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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Cobalt Doping on Synthesis and Sintering Properties of MgAl2O4 Spinel Nanopowders
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Effect of Cobalt Doping on Synthesis and Sintering Properties of MgAl2O4 Spinel Nanopowders

机译:钴掺杂对MgAl2O4尖晶石纳米粉粉合成及烧结性能的影响

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摘要

In this study, magnesium aluminate spinel (MgAl2O4) has been synthesized with inorganic nitrate salts route in the presence of 1 wt.% cobalt addition. Microstructure, phase transformation, densification and sintering behavior of the pure and Co-doped powders have been investigated. The synthesis process was proceeding during calcination of the prepared gel at different temperatures 700-900 degrees C. Samples were prepared from granulated powders using uniaxial pressing at 200 MPa with consequent sintering at 1500-1650 degrees C. Phase study and microstructure observations indicate the crystallization improvement of nanopowders at the presence of cobalt addition for all of the calcination temperatures in comparison with the pure MgAl2O4. Maximum relative density for pure sample achieved about 95% of its theoretical value, while it was about 98% for the Co-doped sample by sintering at 1600 degrees C. Pore trapping was observed for sintered samples at 1650 degrees C due to increase in the grain boundary mobility at high temperature. The values of Vickers hardness for both samples decreased from about 15 to 13 GPa during increasing the sintering temperatures from 1500 to 1650 degrees C as a result of the grain growth occurrence.
机译:在本研究中,在加入1 wt.%钴的情况下,通过无机硝酸盐路线合成了铝酸镁尖晶石(MgAl2O4)。研究了纯粉体和共掺杂粉体的微观结构、相变、致密化和烧结行为。合成过程在不同温度700-900°C下煅烧制备的凝胶期间进行。使用200 MPa下的单轴压制从粒状粉末制备样品,随后在1500-1650°C下烧结。相研究和微观结构观察表明,在所有样品中添加钴时,纳米粉末的结晶改善将煅烧温度与纯MgAl2O4进行比较。纯样品的最大相对密度达到其理论值的95%左右,而在1600℃下烧结的共掺杂样品的最大相对密度约为98%。由于高温下晶界迁移率的增加,在1650℃下烧结的样品观察到孔隙陷阱。在将烧结温度从1500℃提高到1650℃的过程中,两个样品的维氏硬度值都从约15 GPa降低到13 GPa,这是晶粒生长的结果。

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