Politecnico di Bari, Dipartimento di Meccanica Matematica e Management, Via Orabona 4, 70125, Bari, Italy.
Politecnico di Bari, Dipartimento di Meccanica Matematica e Management, Via Orabona 4, 70125, Bari, Italy.
J Mech Behav Biomed Mater. 2022 Oct;134:105391. doi: 10.1016/j.jmbbm.2022.105391. Epub 2022 Jul 21.
The aim was to investigate the full-field mechanical-deformation behavior of clear aligners made by polyethylene terephthalate glycol (PET-G) subjected to cyclic compression tests.
Digital Image Correlation (DIC) (Chu et al., 1985; Schreier et al., 2009), a contactless full-field measurement technique, and Optical Microscope (OM) analysis were applied to study two PET-G aligners thermoformed from discs of a thickness of 0.75 mm and 0.88 mm. The clear aligners were placed on dental shape resin casts and were subjected to cyclic compression up to 13000 load cycles from 0 to 50 N at room temperature. The chosen number of load cycles simulates the average load history to which an aligner is subjected for one week. Local displacements and strains were measured for each test at 2, 6, 10, 20, 1000, 5000 and 13000 loading cycles.
Both aligners showed greater displacements in the early stages of loading, more pronounced for the 0.88 mm one. Local displacement and strain maps are derived both along the load direction and to the transverse one (never done from other researchers). Load-displacement cyclic curves allowed to evaluate the evolution of the stored energy and the stiffness during the test. The OM analyses showed significant morphological variations on the aligners' surface, such as wear and tear, high depressions and cracks, especially for the 0.75 mm specimen.
Full-field analysis allowed to understand the mechanical behavior of device with complex geometry and complex load distribution, like invisible aligners. The knowledge of the stiffness and the direction of the total displacement helps the orthodontist to implement the best strategy to improve the patient's comfort and the treatment time.
本研究旨在探讨聚对苯二甲酸乙二醇酯二醇(PET-G)制成的透明矫正器在循环压缩试验中的全场力学变形行为。
应用数字图像相关(DIC)(Chu 等人,1985;Schreier 等人,2009)和光学显微镜(OM)分析这两种接触式全场测量技术,研究了厚度分别为 0.75mm 和 0.88mm 的两个由圆盘热成型而成的 PET-G 矫正器。将透明矫正器放置在牙形状树脂铸模上,并在室温下从 0 到 50N 进行循环压缩,直到 13000 个负载循环。选择的负载循环次数模拟了矫正器在一周内所承受的平均负载历史。在每个测试中,在 2、6、10、20、1000、5000 和 13000 个加载循环时测量局部位移和应变。
两个矫正器在加载的早期阶段都表现出更大的位移,0.88mm 的矫正器更为明显。根据加载方向和横向方向(从未有其他研究人员进行过)得出局部位移和应变图。载荷-位移循环曲线可用于评估在试验过程中存储能量和刚度的演变。OM 分析显示,矫正器表面存在明显的形态变化,如磨损、深度凹陷和裂缝,特别是对于 0.75mm 的样本。
全场分析有助于理解具有复杂几何形状和复杂载荷分布的器械的力学行为,如隐形矫正器。了解刚度和总位移的方向有助于正畸医生实施最佳策略,以提高患者的舒适度和治疗时间。