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Influence of stress simulation parameters on the fracture strength of all-ceramic fixed-partial dentures

机译:应力模拟参数对全瓷固定局部义齿断裂强度的影响

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Objectives. This in vitro study tested the influence of diverse stress simulation parameters on the fracture strength of all-ceramic three-unit fixed partial dentures (FPDs). Methods. All-ceramic FPDs made of Empress 2 (Ivoclar-Vivadent, FL) were exposed to thermal cycling and mechanical loading (TCML) with varying loading parameters such as chewing force (amount, frequency), thermal loading, lateral jaw motion, abutment material, artificial periodontium or antagonistic denture. To investigate the influence of the abutment material, human teeth, polymer abutments and alloy abutments were used. Two different TCML devices with pneumatic or weight loading were compared. FPDs without aging were used as a control. Results and Significance. Combined thermal and mechanical loading significantly reduced the FPD fracture resistance from 1832N to 410N. Duplication of chewing frequency, phase load increase or additional lateral movement did not effect the results. Increasing chewing force, artificial periodontium, and antagonist or abutment material reduced the fracture resistance of the tested FPDs. Different devices with weight or pneumatic loading had no significant influence on the loading capacity of the FPDs. Artificial aging should be performed combining thermal cycling with mechanical loading. Simulation of the artificial periodontium, human antagonists and abutments should be included to achieve a significant aging.
机译:目标。这项体外研究测试了各种应力模拟参数对全陶瓷三单元固定局部义齿(FPD)断裂强度的影响。方法。将Empress 2(Ivoclar-Vivadent,FL)制成的全陶瓷FPD暴露于热循环和机械负载(TCML)中,并采用不同的负载参数,例如咀嚼力(量,频率),热负载,侧颚运动,基台材料,人造牙周膜或拮抗义齿。为了研究基台材料的影响,使用了人类牙齿,聚合物基台和合金基台。比较了两种具有气动或重量负载的TCML设备。没有老化的FPD被用作对照。结果和意义。热负荷和机械负荷的组合将FPD的抗断裂性从1832N降低到410N。重复咀嚼频率,相负荷增加或额外的横向运动均不会影响结果。咀嚼力,人造牙周膜和拮抗剂或基台材料的增加会降低测试的FPD的抗断裂性。具有重量或气动负载的不同设备对FPD的负载能力没有显着影响。人工老化应结合热循环和机械负载进行。应当包括对人造牙周膜,人类拮抗剂和基台的模拟,以实现明显的老化。

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