首页> 外文会议>International Symposium on Ceramics in Medicine(ISCM); Annual Meeting of the International Society for Ceramics in Medicine; 20061010-13; 20061010-13; Chengdu(CN); Chengdu(CN) >Confocal Raman Spectroscopic Analysis of Phase Transformation and Residual Stresses in Ce-Tzp/Al_2O_3 Nanocomposite for Biomedical Applications
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Confocal Raman Spectroscopic Analysis of Phase Transformation and Residual Stresses in Ce-Tzp/Al_2O_3 Nanocomposite for Biomedical Applications

机译:用于生物医学应用的Ce-Tzp / Al_2O_3纳米复合材料的相变和残余应力的共焦拉曼光谱分析

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摘要

Zirconia ceramics have been widely used for new generation of bearing materials in biomedical applications. In this context, a zirconia-matrix, stabilized with cerium oxide and dispersed with fine alumina particles (Ce-TZP/Al_2O_3 nanocomposite) was recently developed and this material experienced significant improvements in both fracture toughness and strength above the standard mechanical performance of monolithic zirconia. In this paper, we used confocal Raman spectroscopy to provide quantitative assessments with high spatial resolution of phase structure and residual stress fields developed in the Ce-TZP/Al_2O_3 nanocomposite. According to confocal Raman spectroscopy, we have directly visualized patterns of phase transformation and residual stress fields stored on the very surface of the material around an indentation print. These spectroscopic assessments may open a perspective in understanding the micromechanical behavior of the Ce-TZP/Al_2O_3 nanocomposite when subjected to local surface impingement and shocks.
机译:氧化锆陶瓷已被广泛用于生物医学应用中的新一代轴承材料。在这种情况下,最近开发了一种氧化铈基体,该氧化锆基体稳定了氧化铈并分散了细小的氧化铝颗粒(Ce-TZP / Al_2O_3纳米复合材料),并且该材料的断裂韧性和强度均明显高于整体氧化锆的标准机械性能。 。在本文中,我们使用了共聚焦拉曼光谱技术对Ce-TZP / Al_2O_3纳米复合材料中形成的相结构和残余应力场进行了高空间分辨率的定量评估。根据共聚焦拉曼光谱法,我们可以直观地看到相变和残余应力场的模式,这些模式存储在压痕印刷周围材料的表面上。这些光谱学评估可能会为理解Ce-TZP / Al_2O_3纳米复合材料在受到局部表面撞击和冲击时的微机械行为开辟一个前景。

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