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首页> 外文期刊>Journal of the European Ceramic Society >Iscv hermal and adiabatic Young's moduli of alumina and zirconia ceramics at elevated temperatures
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Iscv hermal and adiabatic Young's moduli of alumina and zirconia ceramics at elevated temperatures

机译:高温下氧化铝和氧化锆陶瓷的等离子杨氏模量和绝热杨氏模量

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The elastic moduli (Young's moduli) of alumina and zirconia ceramics with porosities ranging from almost dense (2-3%) to highly porous (46-52%) the latter prepared with starch as a pore-forming agent, have been measured via impulse excitation and four-point bending tests from room temperature up to more than 1200 °C. It is shown that, independent of the temperature and the material, the porosity dependence of the young's modulus is well predicted by our exponential relation and that, irrespective of porosity, the temperature dependence follows a master eurve that is characteristic of the material (for alumina exhibiting a decrease with a gradually growing tangent slope and for zirconia exhibiting a steep case with an inflection point at moderately elevated temperatures below 400 °C). Differences between isothermal (static) and adiabatic (dvnamic) values are negligible as long as the materials are purely elastic (i.e. at temperatures below approximately 1000 °C).
机译:通过脉冲测量了氧化铝和氧化锆陶瓷的弹性模量(杨氏模量),其孔隙率范围从几乎致密(2-3%)到高度多孔(46-52%),后者是用淀粉作为成孔剂制备的从室温到超过1200°C的激发和四点弯曲测试。结果表明,与温度和材料无关,杨氏模量的孔隙度依赖性可以通过我们的指数关系很好地预测,并且,不管孔隙度如何,温度依赖性都遵循材料的特征(对于氧化铝)随切线斜率的逐渐增加呈现出减小的趋势,对于氧化锆,在温度低于400°C时适度升高时呈现出陡峭的拐点。只要材料是纯弹性的(即在低于约1000°C的温度下),等温(静态)和绝热(动态)值之间的差异就可以忽略不计。

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