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A photoelastic assessment of residual stresses in zirconia-veneer crowns

机译:氧化锆-冠状牙冠中残余应力的光弹性评估

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摘要

Residual stresses within the veneer are linked to the high prevalence of veneer chipping observed in clinical trials of zirconia prostheses. We hypothesized that the thermal mismatch between the zirconia infrastructure and the veneer porcelain, as well as the rate used for cooling zirconia-veneer crowns, would be directly proportional to the magnitude of residual stresses built within the veneer layer. Two porcelains with different coefficients of thermal expansion were used to veneer zirconia copings, to create high or low thermal mismatches. The crowns were cooled according to a fast- or a slow-cooling protocol. The retardation of polarized light waves was used to calculate the residual stress magnitude and distribution across the veneer, according to the photoelasticity principle, in 1.0-mm-thick crown sections. While thermal mismatch was an important factor influencing the maximum stress development in the veneer, cooling rate had a minor role. Curved surfaces were preferential sites for stress concentration regardless of thermal mismatch or cooling rate.
机译:单板内部的残余应力与氧化锆假体临床试验中观察到的单板切屑的高发生率有关。我们假设,氧化锆基础设施与贴面瓷之间的热失配,以及用于冷却氧化锆-贴面冠的冷却速率,将直接与贴面层内残余应力的大小成正比。使用两种具有不同热膨胀系数的瓷器贴面氧化锆顶盖,以产生高或低的热失配。根据快速或慢速冷却方案对牙冠进行冷却。根据光弹性原理,在1.0毫米厚的冠状截面中,使用偏振光的延迟来计算残余应力的大小和整个胶合板的分布。虽然热失配是影响单板最大应力发展的重要因素,但冷却速率的作用较小。弯曲表面是应力集中的优先位置,无论热失配或冷却速率如何。

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