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Experimental and numerical investigations of fracture and fatigue behaviour of implant-supported bars with distal extension made of three different materials

机译:植入物支撑杆骨折和疲劳行为的实验性和数值研究,具有三种不同材料的远端延伸

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The aim of this study was to investigate experimentally the fatigue and stability of three bar materials with distal extension at the molar region and to numerically analyse the biomechanical properties of the bar materials connected to overdentures in a patient individual model. A milled bar was designed for the mandible on four implants in the canine and second premolar region. Three bar materials were investigated: titanium (Ti), cobalt chromium (CoCr), and polyetherketonketon (PEKK). Firstly, static and fatigue tests were performed based on EN ISO 14801 in a commercial permanent loading set-up. Unilateral axial force was applied on the distal extension of the bars. Secondly, numerical models were created. Different bar materials and loading scenarios were analysed. The static fracture limit of the three materials was 1,750 N, 780 N, 310 N for Ti, CoCr, and PEKK, respectively. The Wohler curves showed comparable fatigue limits of 200 N, 160 N, and 150 N for titanium, CoCr, and PEKK, respectively. The stress at the distal extension was 2,600 MPa (Ti), 1,000 MPa (CoCr), and 270 MPa (PEKK). All loading simulations with the PEKK bar showed higher stresses in the implants and in the bone bed as well as higher displacements of the over denture in comparison to metal bars. PEKK showed different mechanical behaviour compared to Ti and CoCr. The distribution of stresses within the PEKK bar was wider than the area of loading which probably leads to fatigue of the whole bar and not only the part under load.
机译:本研究的目的是通过实验研究具有在摩尔地区的远端延伸的三个酒吧材料的疲劳和稳定性,并在数值上分析患者各种模型中的覆盖物的杆状物的生物力学特性。设计了一条铣刀,用于在犬和第二掠夺区域的四个植入物上下颌骨。研究了三个酒吧材料:钛(TI),钴铬(COCR)和聚醚酮酮(PEKK)。首先,基于商业永久装载设置,基于EN ISO 14801进行静态和疲劳试验。在杆的远端延伸上施加单侧轴向力。其次,创建了数值模型。分析了不同的酒吧材料和加载方案。三种材料的静态断裂极限分别为1,750 n,780 n,310n,用于Ti,Cocr和Pekk。 Wohler曲线分别显示出200n,160n和150n的相当疲劳限制,分别用于钛,coct和pekk。远端延伸处的应力为2,600MPa(Ti),1,000MPa(COCR)和270MPa(PEKK)。与PEKK BAR的所有加载模拟都显示出植入物和骨床中的较高的应力,以及与金属杆相比,义齿的义齿的更高位移。与TI和COCR相比,PEKK显示出不同的机械行为。 PEKK BAR内的应力分布宽于负载面积,这可能导致整个杆的疲劳,而不仅仅是负载下的部件。

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