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人类牙釉质的接触疲劳:实验、机制与建模

Contact fatigue of human enamel: Experiments, mechanisms and modeling.

作者信息

Gao S S, An B B, Yahyazadehfar M, Zhang D, Arola D D

机构信息

State Key Laboratory of Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, PR China.

Department of Physics, Shanghai University, Shanghai, PR China; Department of Mechanics, Shanghai University, Shanghai, PR China.

出版信息

J Mech Behav Biomed Mater. 2016 Jul;60:438-450. doi: 10.1016/j.jmbbm.2016.02.030. Epub 2016 Mar 2.

Abstract

Cyclic contact between natural tooth structure and engineered ceramics is increasingly common. Fatigue of the enamel due to cyclic contact is rarely considered. The objectives of this investigation were to evaluate the fatigue behavior of human enamel by cyclic contact, and to assess the extent of damage over clinically relevant conditions. Cyclic contact experiments were conducted using the crowns of caries-free molars obtained from young donors. The cuspal locations were polished flat and subjected to cyclic contact with a spherical indenter of alumina at 2Hz. The progression of damage was monitored through the evolution in contact displacement, changes in the contact hysteresis and characteristics of the fracture pattern. The contact fatigue life diagram exhibited a decrease in cycles to failure with increasing cyclic load magnitude. Two distinct trends were identified, which corresponded to the development and propagation of a combination of cylindrical and radial cracks. Under contact loads of less than 400N, enamel rod decussation resisted the growth of subsurface cracks. However, at greater loads the damage progressed rapidly and accelerated fatigue failure. Overall, cyclic contact between ceramic appliances and natural tooth structure causes fatigue of the enamel. The extent of damage is dependent on the magnitude of cyclic stress and the ability of the decussation to arrest the fatigue damage.

摘要

天然牙结构与工程陶瓷之间的循环接触越来越普遍。因循环接触导致的牙釉质疲劳很少被考虑。本研究的目的是通过循环接触评估人牙釉质的疲劳行为,并评估在临床相关条件下的损伤程度。使用从年轻捐赠者获得的无龋磨牙牙冠进行循环接触实验。将牙尖部位打磨平整,并使其与氧化铝球形压头在2Hz频率下进行循环接触。通过接触位移的变化、接触滞后的改变以及断裂模式的特征来监测损伤的进展。接触疲劳寿命图显示,随着循环载荷幅值的增加,失效循环次数减少。识别出两种不同的趋势,这与圆柱状裂纹和径向裂纹组合的发展与扩展相对应。在小于400N的接触载荷下,釉柱交叉结构可阻止次表面裂纹的扩展。然而,在更大的载荷下,损伤迅速发展并加速疲劳失效。总体而言,陶瓷矫治器与天然牙结构之间的循环接触会导致牙釉质疲劳。损伤程度取决于循环应力的幅值以及交叉结构阻止疲劳损伤的能力。

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