Effects of simulated intraoral temperatures and wet environments on the stress relaxation properties of thermoplastic aligner materials.

IF 2.4 2区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE Head & Face Medicine Pub Date : 2025-03-31 DOI:10.1186/s13005-025-00497-7
Xinyu Cui, Fengru Li, Jiuhui Jiang
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Abstract

Introduction: Thermoplastic aligner materials are made from copolymers, and in the oral environment, their mechanical properties change over time. The effects of intraoral temperatures and the wet environments on the stress relaxation properties of these materials remain poorly understood. The aim of this study is to investigate the separate effects of the temperature and wet environment on the stress relaxation behavior of five available commercial orthodontic thermoplastic materials consisting of three chemical compositions.

Method: A modified temperature-controlled water bath system was used to eliminate the confounding effect of water. The residual stresses of five commercial orthodontic thermoplastic materials with different chemical compositions (Biolon, Duran, and Erkodur (PETG), Essix ACE (copolyester), and Essix C + (PP/PE)) were examined at room temperature (22 °C), 37 °C, and 55 °C. After the materials were immersed in deionized water and artificial saliva for two weeks (37 °C), the 30 min stress relaxation curves of the five materials were measured.

Results: Compared with those at room temperature (22 °C), the stress relaxation rates of the five materials increased and ranged from 0.7% to 18.11% at 37 °C and from 20.54% to 88.31% at 55 °C, and Ekodur and Essix ACEs exhibited relatively smaller increases. After two weeks of immersion in deionized water and artificial saliva, the stress relaxation rate of Essix ACE significantly decreased (p < 0.05), whereas that of the other four materials did not significantly change.

Conclusion: Elevated intraoral temperature accelerated the stress relaxation of thermoplastic aligner materials. The intraoral liquid immersion had no accelerating effect on the stress relaxation of any of the tested materials and even had a significant decelerating effect on that of Essix ACE.

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模拟口内温度和湿润环境对热塑性对准材料应力松弛性能的影响。
简介:热塑性矫正材料由共聚物制成,在口腔环境中,其机械性能随时间而变化。口腔内温度和潮湿环境对这些材料应力松弛特性的影响仍然知之甚少。本研究的目的是研究温度和潮湿环境对由三种化学成分组成的五种商用正畸热塑性材料的应力松弛行为的单独影响。方法:采用改进型温控水浴系统消除水的混杂效应。研究了五种不同化学成分的商用正畸热塑性材料(Biolon, Duran, Erkodur (PETG), Essix ACE(共聚酯)和Essix C + (PP/PE))在室温(22°C), 37°C和55°C下的残余应力。材料在去离子水和人工唾液中浸泡两周(37℃)后,测量五种材料的30 min应力松弛曲线。结果:与室温(22°C)相比,5种材料在37°C和55°C下的应力松弛率分别为0.7% ~ 18.11%和20.54% ~ 88.31%,其中Ekodur和Essix ace的应力松弛率增幅较小。在去离子水和人工唾液中浸泡2周后,Essix ACE的应力松弛速率显著降低(p)。结论:升高的口内温度加速了热塑性矫正剂材料的应力松弛。口服液浸泡对所有被试材料的应力松弛均无加速作用,对Essix ACE的应力松弛反而有显著的减速作用。
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来源期刊
Head & Face Medicine
Head & Face Medicine DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
4.70
自引率
3.30%
发文量
32
审稿时长
>12 weeks
期刊介绍: Head & Face Medicine is a multidisciplinary open access journal that publishes basic and clinical research concerning all aspects of cranial, facial and oral conditions. The journal covers all aspects of cranial, facial and oral diseases and their management. It has been designed as a multidisciplinary journal for clinicians and researchers involved in the diagnostic and therapeutic aspects of diseases which affect the human head and face. The journal is wide-ranging, covering the development, aetiology, epidemiology and therapy of head and face diseases to the basic science that underlies these diseases. Management of head and face diseases includes all aspects of surgical and non-surgical treatments including psychopharmacological therapies.
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