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正畸粘接剂的胶凝后收缩、弹性模量和应力。

Post-gel shrinkage, elastic modulus, and stress generated by orthodontic adhesives.

出版信息

Angle Orthod. 2020 Mar;90(2):278-284. doi: 10.2319/032719-233.1. Epub 2019 Sep 23.

Abstract

OBJECTIVES

To measure post-gel shrinkage, elastic modulus, and flexural strength of orthodontic adhesives and to predict shrinkage stress using finite element analysis (FEA).

MATERIALS AND METHODS

The following 6 orthodontic adhesives were tested: Transbond XT (3M Unitek, Monrovia, Calif), Transbond Plus Color Change (3M Unitek), Greengloo (Ormco, Brea, Calif), Ortho Connect (GC America, Alsip, Ill), Trulock (RMO, Denver, Colo), GoTo (Reliance, Itasca, Ill). Post-gel shrinkage was measured using a biaxial strain gauge during light curing. Elastic modulus and flexural strength were measured with a 4-point bending test. Analysis of variance and Student-Newman-Keuls post hoc tests were used to compare the shrinkage, elastic modulus, and flexural strengths among the materials (α = .05). Shrinkage stresses caused by the post-gel shrinkage and elastic modulus values were calculated using a cross-sectional FEA of a metallic bracket bonded to an incisor.

RESULTS

Properties were highly different among the adhesives ( ≤ .0001). Transbond XT (0.38 ± 0.09 percent volumetric contraction) and GoTo (0.42 ± 0.05 percent volumetric contraction) had the lowest post-gel shrinkage; Transbond Plus Color Change had the highest (0.84 ± 0.08 percent volumetric contraction). OrthoConnect (6.8 ± 0.6 gigapascals) had the lowest elastic modulus; GoTo (28.3 ± 3.1 gigapascals) had the highest. Trulock (64.1 ± 8.2 megapascals) had the lowest flexural strength; Greengloo (139.1 ± 20.7 megapascals) had the highest. FEA showed that the highest shrinkage stresses were generated with Transbond Plus Color Change and the lowest with OrthoConnect.

CONCLUSIONS

Post-gel shrinkage of orthodontic adhesives was comparable with restorative composites, which are known to create shrinkage stresses in restored teeth. FEA indicated that this shrinkage creates stresses in the adhesive and in the enamel around the brackets.

摘要

目的

测量正畸粘接剂的凝胶后收缩、弹性模量和弯曲强度,并使用有限元分析(FEA)预测收缩应力。

材料和方法

测试了以下 6 种正畸粘接剂:Transbond XT(3M Unitek,Monrovia,加利福尼亚州)、Transbond Plus Color Change(3M Unitek)、Greengloo(Ormco,Brea,加利福尼亚州)、Ortho Connect(GC America,Alsip,Illinois)、Trulock(RMO,Denver,Colorado)、GoTo(Reliance,Itasca,Illinois)。在光固化过程中,使用双轴应变计测量凝胶后收缩。弹性模量和弯曲强度通过四点弯曲试验测量。使用方差分析和 Student-Newman-Keuls 事后检验比较材料之间的收缩、弹性模量和弯曲强度(α=0.05)。使用金属托槽粘结到切牙的横截面 FEA 计算由凝胶后收缩和弹性模量值引起的收缩应力。

结果

粘接剂之间的性能差异很大(≤0.0001)。Transbond XT(0.38±0.09%体积收缩)和 GoTo(0.42±0.05%体积收缩)的凝胶后收缩最小;Transbond Plus Color Change 的收缩最大(0.84±0.08%体积收缩)。OrthoConnect(6.8±0.6 千兆帕斯卡)的弹性模量最低;GoTo(28.3±3.1 千兆帕斯卡)的最高。Trulock(64.1±8.2 兆帕斯卡)的弯曲强度最低;Greengloo(139.1±20.7 兆帕斯卡)的最高。FEA 显示,Transbond Plus Color Change 产生的收缩应力最大,OrthoConnect 产生的收缩应力最小。

结论

正畸粘接剂的凝胶后收缩与已知会在修复牙齿中产生收缩应力的修复复合材料相当。FEA 表明,这种收缩会在粘接剂和托槽周围的釉质中产生应力。

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