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首页> 外文期刊>Journal of the European Ceramic Society >High temperature internal friction measurements of 3YTZP zirconia poly crystals. High temperature background and creep
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High temperature internal friction measurements of 3YTZP zirconia poly crystals. High temperature background and creep

机译:3YTZP氧化锆多晶体的高温内摩擦测量。高温背景和蠕变

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This work focuses on the high-temperature mechanic properties of a 3 mol% yttria zirconia polycrystals (3YTZP), fabricated by hot-pressureless sintering. Systematic measurements of mechanical loss as a function of temperature and frequency were performed. An analytical method, based on (he generalized Maxwell rheological model, has been used to analyze the high temperature internal friction background (HTB). This method has been previously applied to intermetallic compounds but never to ceramics, except in a preliminary study performed on fine grain and nano-crystalline zirconia. The HTB increases exponentially and its analysis provides an apparent activation enthalpy which correlates well with that obtained from creep experiments. This fact shows on the one hand the plausibility of applying the generalized Maxwell model to ceramics, and on the other hand indicates the possibility of using mechanical spectroscopy as a complementary helpful technique to investigate the high temperature deformation mechanism of materials.
机译:这项工作的重点是通过无压烧结制备的3 mol%氧化钇氧化锆多晶体(3YTZP)的高温力学性能。进行了机械损耗随温度和频率变化的系统测量。基于(基于广义麦克斯韦流变模型的)分析方法已用于分析高温内摩擦本底(HTB)。该方法先前已应用于金属间化合物,但从未应用于陶瓷,除非对精细金属进行了初步研究。 HTB呈指数增长,其分析提供了明显的活化焓,该活化焓与蠕变实验获得的活化焓相关,这一事实一方面表明了将广义Maxwell模型应用于陶瓷的可行性,另一方面另一方面表明使用机械光谱作为辅助有用技术研究材料高温变形机理的可能性。

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