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用于牙科应用的高断裂韧性复合陶瓷的评估。

Evaluation of a high fracture toughness composite ceramic for dental applications.

作者信息

Aboushelib Moustafa N, Kleverlaan Cornelis J, Feilzer Albert J

机构信息

Department of Dental Materials Science, Academic Center for Dentistry Amsterdam (ACTA), Universiteit van Amsterdam and Vrije Universiteit, Amsterdam, The Netherlands.

出版信息

J Prosthodont. 2008 Oct;17(7):538-44. doi: 10.1111/j.1532-849X.2008.00346.x. Epub 2008 Aug 26.

Abstract

PURPOSE

The introduction of yttrium partially stabilized zirconia polycrystals (Y-TZP) has pushed the application limits of all-ceramic restorations. The mechanical properties of these materials can be further improved by the addition of a secondary dopant phase. The aim of this work was to evaluate the properties of a new nano-composite ceramic used as a dental framework material.

MATERIALS AND METHODS

The properties of a new ceria-stabilized tetragonal zirconia polycrystal co-doped with alumina (Ce-TZP-Al) were investigated. Y-TZP was used as control. Sixty bars (20 x 2.5 x 1.5 mm(3)) from each material were prepared by cutting CAD/CAM milling blocks. Twenty specimens were used to measure the 4-point flexural strength and the modulus of elasticity of the tested materials. The remaining specimens were used to measure the fracture toughness using indentation strength (IS), single edge notched beam (SENB), and fractography (FR). The thermal expansion coefficient (TEC) was measured using temperature expansion diagrams. The bond strength of the two framework materials to two esthetic veneer ceramics was tested using the microtensile bond strength test (MTBS). Finally, scanning electron microscopy (SEM) and energy dispersive X-ray microanalysis (EDX) were used to analyze the internal structure of the materials. One- and two-way analysis of variance (ANOVA) and Bonferroni post hoc tests were used to analyze the data (alpha= 0.5).

RESULTS

The flexural strength and modulus of elasticity of Ce-TZP-Al (856 MPa, 170 GPa) were significantly weaker (p < 0.001) than those of Y-TZP (1003 MPa, 215 GPa). The (IS) fracture toughness of the former (19.02 MPa m(1/2)) was significantly higher (p < 0.001) than SENB (12.6 MPa m(1/2)) or FR (12.8 MPa m(1/2)) values. These values were significantly higher (p < 0.001) than the fracture toughness of Y-TZP (7.4 MPa m(1/2)), which showed statistically similar values using the same three techniques. The measured TEC for the two materials was relatively similar, 10.1 microm/ degrees C and 10.4 mum/ degrees C, respectively. Regarding MTBS values, Ce-TZP-Al had significantly lower bond strength values (p < 0.001) and a higher percentage of interfacial failure than Y-TZP, which failed completely cohesively with the two used veneer ceramics. SEM analysis revealed zirconia grains pull out and structural defects at the core-veneer interface for Ce-TZP-Al material, which explained its weak bond to the two used veneers.

CONCLUSION

Despite the promising mechanical properties of Ce-TZP-Al nano-composite ceramic, its very low bond strength to esthetic veneers leaves such layered restorations highly susceptible to delamination and chipping under function. Further studies are needed to enhance the surface stability of this high fracture toughness ceramic.

摘要

目的

钇部分稳定氧化锆多晶体(Y-TZP)的引入拓展了全瓷修复体的应用范围。通过添加二次掺杂相可进一步改善这些材料的机械性能。本研究旨在评估一种用作牙科框架材料的新型纳米复合陶瓷的性能。

材料与方法

研究了一种新的共掺杂氧化铝的二氧化铈稳定四方氧化锆多晶体(Ce-TZP-Al)的性能。以Y-TZP作为对照。通过切割CAD/CAM铣削块制备每种材料的60根棒材(20×2.5×1.5 mm³)。20个试样用于测量测试材料的四点弯曲强度和弹性模量。其余试样用于通过压痕强度(IS)、单边切口梁(SENB)和断口分析(FR)测量断裂韧性。使用温度膨胀图测量热膨胀系数(TEC)。使用微拉伸粘结强度测试(MTBS)测试两种框架材料与两种美学饰面陶瓷的粘结强度。最后,使用扫描电子显微镜(SEM)和能量色散X射线微分析(EDX)分析材料的内部结构。采用单因素和双因素方差分析(ANOVA)以及Bonferroni事后检验分析数据(α = 0.5)。

结果

Ce-TZP-Al的弯曲强度和弹性模量(856 MPa,170 GPa)显著低于Y-TZP(1003 MPa,215 GPa)(p < 0.001)。前者的(IS)断裂韧性(19.02 MPa·m¹/²)显著高于SENB(12.6 MPa·m¹/²)或FR(12.8 MPa·m¹/²)值(p < 0.001)。这些值显著高于Y-TZP的断裂韧性(7.4 MPa·m¹/²)(p < 0.001),使用相同的三种技术时Y-TZP的断裂韧性值在统计学上相似。两种材料测得的TEC相对相似,分别为10.1 µm/℃和10.4 µm/℃。关于MTBS值,Ce-TZP-Al的粘结强度值显著较低(p < 0.001),且界面失效百分比高于Y-TZP,Y-TZP与两种使用的饰面陶瓷完全粘结失效。SEM分析显示Ce-TZP-Al材料在核心-饰面界面处有氧化锆晶粒拔出和结构缺陷,这解释了其与两种使用的饰面粘结较弱的原因。

结论

尽管Ce-TZP-Al纳米复合陶瓷具有良好的机械性能,但其与美学饰面的粘结强度极低,使得这种分层修复体在功能作用下极易分层和崩裂。需要进一步研究以提高这种高断裂韧性陶瓷的表面稳定性。

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