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Enhanced Macro and Micro Stress Evaluation Diffraction Techniques Applied to Biomedical Materials

机译:应用于生物医学材料的增强的宏观和微观应力评估衍射技术

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Residual stress has large effect to the service life of biomedical ceramic coatings. It is therefore important to characterize it precisely. Since in-service damage of the prostheses is generally characterized by cracking of the substrate layers located close to the metal / ceramic interface, our study was focused on these particular zones of the parts. High energy synchrotron radiation diffraction techniques were therefore developed to evaluate the residual stress profiles of the metal / ceramic interfaces. The method requires, however, defining precisely the true position of the X-ray probe inside the materials. A complete modeling of the instrument, using a ray tracing Monte Carlo simulation method, was developed for that purpose. Fourier analysis of the diffraction peaks was also implemented to evaluate the micro stresses of second and third kind. These diffraction techniques were tested on a glassy ceramic coating used for the manufacturing of dental prostheses.
机译:残余应力对生物医学陶瓷涂层的使用寿命影响很大。因此,准确表征其特性很重要。由于假体的使用中损坏通常以靠近金属/陶瓷界面的基底层破裂为特征,因此我们的研究集中在零件的这些特定区域。因此,开发了高能同步加速器辐射衍射技术来评估金属/陶瓷界面的残余应力分布。但是,该方法需要精确定义材料内部X射线探针的真实位置。为此,使用射线追踪蒙特卡洛模拟方法对仪器进行了完整建模。还对衍射峰进行了傅立叶分析,以评估第二种和第三种微应力。这些衍射技术在用于制造牙科修复体的玻璃陶瓷涂层上进行了测试。

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