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Influence of transition metal ion (mn4+) on mullite formation in a mixture of 50:50 Nigerian kaolin and calcined alumina

机译:过渡金属离子(mn4 +)对50:50尼日利亚高岭土和煅烧氧化铝混合物中莫来石形成的影响

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In the present investigation, 5 wt% chemical grade MnO_(2) was added in a mixture of 50:50 Nigerian sources of kaolin and superfine calcined alumina powder and effect of this transition metal ion on their physico-mechanical properties, phase and microstructural evolution were studied during heating in the temperature range of 1,400–1,650°C. The heated samples were found to be highly porous (30%) in this entire temperature range. The doping of 5 wt% MnO_(2) in this mixture did not improved the densification, but resulted into higher flexural strength (26?MPa) at 1,400°C compared to 7?MPa in the undoped sample. At 1,650°C, the reverse trend was observed, the flexural strength of undoped sample was found to be higher (38?MPa) than doped sample (27?MPa). The XRD study revealed the formation of mullite as major and corundum as minor phases in both the samples. The microstructural study shown the presence of needle shaped mullite crystals and corundum grains. The presence of inter-granular and intra-granular pores in MnO_(2) doped samples might have reduced the strength at 1,650°C. The aspect ratio of mullite needle at 1,650°C was found to be higher in doped sample. The theoretical and experimental value of 4 for MnO_(2) ion has been validated.
机译:在本研究中,将5 wt%的化学级MnO_(2)添加到50:50尼日利亚高岭土和超细煅烧氧化铝粉末的混合物中,并且该过渡金属离子对其物理力学性能,相和微结构演变的影响在1,400–1,650°C的温度范围内加热期间进行了研究。发现加热的样品在整个温度范围内是高度多孔的(> 30%)。在该混合物中掺杂5 wt%MnO_(2)不能改善致密性,但与未掺杂样品中的7 MPa相比,在1400°C时具有更高的弯曲强度(26 MPa)。在1,650°C,观察到相反的趋势,发现未掺杂样品的抗弯强度(38?MPa)比掺杂样品(27?MPa)更高。 XRD研究表明,在两个样品中,莫来石的形成都是主要相,刚玉是次要相。显微组织研究表明存在针状莫来石晶体和刚玉晶粒。 MnO_(2)掺杂样品中存在晶间孔和晶内孔可能会降低1,650°C的强度。发现在1650℃下,莫来石针的长径比在掺杂样品中较高。 MnO_(2)离子的理论和实验值> 4已得到验证。

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