锥形连接螺钉固定牙基台静、动压缩载荷试验

Győző Körtvélyessy, D. Hangyási, Tamás Tarjányi, Z. Tóth, Danica Matusovits, István Pelsőczi-Kovács, Z. Baráth
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引用次数: 0

摘要

牙种植体长期成功的基础是种植体的机械稳定性和锚定在其上的上层结构。为了研究种植体-基台单元中锥形连接的力学行为,采用不同的锥形角度和不同的4-5级钛种植体材料进行了静、动载荷试验。组装后的部件分别安装在自行研制的装载机和Instron ElectroPuls E3000疲劳机上。静态加载时,试样受0 - 500 N的力,按100 N的级数进行加载。动态加载时,试样受250±150 N的力,进行3万次循环加载。静态测试时,在水平和垂直方向上测量荷载引起的压缩,而在动态疲劳情况下,只定义水平变形。在这两种情况下,加载后确定固定螺钉的驱动(反向)扭矩值。静载荷后的反向扭矩在被测材料之间没有显著差异,但在锥角的变化方面显示出显著差异(p < 0.001)。动态加载后,不同角度固定螺钉的反向扭矩也有显著差异(p < 0.001)。静态和动态试验结果显示出相同的趋势:在相同的载荷条件下,种植体-基台连接的圆锥角值显示出固定螺钉松动的显著差异。综上所述,建议使用较大的圆锥角连接,以避免在连接处种植体的长度和直径发生较大的变形,并减少固定螺钉的扭矩。我们的结果可能有助于理解种植体的长期成功。
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Static and dynamic compression load tests of conically connected, screw fixed dental abutment
The basis of the long-term success of dental implants is the mechanical stability of the implant and the superstructure anchored in it. In order to investigate the mechanical behaviour of the conical connection in implant-abutment units, static and dynamic load tests were performed with different conical angles and various Grade 4-5 titanium implant materials. The assembled units were mounted in self-developed loading machine and in an Instron ElectroPuls E3000 fatigue machine. For static loading, the samples were loaded with a force from 0 N to 500 N in steps of 100 N. For dynamic loading, the samples were loaded for 30,000 cycles with a force of 250 ± 150 N. In case of static testing, the compression caused by the load was measured in both horizontal and vertical directions, while in the case of dynamic fatigue, only horizontal deformation was defined. In both cases, the drive-out (reverse) torque values of the fixing screws were determined after loading. No significant differences were found between the tested materials in the reverse torque after the static load, however, significant differences were shown with regards to the alterations in cone angle (p < 0.001). After dynamic loading, significant differences (p < 0.001) were also observed between the reverse torques of the fixing screw in different angles. The static and dynamic test results showed the same tendency: under the same load conditions, the conical angle value of the implant-abutment connection revealed significant differences in the loosening of the fixing screw. In summary, it is recommended to use higher conical angle connection to avoid larger deformations in lengths and diameters of the implant at the connection and essential torque reduction of the fixing screw. Our results may contribute to the understanding of the long-term success of dental implants.
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