首页> 外文期刊>The Journal of Prosthetic Dentistry >Wave analysis of implant screw loosening using an air cylindrical cyclic loading device.
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Wave analysis of implant screw loosening using an air cylindrical cyclic loading device.

机译:使用气动圆柱体循环加载设备进行的植入物螺钉松动的波动分析。

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摘要

Statement of Problem. The mechanics of implant screw loosening or fracture are well understood in the field of engineering. They have not been as widely explored in dentistry. Purpose. This study investigated the effects of simulated mastication on implant components and used wave analysis to document the basic mechanisms of screw loosening in a simulated oral environment. Material and Methods. A pneumatic cylindrical cyclic loading device was fabricated to simulate masticatory movement. Thirteen standard abutments were connected on external hexagonal implants with titanium abutment screws tightened to 20 Newton centimeters (Ncm), and single crowns were retained with gold screws tightened to 10 Ncm on each abutment, respectively. Ten single-implant crowns were loaded with the use of a cyclic loading device with 100 N of force at 30 degrees angles to the long-axis for 0.2 seconds of contact time with a frequency of 1 Hz. Three crowns were loaded vertically under the same conditions to serve as the control group. The effects of up to 1 million cyclic loads and various tightening torque forces (2, 4, 6, 8, 10, and 12 Ncm) on screw loosening were evaluated by wave analysis. A software program was written to record every wave mode and to stop the machine automatically if the amount of horizontal displacement of the crown was more than 0.5 mm, which was designated to represent perceptible loosened implant crown mobility clinically. The general wave patterns and characteristics of loosened and stable screws and the effect of various tightening torques were analyzed by comparing the differences in wave patterns. Results. The wave mode was divided into 4 stages for loosened gold screws: initial displacement, initial vibration, elastic deformation, and recovery stage. However, the initial displacement and initial vibration stages were not discernible for stable gold screws. Of the 10 gold occlusal screws, 4 loosened before the 1 million cyclic loads in the 10 single crowns tested. There was no screw loosening in the control group. There was no effect of screw loosening on the elastic deformation stage. Conclusion. Within the limitations of this study, tightening torque had a significant effect on screw loosening. It would appear that more than 10 Ncm of tightening torque should be recommended for the gold screws in this external hexagon implant system.
机译:问题陈述。植入物螺钉松动或断裂的力学原理在工程领域广为人知。在牙科领域还没有对其进行广泛的探索。目的。这项研究调查了模拟咀嚼对植入物组件的影响,并使用波动分析来记录模拟口腔环境中螺钉松动的基本机理。材料与方法。制造了一个气动的圆柱形循环加载装置来模拟咀嚼运动。用固定在20牛顿厘米(Ncm)的钛基台螺钉将13个标准基台连接在外部六角形种植体上,并分别用在每个基台上拧紧至10 Ncm的金螺钉固定单个牙冠。使用一个循环加载装置,以100 N的力在与长轴成30度角的情况下以0.2 Hz的接触时间以1 Hz的频率加载十个单种植体牙冠。在相同条件下垂直加载三个牙冠作为对照组。通过波动分析评估了多达一百万个循环载荷和各种拧紧扭矩力(2、4、6、8、10和12 Ncm)对螺钉松动的影响。编写了一个软件程序来记录每个波模式,并且如果牙冠的水平位移量大于0.5 mm,则自动停止机器,这被指定为临床上可感知的松动的种植体牙冠移动性。通过比较波形差异,分析了松动和稳定螺钉的一般波形和特性,以及各种拧紧扭矩的影响。结果。波动模式分为四个阶段,用于松开金螺钉:初始位移,初始振动,弹性变形和恢复阶段。但是,对于稳定的金螺丝,无法确定初始位移和初始振动阶段。在测试的10个单冠中,在10万个咬合金钉中,有4个在1百万次循环载荷之前松开。对照组没有螺丝松动。螺丝松动对弹性变形阶段没有影响。结论。在本研究的范围内,拧紧扭矩对螺钉的松动有显着影响。在此外部六角形植入系统中,对于金螺丝,似乎应建议超过10 Ncm的拧紧扭矩。

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