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Assessment of the mechanical and in vitro degradation behaviour of ceramic/metal joints for the encapsulation of telemetric systems to be used in orthopaedics

机译:评估陶瓷/金属接头的机械和体外降解行为,用于矫形系统封闭遥测系统

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The present work describes the development and mechanical evaluation, of ceramic/metal (C/M) brazed joints to be used as biocompatible encapsulation systems. The alumina/Ag-Cu-Ti/316 stainless steel joints were produced at 850 deg C/40 min in a vacuum furnace. The mechanical properties of the C/M joints were previously characterised using a shear-strength test. In the present study rotating beam fatigue experiments were carried out. These tests were performed to simulate the behaviour of the joints while under physiological cyclic loading. Standard S-N curves were obtained for several applied loads. The degradation behaviour of the joints was also evaluated in corrosion tests carried out in a HBSS at 37+-2 deg C. The produced joints were further characterised by SEM/EDS before and after the degradation experiments. The fatigue results indicate that the instrumented implants will be able to work for 94 to 200 days under the typical mechanical solicitation of a nail-plate located on a recovering patient. Furthermore, the corrosion experiments shown that the joints are very stable when tested in vitro in a simulated physiological media.
机译:本作本作者描述了陶瓷/金属(C / M)钎焊接头的开发和机械评估,用作生物相容性封装系统。氧化铝/ Ag-Cu-Ti / 316不锈钢接头在真空炉中以850℃/ 40分钟生产。先前使用剪切强度试验表征C / M接头的机械性能。在本研究中进行旋转梁疲劳实验。进行这些测试以模拟关节的行为,同时在生理循环载荷下。用于几种施加的载荷获得标准S-N曲线。还在37±2℃下在HBSS中进行的腐蚀试验中评价关节的降解行为。在降解实验之前和之后,通过SEM / EDS进一步表征所产生的接头。疲劳结果表明,仪表植入物能够在位于回收患者的钉板的典型机械征集下工作94至200天。此外,腐蚀实验表明,当在模拟生理介质中在体外测试时,接头非常稳定。

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