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The effects of dry and wet grinding on the strength of dental zirconia

机译:干湿磨削对牙科氧化锆强度的影响

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The purpose of this study was to evaluate the effect of different dry and wet surface finishing on the mechanical strength and surface characters of a dental yttria-stablized zirconia ceramic (Y-TZP). Surface grinding treatments with a dental air turbine handpiece were performed with: coarse diamond (DC) and fine diamond (DF), tungsten carbide (Tc) and fine tungsten carbide (TcF) burs with or without water coolant. Air particle abrasion with 50 mu m alumina (APA), combination of burs treatments or burs-abrasion, i.e. DC-TcF and DC-APA, were also performed with non-treatment group as control (C). Statistical analyses (alpha = 0.05) on results revealed that all surface treatments significantly increased the surface roughness (Ra) than control (p 0.05), whilst decreased breaking force (BFN) and biaxial flexural strength (BFS). Tungsten carbide surface treatment could significantly lower (p 0.05) BFS and BFN, but DC only significantly lowered BFN. DC and tungsten carbide treatments exhibited significantly lower BFS values in wet than dry. A positive correlation was found between the BFS and BFN with the number of fragments. Only tetragonal phase of ZrO2 was presented by XRD. Synchrotron XRD revealed the (101) peak exhibits a broadening effect in the tungsten carbide treated specimens (38 nm for Tc and 30 nm for TcF), i.e. grain sizes in these specimens were smaller than the control (60 nm for C). This study outcome suggested that tungsten carbide burs should be avoided for grinding Y-TZP because of significant reduction in the BFS. Water cooling during grinding did not consistently reduce the potential heat damaging effects expected with dry grinding.
机译:本研究的目的是评估不同干燥和湿表面精加工对牙科ytTria - 稳定氧化锆陶瓷(Y-TZP)的机械强度和表面特征的影响。具有牙科燃气轮机手机的表面磨削处理用:粗金刚石(DC)和精细金刚石(DF),碳化钨(TC)和细碳化钨(TCF)Burs,有或没有水冷却剂。用50μm氧化铝(APA)的空气颗粒磨损,Burs处理或Burs磨损的组合,即DC-TCF和DC-APA,也用非处理基团进行,作为对照(C)进行。统计分析(α= 0.05)的结果显示,所有表面处理显着增加了表面粗糙度(Ra),而不是对照(P <0.05),而断裂力(BFN)和双轴弯曲强度(BFS)降低。碳化钨表面处理可显着降低(P <0.05)BFS和BFN,但DC仅显着降低BFN。 DC和碳化钨治疗显着降低湿润的BFS值而不是干燥。 BFS和BFN之间的阳性相关性具有碎片的数量。仅通过XRD介绍ZrO2的四方相。同步XRD显示(101)峰值在碳化钨处理的样品中表现出展大效果(用于TCF的38nm,TCF为30nm),即这些样本中的晶粒尺寸小于对照(60nm)。该研究结果表明,由于BFS显着减少,应避免碳化钨沟磨削碳化物毛孔。研磨过程中的水冷却并未始终如一地降低干磨的潜在的热损坏效果。

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