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首页> 外文期刊>Journal of dentistry >Marginal adaptation and fracture resistance of adhesively luted glass fibre-composite reinforced molar crowns with different inner crown surfaces.
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Marginal adaptation and fracture resistance of adhesively luted glass fibre-composite reinforced molar crowns with different inner crown surfaces.

机译:具有不同内胎冠表面的粘胶玻璃纤维复合增强磨牙冠的边缘适应性和抗断裂性。

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摘要

OBJECTIVES: This study compared the influence of different inner crown surfaces on the fracture resistance and marginal adaptation of adhesively fixed glass fibre-reinforced molar crowns. MATERIALS AND METHODS: Vectris/Targis crowns were constructed with an inner framework of glass fibres (directly on the tooth) or an inner veneering composite layer between the fibre-framework and the tooth-substance. Both groups were sandblasted inside using Al(2)O(3); 50 microm grain size (200 kPa, 20 s) and silane coated. A control group had the inner fibre framework, but was neither sandblasted nor silane coated. The crowns were adhesively cemented on extracted human teeth, and thermally cycled and mechanically loaded (TCML: 6000 x 5 degrees C/55 degrees C; 1.2 x 10(6) x 50 N, 1.66 Hz). The marginal adaptation before and after TCML was evaluated and the fracture resistance was investigated using a Zwick universal testing machine. RESULTS: After TCML the proportion of 'perfect margin' of the control group decreased significantly at the interface crown/cement. For the variations with an inner fibre framework or inner composite layer the marginal adaptation or fracture resistance did not decrease significantly after ageing. The fracture resistance values were control: 1509N+/-486; inner fibre framework: 1896N+/-342; inner composite layer: 1754N+/-340. CONCLUSIONS: In the case of the investigated fibre framework and veneering composite, the inner surface of glass fibre-reinforced molar crowns can be covered with a composite layer or with a glass fibre framework. Both methods achieve comparable high fracture strengths and reliable marginal adaptation.
机译:目的:本研究比较了不同的内冠表面对粘合固定的玻璃纤维增​​强磨牙冠的抗断裂性和边缘适应性的影响。材料和方法:Vectris / Targis牙冠由玻璃纤维内部框架(直接在牙齿上)或纤维框架与牙齿物质之间的内饰面复合层构成。两组均使用Al(2)O(3)进行喷砂处理;粒度为50微米(200 kPa,20 s),并涂有硅烷。对照组具有内部纤维骨架,但既未喷砂,也未涂覆硅烷。将牙冠粘结在拔出的人类牙齿上,进行热循环和机械加载(TCML:6000 x 5摄氏度/ 55摄氏度; 1.2 x 10(6)x 50 N,1.66 Hz)。评估TCML前后的边缘适应性,并使用Zwick万能试验机研究抗断裂性。结果:TCML后,对照组“完美切缘”的比例在牙冠/骨界面明显降低。对于具有内部纤维骨架或内部复合层的变化,老化后边缘适应性或抗断裂性并未显着降低。断裂抗力值是对照:1509N +/- 486。内部纤维框架:1896N +/- 342;内部复合层:1754N +/- 340。结论:在研究的纤维框架和饰面复合材料的情况下,玻璃纤维增​​强的磨牙冠的内表面可以覆盖有复合材料层或玻璃纤维框架。两种方法均具有相当的高断裂强度和可靠的边缘适应性。

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