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Laboratory Simulation of Y-TZP All-ceramic Crown Clinical Failures

机译:Y-TZP全瓷冠临床失败的实验室模拟

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摘要

Clinically, zirconia-supported all-ceramic restorations are failing by veneer-chipping without exposing the zirconia interface. We hypothesized that mouth motion step-stress-accelerated fatigue testing of standardized dental crowns would permit this previously unrecognized failure mode to be investigated. Using CAD software, we imported the average dimensions of a mandibular first molar crown and modeled tooth preparation. The CAD-based tooth preparation was rapid-prototyped as a die for fabrication of zirconia core porcelain-veneered crowns. Crowns were bonded to aged composite reproductions of the preparation and aged 14 days in water. Crowns were single-cycle-loaded to failure or mouth-motion step-stress- fatigue-tested. Finite element analysis indicated high stress levels below the load and at margins, in agreement with only single-cycle fracture origins. As hypothesized, the mouth motion sliding contact fatigue resulted in veneer chipping, reproducing clinical findings allowing for investigations into the underlying causes of such failures.
机译:在临床上,氧化锆支持的全陶瓷修复体由于未暴露氧化锆界面而通过单板切碎而失败。我们假设标准化牙冠的口部运动逐步应力加速疲劳测试将允许调查这种以前无法识别的失效模式。使用CAD软件,我们导入了下颌第一磨牙冠的平均尺寸并建模了牙齿。基于CAD的牙齿准备材料被快速原型化为制造氧化锆芯烤瓷冠的模具。将牙冠与制剂的老化复合复制品结合,并在水中老化14天。对牙冠进行单周期加载以进行失败或经口运动步阶应力疲劳测试。有限元分析表明,在载荷以下和极限位置处的应力水平较高,仅与单周期断裂起源一致。如假设的那样,口部运动滑动接触疲劳导致单板碎裂,再现了临床发现,可用于调查此类故障的根本原因。

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