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Additively Manufactured Titanium and Cobalt-Chromium Implant Frameworks: Fit and Effect' of Ceramic Veneering

机译:陶瓷贴面的含钛和钴 - 铬植入框架:适合和效果'

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Purpose: The purpose of this study was to evaluate the fit of additively manufactured cobalt-chromium and titanium and CNC-milled titanium frameworks before and after ceramic veneering. Materials and Methods: Ten stone casts simulating an edentulous maxilla provided with six abutment analogs were produced. For each stone cast, one additively manufactured cobalt-chromium framework (AM CoCr) and one titanium framework (AM Ti) were fabricated. The fit was analyzed with a coordinate measuring machine in three dimensions (x, y, and z axes) using best-fit virtual matching of center point coordinates, before and after ceramic veneering. CNC-milled titanium frameworks (CNC Ti) and earlier results from CNC-milled cobalt-chromium frameworks (CNC CoCr) were used for comparison. Results: All frameworks presented minor misfit before and after veneering in the horizontal plane (x- and y-axes) between 2.9 and 13.5 mu m and in the vertical plane (z-axis) between 1.6 and 5.4 mu m. Ceramic veneering affected the fit of all groups of frameworks. Both AM Ti and AM CoCr presented significantly smaller distortion in the vertical plane compared with the CNC-milled frameworks. Conclusion: Implant-supported frameworks can be produced in either Ti or CoCr using either CNC milling or additive manufacturing with a fit well within the range of 20 mu m in the horizontal plane and 10 mu m in the vertical plane. The fit of frameworks of both materials and production techniques are affected by the ceramic veneering procedure to a small extent.
机译:目的:本研究的目的是评估陶瓷嵌体之前和之后的含有添加剂 - 铬铬和钛和CNC碾磨钛框架的拟合。材料和方法:制作了十种石材铸件,模拟了具有六个基台的薄型夹具。对于每种石材铸造,制造了一个含有瘾地制造的钴 - 铬框架(COCR)和一个钛框架(AM TI)。使用陶瓷贴花之前和之后的三维(X,Y和Z轴)用坐标测量机进行坐标测量机进行分析配合,使用陶瓷贴花之前和之后。 CNC碾磨的钛框架(CNC TI)和早期的CNC磨碎的钴 - 铬框架(CNC COCR)的结果用于比较。结果:所有框架在2.9和13.5 mu m的水平平面(x和y轴)之间饰有4.9和13.5 mu m之间的植入物之前和之后,所有框架都呈现了轻微的错量。陶瓷贴面影响了所有框架组的适合。与CNC铣削框架相比,AM TI和AM COCR在垂直平面上呈现明显较小的变形。结论:植入物支持的框架可以在Ti或COGR中使用CNC铣削或加性制造,其拟合在水平面的水平平面中的20μm范围内,并且在垂直平面中的10μm。材料和生产技术的框架框架的适应性受到陶瓷肢体植入手术的影响。

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