Hasan Istabrak, Keilig Ludger, Staat Manfred, Wahl Gerhard, Bourauel Christoph
Department of Prosthodontic, Preclinical Education and Material Science, Rheinische Friedrich-Wilhelms University, Welschnonnenstr. 17, 53111 Bonn, Germany.
Biomed Tech (Berl). 2012 Oct;57(5):359-63. doi: 10.1515/bmt-2012-0010.
The similar bone structure of reindeer antler to human bone permits studying the osseointegration of dental implants in the jawbone. As the friction is one of the major factors that have a significant influence on the initial stability of immediately loaded dental implants, it is essential to define the frictional coefficient of the implant-antler interface. In this study, the kinetic frictional forces at the implant-antler interface were measured experimentally using an optomechanical setup and a stepping motor controller under different axial loads and sliding velocities. The corresponding mean values of the static and kinetic frictional coefficients were within the range of 0.5-0.7 and 0.3-0.5, respectively. An increase in the frictional forces with increasing applied axial loads was registered. The measurements showed an evidence of a decrease in the magnitude of the frictional coefficient with increasing sliding velocity. The results of this study provide a considerable assessment to clarify the suitable frictional coefficient to be used in the finite element contact analysis of antler specimens.
驯鹿鹿角与人类骨骼相似的骨结构使得研究牙种植体在颌骨中的骨结合成为可能。由于摩擦力是对即刻加载的牙种植体初始稳定性有重大影响的主要因素之一,因此确定种植体与鹿角界面的摩擦系数至关重要。在本研究中,使用光机械装置和步进电机控制器,在不同轴向载荷和滑动速度下,通过实验测量了种植体与鹿角界面的动摩擦力。静摩擦系数和动摩擦系数的相应平均值分别在0.5 - 0.7和0.3 - 0.5范围内。记录到随着施加轴向载荷的增加,摩擦力增大。测量结果表明,摩擦系数的大小随滑动速度的增加而减小。本研究结果为阐明在鹿角标本的有限元接触分析中应使用的合适摩擦系数提供了重要评估。