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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Experimental evaluation of the bond strength between a CoCrMo dental alloy and porcelain through a composite metal-ceramic graded transition interlayer
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Experimental evaluation of the bond strength between a CoCrMo dental alloy and porcelain through a composite metal-ceramic graded transition interlayer

机译:通过金属-陶瓷梯度过渡中间层对CoCrMo牙科合金与瓷器之间的粘结强度进行实验评估

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摘要

Objectives: The purpose of this study was to evaluate the shear bond strength between CoCrMo dental alloy and porcelain restorations by application of different metal-ceramic transitional interfaces aiming at improvement of the bond strength and fracture tolerances. Methods: Several metal-ceramic specimens with different composite interlayers were produced. The interlayers consisted of metal/ceramic composites with different metal volume fractions (20. M; 40. M; 60. M; 80. M). The metal-ceramic bond strength as well as the fracture strength of the composites and monolithic base materials were assessed by the means of a shear test performed in a universal test machine. The interfaces of fractured and untested specimens were examined by the means of optical microscopy. The microstructures of monolithic base materials were analyzed using SEM/EDS. The elastic and inelastic properties of the homogeneous compositions were additionally evaluated using dynamic mechanical analysis. Results: The bond strength results obtained for metal-ceramic gradated specimens were the highest (261±38. MPa) for 40. vol% metal in the interlayer [40. M] vs. 109±27. MPa for a direct metal-ceramic joint. The Young's moduli and the fracture resistance of the composites revealed an increasing trend for increasing metal contents. Significance: This study shows that a graded transition between metal and ceramic, provided by a metal/ceramic composite interlayer, is regarded for an increase by 2.5 times in the bond strength between the two materials relative to conventional sharp transitions. The elastic modulus of the composites used as interlayers might be very reasonably approximated by a micromechanical model.
机译:目的:本研究旨在通过应用不同的金属-陶瓷过渡界面来评估CoCrMo牙科合金与烤瓷修复体之间的剪切粘结强度,旨在提高粘结强度和断裂耐受性。方法:制备了几种具有不同复合夹层的金属陶瓷样品。中间层由具有不同金属体积分数(20. M; 40。M; 60。M; 80。M)的金属/陶瓷复合物组成。通过在通用试验机中进行的剪切试验,评估了金属-陶瓷的粘结强度以及复合材料和整体基材的断裂强度。通过光学显微镜检查断裂的和未经测试的样品的界面。使用SEM / EDS分析了整体基材的微观结构。均质组合物的弹性和非弹性性能还使用动态力学分析进行了评估。结果:对于中间层中40%(体积)的金属,金属-陶瓷梯度试样的结合强度结果最高(261±38。MPa)[40。 M] vs.109±27。直接金属陶瓷接头的MPa。复合材料的杨氏模量和抗断裂性显示出金属含量增加的趋势。意义:这项研究表明,由金属/陶瓷复合中间层提供的金属和陶瓷之间的渐变过渡相对于传统的尖锐过渡而言,使两种材料之间的结合强度提高了2.5倍。用作中间层的复合材料的弹性模量可以通过微力学模型非常合理地近似。

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