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用于矫治器制造的热塑性聚合物的力学性能:体外研究

Mechanical Properties of Thermoplastic Polymers for Aligner Manufacturing: In Vitro Study.

作者信息

Tamburrino Francesco, D'Antò Vincenzo, Bucci Rosaria, Alessandri-Bonetti Giulio, Barone Sandro, Razionale Armando Viviano

机构信息

DICI-Department of Civil and Industrial Engineering, Università di Pisa, 56122 Pisa, Italy.

Department of Neurosciences, Reproductive Sciences and Oral Sciences, Università di Napoli Federico II, 80131 Napoli, Italy.

出版信息

Dent J (Basel). 2020 May 10;8(2):47. doi: 10.3390/dj8020047.

Abstract

The use of metal-free thermoplastic materials plays a key role in the orthodontic digital workflow due to the increasing demand for clear aligner treatments. Three thermoplastic polymers commonly used to fabricate clear aligners, namely Duran, Biolon and Zendura, were investigated to evaluate the effect of thermoforming (T.), storage in artificial saliva (S.A.S.) and their combination on their mechanical properties. Elastic modulus and yield stress of the specimens were characterized. Each material was characterized for each condition through tensile tests (ISO527-1). The results showed that thermoforming does not lead to a significant decrease in yield stress, except for Zendura that showed about a 30% decrease. An increase of the elastic modulus of Duran and Zendura, instead, was observed after thermoforming. The same increase was noticed for the yield stress of Duran. For S.A.S. specimens, the elastic modulus generally decreases compared to supplier condition (A.S.) and simply thermoformed material. A decrease of yield stress, instead, is significant for Zendura. The results demonstrated that the impact of the operating conditions on the mechanical properties can vary according to the specific polymer. To design reliable and effective orthodontic treatments, the materials should be selected after their mechanical properties are characterized in the simulated intraoral environment.

摘要

由于对透明矫治器治疗的需求不断增加,无金属热塑性材料在正畸数字工作流程中发挥着关键作用。研究了三种常用于制造透明矫治器的热塑性聚合物,即Duran、Biolon和Zendura,以评估热成型(T.)、在人工唾液中储存(S.A.S.)及其组合对其机械性能的影响。对试样的弹性模量和屈服应力进行了表征。通过拉伸试验(ISO527-1)对每种材料在每种条件下进行了表征。结果表明,热成型不会导致屈服应力显著降低,但Zendura除外,其屈服应力降低了约30%。相反,热成型后观察到Duran和Zendura的弹性模量增加。Duran的屈服应力也有同样的增加。对于在人工唾液中储存的试样,与供应商提供的状态(A.S.)和简单热成型的材料相比,弹性模量通常会降低。相反,Zendura的屈服应力显著降低。结果表明,操作条件对机械性能的影响可能因具体聚合物而异。为了设计可靠有效的正畸治疗方案,应在模拟口腔环境中对材料的机械性能进行表征后再选择材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1a5/7345642/56f803946a02/dentistry-08-00047-g001.jpg

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