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Complementary methods of study for Zr_(1-x)Ce_xO_2 compounds for applications in medical prosthesis

机译:Zr_(1-x)Ce_xO_2化合物在医学修复中的应用的补充研究方法

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摘要

Zirconia (ZrO_2)-based ceramics are preferred due to their advanced mechanical properties such as high-fracture toughness and bulk modulus, corrosion resistance, high dielectric constant, chemical inertness, low chemical conductivity and biocompatibility. The medical prosthesis components made from ZrO_2 oxides present a very good biocompatibility as well as especially mechanical properties. In order to ensure implant safety of these prostheses, wide ranges of examinations based on nondestructive testing are imperative for these medical implants. In this study, we aim to emphasize the improvement of Zr-based ceramics properties as a function of addition of Ce ions in the structure of the original ceramics. The substitution of the Zr with Ce in the Zr_(1-x)Ce_xO_2 compounds, where x = 0.0-0.17, leads to a change of the phase composition, a gradual transition from the monoclinic to tetragonal structure, at room temperature. The structural investigations proposed in this paper are based on X-ray and neutron diffraction in order to establish a first indication of the variation of the phase composition and the structural parameters, as well as micro-hardness measurements and nondestructive evaluations in order to establish a correlation between the structural parameters and mechanical properties of the samples. These ranges of tests are imperative in order to ensure the safety and reliability of these composite materials, which are widely used as hip-implants or dental implants/coatings. In combination of Resonant Ultrasound Spectroscopy, which makes use of the resonance frequencies corresponding to the normal vibrational modes of a solid in order to evaluate the elastic constants of the materials, we emphasize a unique approach on evaluating the physical properties of these ceramics, which could help in advancing the understanding of properties and applications in medical fields.
机译:优选基于氧化锆(ZrO 2)的陶瓷,因为它们具有先进的机械性能,例如高断裂韧性和体积模量,耐腐蚀性,高介电常数,化学惰性,低化学电导率和生物相容性。由ZrO_2氧化物制成的医用假体组件具有非常好的生物相容性,尤其是机械性能。为了确保这些假体的植入物安全,必须对这些医用植入物进行广泛的基于无损检测的检查。在这项研究中,我们旨在强调Zr基陶瓷性能的改善与原始陶瓷结构中Ce离子添加的关系。在室温下,x = 0.0-0.17的Zr_(1-x)Ce_xO_2化合物中的Ce取代Zr导致相组成的变化,即从单斜结构到四方结构的逐渐过渡。本文提出的结构研究基于X射线和中子衍射,以建立相组成和结构参数变化的第一个指示,以及显微硬度测量和无损评估,以建立相变。样品的结构参数与机械性能之间的相关性。为了确保这些复合材料的安全性和可靠性,必须进行这些测试,这些复合材料被广泛用作髋关节植入物或牙科植入物/涂层。结合使用与固体正常振动模式相对应的共振频率来评估材料的弹性常数的共振超声光谱法,我们强调了一种独特的方法来评估这些陶瓷的物理性能,这可以帮助增进对医学领域特性和应用的理解。

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  • 会议地点 San Diego CA(US)
  • 作者单位

    Nondestructive Testing Department, National Institute for Research and Development for Technical Physics, 47 D. Mangeron Blvd., Iasi 700050, Romania;

    Nondestructive Testing Department, National Institute for Research and Development for Technical Physics, 47 D. Mangeron Blvd., Iasi 700050, Romania,Frank Laboratory for Neutron Physics, Joint Institute for Nuclear Research, 6 Joliot-Curie Avenue, Dubna 141980, Russia;

    Frank Laboratory for Neutron Physics, Joint Institute for Nuclear Research, 6 Joliot-Curie Avenue, Dubna 141980, Russia;

    Materials Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, United States;

    Laboratory of Crystallography and Materials Science (CRISMAT), CNRS- ENSICAEN-Universite de Caen Basse Normandie, Caen 14050, France;

    Laboratory of Crystallography and Materials Science (CRISMAT), CNRS- ENSICAEN-Universite de Caen Basse Normandie, Caen 14050, France,Now at University of Nantes, 58 Rue Michel Ange, 44600, Saint Nazaire, France;

    Department of Physical Materials Science, Donetsk Institute for Physics and Engineering named after O.O. Galkin of National Academy of Sciences of Ukraine, 72 R. Luxemburg str., Donetsk 83114, Ukraine;

    Department of Physical Materials Science, Donetsk Institute for Physics and Engineering named after O.O. Galkin of National Academy of Sciences of Ukraine, 72 R. Luxemburg str., Donetsk 83114, Ukraine;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ce dopants; crystallites; resonant ultrasound spectroscopy; X-ray and neutron diffraction; Zr-based ceramics;

    机译:铈掺杂剂;微晶共振超声光谱X射线和中子衍射;锆基陶瓷;

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