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Fractographic analysis of lithium silicate crown failures during sintering

机译:烧结过程中硅酸锂冠冠断裂的分形分析

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摘要

The two-step production process of glass-ceramic dental restorations involves a computer-aided design/computer-aided machining step followed by a crystallization firing for the final material properties to be achieved. Certain firing parameters are believed to trigger spontaneous fracture of crowns during the cooling process. In this study, cooling fractures have been reproducibly observed and investigated using fractography combined with material (glass transition temperature) and process (cooling rate) characterization. Stress distribution was visualized using birefringence measurements. Fractographic observations revealed fracture starting at the intaglio side of the crowns specifically at contact points with the support firing pins. Further analysis showed that a fast cooling rate was applied during the glass transition region. Thermal stresses were concentrated around the firing pin supports and released the fracture. To prevent such fractures, a slow cooling protocol below the glass transition temperature is our recommendation to dental technicians. Furthermore, the use of planar firing pad or paste supports is advised over the use of point contact supports.
机译:玻璃陶瓷牙修复体的两步生产过程包括计算机辅助设计/计算机辅助加工步骤,然后进行结晶烧制,以实现最终的材料性能。据信某些点火参数会在冷却过程中触发牙冠的自发性断裂。在这项研究中,使用断口照相术结合材料(玻璃化转变温度)和工艺(冷却速率)表征,可再现地观察和研究了冷却裂缝。应力分布使用双折射测量显示。断口观察显示,断裂始于牙冠的凹版侧,特别是在与支撑撞针的接触点处。进一步的分析表明,在玻璃化转变期间施加了快速的冷却速度。热应力集中在撞针支撑件周围,并释放了裂缝。为防止此类骨折,我们建议牙科技术人员采用低于玻璃化转变温度的慢速冷却方案。此外,建议使用平面点火垫或糊状支撑物,而不是使用点接触支撑物。

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