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首页> 外文期刊>Journal of Ceramic Science and Technology >Effects of Growth Rate on Microstructure and Properties of Directionally Solidified Eutectic Ceramic Al2O3/MgAl2O4/ZrO2
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Effects of Growth Rate on Microstructure and Properties of Directionally Solidified Eutectic Ceramic Al2O3/MgAl2O4/ZrO2

机译:生长速率对定向固化共晶陶瓷Al2O3 / MgAl2O4 / ZrO2的微观结构和性质的影响

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摘要

Directionally solidified Al2O3/MgAl2O4/ZrO2 ternary eutectic ceramic was prepared by means of induction heating zone melting (IHZM), and the effects of the growth rate on the microstructure and properties of the solidified ceramic were investigated. X-ray diffraction (XRD) patterns showed that the eutectic rod contained Al2O3, MgAl2O4 and ZrO2 phases. The results of scanning electron microscopy (SEM) and energy-dispersive spectroscopy (EDS) demonstrated that Al2O3/MgAl2O4 constituted the matrix of the eutectic ceramic while rod-like ZrO2 was uniformly embedded in the matrix. The specimen morphology is transformed from an irregular pattern to a regular bar-shaped pattern with the increase in the growth rate. The measured and calculated value of lambda(2)nu (lambda, the phase spacing; nu, the solidification rate) was approximately equal to 2.98, which fitted well with the formula: lambda(2)nu = constant. With the increase in the growth rate, the hardness of the material decreases, the fracture toughness first increases and then decreases. The maximum hardness of the solidified eutectic ceramic rate reached 11.68 GPa when the solidification rate was 1 mm/h, this hardness was about 1.6 times that of the pre-sintered sample. Its maximum fracture toughness at room temperature was 7.21 MPa.m(1/2) when the rate was 3 mm/h, which was about two times that of the pre-sintered sample.
机译:通过感应加热区熔融(IHZM)制备定向凝固的Al 2 O 3 / MgAl 2 O 4 / ZrO2三元共晶陶瓷,并研究了生长速率对凝固陶瓷的微观结构和性质的影响。 X射线衍射(XRD)图案表明,共晶棒含有Al 2 O 3,MgAl2O4和ZrO 2相。扫描电子显微镜(SEM)和能量分散光谱(EDS)的结果证明了Al 2 O 3 / MgAl2O4构成了共晶陶瓷的基质,而棒状ZrO2均匀地嵌入基质中。试样形态由不规则图案转化为常规条形图案,随着生长速率的增加。 Lambda(2)Nu(Lambda,相间隔; Nu,凝固率)的测量和计算值大约等于2.98,适用于配方:Lambda(2)nu =常数。随着生长速率的增加,材料的硬度降低,断裂韧性首先增加,然后减少。当凝固率为1mm / h时,固化的共晶陶瓷速率的最大硬度达到11.68GPa,这种硬度约为预烧结样品的1.6倍。当速率为3mm / h时,室温下的最大断裂韧性为7.21mPa.m(1/2),这约为预烧结样品的两倍。

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