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Fracture Characteristics of Dental Ceramic Crown according to Zirconia Coping Design

机译:氧化锆应对设计的牙齿陶瓷冠部的断裂特性

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Fracture characteristics of the ceramic crown according to the zirconia coping design have been researched using various experimental methods. The 3D contour dimension of a mandibular first molar acrylic model tooth was scanned with Optical scanner (S600, Zirkonzahn, Italy), and then a classic crown preparation was created in CAD software (Zirkonzahn.Modellier, Zirkonzahn, Italy). The CAD file of the prepared tooth was imported into a milling machine, and acrylic resin (PMMA) dies were generated. Four different coping designs based on the thickness of zirconia marginal collar were used: 0.0mm zirconia collar (Qroup1), 0.5mm (Group2), 1.0mm (Group3), and 2.0mm (Group4). Copings were fabricated with CAD/CAM System (CAD CAM M5, Zirkonzahn, Italy) and veneering porcelain (IPS e.max Ceram) was build-up with layering technique. All the samples were cemented (RelyX Unicem, 3M/ESPE) onto corresponding dies. All specimens were tested in 4 groups (n=10 for each group) based on the thickness of zirconia collar. Fracture load test was performed on eight crowns from each group, and the remaining crowns (n=2) were subjected to fatigue test. Fracture strength was tested with a universal testing machine at a crosshead speed of 1.0mm/min to the vertical axis of the tooth 0.5mm lingually down the mesio-distal cusp. For the testing of fatigue failure, specimens were subjected to 50,000 cycles of cyclic loading 200 N, at a rate of 15Hz and then loaded dynamically at a crosshead speed of l.Omm/min, until failure. Fracture location and fracture surface of failed crowns were observed with a field emission scanning electron microscope (FE-SEM S-4800, Hitachi, Japan). Mean of fracture strength values of veneering porcelain were: 1411N for Groupl, 1428N for Group2, 1596N for Group3 and 1621N for Group4. And according to increasing of thickness on zirconia collar, zirconia coping showed more fracture strength value with increasing of fracture strength of porcelain veneered it up. And examined using FE-SEM, two interesting features were shown from the fracture surface, sudden fracture and gradual fracture. And failure of specimens was mainly occurred by crack growth initiated from porosities within the veneering porcelain. In conclusion, according to the fracture test, the more thickness of zirconia collar, the higher fracture strength of veneering porcelain. Thus, zirconia coping design with 2.0mm marginal collar width is recommended for both functional longevity and esthetics of zirconia-ceramic restoration.
机译:使用各种实验方法研究了根据氧化锆应对设计的陶瓷冠的断裂特性。用光学扫描仪(S600,Zirkonzahn,Italy)扫描下颌第一摩尔丙烯酸模型牙齿的3D轮廓尺寸,然后在CAD软件(Zirkonzahn.Modellier,Zirkonzahn,Italy)中创建了经典的皇冠准备。将准备牙齿的CAD文件进口到铣床中,产生丙烯酸树脂(PMMA)模具。使用了基于氧化锆边缘厚度的四种不同的应对设计:0.0mm氧化锆套环(Qroup1),0.5mm(Group2),1.0mm(Group3)和2.0mm(Group4)。用CAD / CAM系统(CAD CAM M5,ZIRKONZAHN,ITALY)制造应答,并用分层技术积聚塑料瓷器(IPS E.MAX CERAM)。将所有样品粘合在相应的模具上(relyx unicem,3m / eSpe)。基于氧化锆套环的厚度,在4组(每组n = 10)中测试所有样品。在来自每组的八个牙冠上进行骨折载荷试验,并进行剩余的冠状冠(n = 2)疲劳试验。用通用试验机以1.0mm / min的十字头速度测试断裂强度,齿的垂直轴0.5mm垂直于椎间子远端尖端。为了测试疲劳破坏,将样品以15Hz的速率进行50,000个循环载荷200n,然后以15Hz的十字头速度动态加载,直至发生故障。使用场发射扫描电子显微镜(FE-SEM S-4800,日本),观察失效冠部的断裂位置和断裂表面。胶合型瓷器断裂强度值的平均值是:1411N用于Group2,1596N的Groupl,1428N,组3和1621N的Group4。根据氧化锆套环的厚度的增加,Zirconia Coping随着瓷肢体的裂缝强度的增加而言,较高的骨折强度值。并使用Fe-SEM检查,从骨折表面,突然的断裂和渐变骨折中显示了两个有趣的特征。标本的失败主要发生在塑料型瓷器内的裂缝增长。总之,根据裂缝试验,氧化锆套厚度越厚,肢体骨折的骨折强度较高。因此,建议为氧化锆 - 陶瓷恢复的功能寿命和美学的功能寿命和美学,建议使用2.0mm边缘套环宽度的氧化锆。

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