Svanborg Per, Eliasson Alf, Stenport Victoria
Int J Oral Maxillofac Implants. 2018 May/Jun;33(3):590-596. doi: 10.11607/jomi.6028.
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.
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.
All frameworks presented minor misfit before and after veneering in the horizontal plane (x- and y-axes) between 2.9 and 13.5 μm and in the vertical plane (z-axis) between 1.6 and 5.4 μm. 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.
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 μm in the horizontal plane and 10 μm 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.
本研究的目的是评估增材制造的钴铬合金和钛合金以及数控铣削的钛合金框架在陶瓷贴面前后的贴合度。
制作了10个模拟无牙上颌骨的石膏模型,并配备了6个基牙代型。对于每个石膏模型,制作一个增材制造的钴铬合金框架(AM CoCr)和一个钛合金框架(AM Ti)。在陶瓷贴面前后,使用坐标测量机通过中心点坐标的最佳拟合虚拟匹配在三个维度(x、y和z轴)上分析贴合度。使用数控铣削的钛合金框架(CNC Ti)和数控铣削的钴铬合金框架(CNC CoCr)的早期结果进行比较。
所有框架在贴面前后在水平面(x轴和y轴)的贴合度偏差较小,在2.9至13.5μm之间,在垂直面(z轴)的贴合度偏差在1.6至5.4μm之间。陶瓷贴面影响了所有框架组的贴合度。与数控铣削的框架相比,AM Ti和AM CoCr在垂直面的变形均明显更小。
种植体支持的框架可以使用数控铣削或增材制造工艺由钛或钴铬合金制成,在水平面内贴合度良好,偏差在20μm范围内,在垂直面内偏差在10μm范围内。两种材料和生产工艺的框架贴合度在一定程度上均受陶瓷贴面工艺的影响。