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首页> 外文期刊>Journal of Materials Science >ULTRASONIC THROUGH-TRANSMISSION METHOD OF EVALUATING THE MODULUS OF ELASTICITY OF AL2O3-ZRO2 COMPOSITE
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ULTRASONIC THROUGH-TRANSMISSION METHOD OF EVALUATING THE MODULUS OF ELASTICITY OF AL2O3-ZRO2 COMPOSITE

机译:超声透过-透射法估算Al2O3-Zro2复合材料的弹性模量

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The elastic properties of Al2O3-ZrO2 composite were determined from ultrasonic velocity measurements, and were found to be dependent upon the amount of ZrO2 phase, the compacting pressure of the green ceramic and sintering time. The velocity in the Al2O3-ZrO2 composite increased to a maximum for about 3 wt% unstabilized ZrO2 dispersed in Al2O3. The velocity decreased monotonically thereafter. The increase in moduli, as shown by an increase in velocity, has been attributed to phase transformation of the unstabilized ZrO2 from tetragonal to a monoclinic phase, which presumably leads to a toughening and strengthening effect, and also due to the action of ZrO2 in stopping grain growth of Al2O3 during densification. The excessive shear strain, induced by the tetragonal] monoclinic transformation phase, with greater than 50 wt % ZrO2 content, caused microcracks to appear in the composite. This reduced the elastic moduli of the composite. It was found that the composition dependence of the elastic moduli lie outside the theoretical bound of Voigt and Reuss for the elastic moduli of two-phase materials, and that by increasing the compacting pressure, an improvement in the elastic moduli of the sintered composite occurred irrespective of ZrO2 content. The thermal expansion of the composites showed no appreciable change with addition of zirconia up to 5 wt % ZrO2. However, dimensional changes due to phase transformation particularly with high zirconia content have been established. [References: 22]
机译:通过超声速度测量确定Al2O3-ZrO2复合材料的弹性性能,发现其取决于ZrO2相的量,生陶瓷的压制压力和烧结时间。对于分散在Al2O3中的约3 wt%的不稳定ZrO2,Al2O3-ZrO2复合材料中的速度增加到最大值。此后速度单调下降。如速度增加所示,模量的增加归因于不稳定的ZrO2从四方相到单斜晶相的相变,这大概会导致增韧和强化作用,也归因于ZrO2在停止过程中的作用。致密化过程中Al2O3的晶粒长大。 ZrO2含量大于50 wt%的由四方单斜相转变相引起的过大剪切应变会导致复合材料中出现微裂纹。这降低了复合材料的弹性模量。结果发现,弹性模量的成分依赖性超出了两相材料的弹性模量的Voigt和Reuss的理论界限,并且通过增加压实压力,烧结复合材料的弹性模量得到了改善。 ZrO2含量。当添加氧化锆至多5 wt%ZrO2时,复合材料的热膨胀无明显变化。但是,已经确定了由于相变而引起的尺寸变化,特别是氧化锆含量高时。 [参考:22]

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