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Fracture mechanics analyses of ceramic/veneer Interface under mixed-mode loading

机译:混合模式下陶瓷/薄壁界面的断裂力学分析

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Few studies have focused on the interface fracture performance of zirconia/veneer bilayered structure, which plays an important role in dental all-ceramic restorations. The purpose of this study was to evaluate the fracture mechanics performance of zirconia/ veneer interface in a wide range of mode-mixities (at phase angles ranging from 0° to 90°), and to examine the effect of mechanical properties of the materials and the interface on the fracture initiation and crack path of an interfacial crack. A modified sandwich test configuration with an oblique interfacial crack was proposed and calibrated to choose the appropriate geometry dimensions by means of finite element analysis. The specimens with different interface inclination angles were tested to failure under three-point bending configuration. Interface fracture parameters were obtained with finite element analyses. Based on the interfacial fracture mechanics, three fracture criteria for crack kinking were used to predict crack initiation and propagation. In addition, the effects of residual stresses due to coefficient of thermal expansion mismatch between zirconia and veneer on the crack behavior were evaluated. The crack initiation and propagation were well predicted by the three fracture criteria. For specimens at phase angle of 0, the cracks propagated in the interface; whereas for all the other specimens the cracks kinked into the veneer. Compressive residual stresses in the veneer can improve the toughness of the interface structure. The results suggest that, in zirconia/veneer bilayered structure the veneer is weaker than the interface, which can be used to explain the clinical phenomenon that veneer chipping rate is larger than interface delamination rate. Consequently, a veneer material with larger fracture toughness is needed to decrease the failure rate of all-ceramic restorations. And the coefficient of thermal expansion mismatch of the substrates can be larger to produce larger compressive stresses in the veneer.
机译:很少有研究集中在氧化锆/单晶双层结构的界面断裂性能上,这在牙科全瓷修复体中起着重要作用。这项研究的目的是评估氧化锆/薄板界面在多种模式混合下(在0°至90°的相角范围内)的断裂力学性能,并研究材料的力学性能和性能。界面裂纹在裂纹萌生和裂纹路径上的界面。提出了一种改进的具有倾斜界面裂纹的三明治测试结构,并通过有限元分析对其进行了校准,以选择合适的几何尺寸。在三点弯曲配置下,测试了具有不同界面倾斜角度的样品的破坏。界面断裂参数通过有限元分析获得。基于界面断裂力学,使用了三个裂纹拐点断裂准则来预测裂纹的萌生和扩展。另外,评估了由于氧化锆和薄板之间的热膨胀系数不匹配而引起的残余应力对裂纹行为的影响。通过三个断裂准则可以很好地预测裂纹的萌生和扩展。对于相角为0的试样,裂纹在界面处扩展;而对于其他所有试样,裂纹都弯折在饰面板上。单板中的压缩残余应力可以改善界面结构的韧性。结果表明,在氧化锆/薄板双层结构中,薄板比界面薄,这可以用来解释薄板切屑率大于界面分层率的临床现象。因此,需要具有较大断裂韧性的单板材料以降低全陶瓷修复体的失败率。基板的热膨胀系数不匹配会更大,从而在单板中产生更大的压缩应力。

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