Santos R L P, Silva F S, Nascimento R M, Souza J C M, Motta F V, Carvalho O, Henriques B
Department of Materials Engineering, Federal University of Rio Grande do Norte (UFRN), Campus Lagoa Nova, 59078-970 Natal, Brazil.
Center for MicroElectroMechanical Systems (CMEMS-UMinho), University of Minho, Campus Azurém, Guimarães 4800-058, Portugal.
J Mech Behav Biomed Mater. 2016 Jul;60:547-556. doi: 10.1016/j.jmbbm.2016.03.015. Epub 2016 Mar 24.
The purpose of this study was to evaluate the shear bond strength of veneering feldspathic porcelain to zirconia substrates modified by CNC-milling process or by coating zirconia with a composite interlayer.
Four types of zirconia-porcelain interface configurations were tested: RZ - porcelain bonded to rough zirconia substrate (n=16); PZ - porcelain bonded to zirconia substrate with surface holes (n=16); RZI - application of a composite interlayer between the veneering porcelain and the rough zirconia substrate (n=16); PZI - application of a composite interlayer between the porcelain and the zirconia substrate treated by CNC-milling (n=16). The composite interlayer was composed of zirconia particles reinforced porcelain (30%, vol%). The mechanical properties of the ceramic composite have been determined. The shear bond strength test was performed at 0.5mm/min using a universal testing machine. The interfaces of fractured and untested specimens were examined by FEG-SEM/EDS. Data was analyzed with Shapiro-Wilk test to test the assumption of normality. The one-way ANOVA followed by Tukey HSD multiple comparison test was used to compare shear bond strength results (α=0.05).
The shear bond strength of PZ (100±15MPa) and RZI (96±11MPa) specimens were higher than that recorded for RZ (control group) specimens (89±15MPa), although not significantly (p>0.05). The highest shear bond strength values were recorded for PZI specimens (138±19MPa), yielding a significant improvement of 55% relative to RZ specimens (p<0.05).
This study shows that it is possible to highly enhance the zirconia-porcelain bond strength - even by ~55% - by combining surface holes in zirconia frameworks and the application of a proper ceramic composite interlayer.
本研究旨在评估通过计算机数控(CNC)铣削工艺改性的氧化锆基底或用复合中间层涂覆氧化锆后,饰面长石质瓷与氧化锆基底之间的剪切粘结强度。
测试了四种类型的氧化锆 - 瓷界面结构:RZ - 瓷粘结到粗糙的氧化锆基底上(n = 16);PZ - 瓷粘结到有表面孔的氧化锆基底上(n = 16);RZI - 在饰面瓷和粗糙的氧化锆基底之间施加复合中间层(n = 16);PZI - 在经CNC铣削处理的瓷和氧化锆基底之间施加复合中间层(n = 16)。复合中间层由氧化锆颗粒增强瓷(体积分数30%)组成。已测定陶瓷复合材料的力学性能。使用万能试验机以0.5mm/min的速度进行剪切粘结强度测试。通过场发射枪扫描电子显微镜/能谱仪(FEG - SEM/EDS)检查断裂和未测试试样的界面。使用夏皮罗 - 威尔克检验分析数据以检验正态性假设。采用单因素方差分析,随后进行图基 Honestly - significant - difference(HSD)多重比较检验来比较剪切粘结强度结果(α = 0.05)。
PZ(100±15MPa)和RZI(96±11MPa)试样的剪切粘结强度高于RZ(对照组)试样记录的值(89±15MPa),尽管差异不显著(p>0.05)。PZI试样记录到最高的剪切粘结强度值(138±19MPa),相对于RZ试样显著提高了55%(p<0.05)。
本研究表明,通过在氧化锆框架中结合表面孔和应用适当的陶瓷复合中间层,可以显著提高氧化锆 - 瓷的粘结强度,甚至提高约55%。