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首页> 外文期刊>CERAMICS INTERNATIONAL >Preparation and thermal shock behavior of nanoscale MgAl2O4 spinel-toughened MgO-based refractory aggregates
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Preparation and thermal shock behavior of nanoscale MgAl2O4 spinel-toughened MgO-based refractory aggregates

机译:纳米级MgAl2O4尖晶石 - 增韧MgO的耐火聚集体的制备和热冲击行为

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Nanoscale MgAl2O4 (MA) spinel-toughened MgO-based refractory aggregates were prepared by firing lightly calcined magnesia powder and some nanoscale Al2O3 (<= 50 nm) particles at high temperature. The effects of various amounts of nanoscale Al2O3 powder on the phase composition, microstructure, physical properties and thermal shock resistance (TSR) of the prepared MgO-based refractory aggregates were investigated. The results showed that the optimum nanoscale Al2O3 powder addition was 10 wt%, and the nanoscale Al2O3 particles reacted with MgO during firing and formed nanoscale MA creating reactive sintering, which contributed to significant increasing in density and cold strength of the prepared aggregates. The thermal mismatch between nano-MA and MgO could produce microcracks created toughening effect, leading to improvement in TSR of the prepared aggregates. And the formed nano MA grains pinned in MgO grain boundaries and on MgO grain surfaces would lead to microcracks deflection and absorbing much more fracture energy, further improving the TSR. The obtained aggregates were trial used in MgO-C slide plate materials, and thermal shock resistance of the materials was improved.
机译:通过在高温下烧制轻微煅烧的氧化镁粉末和一些纳米级Al 2 O 3(<= 50nm)颗粒,制备纳米级MgAl2O4(MA)尖晶石韧带的MgO的耐火聚集体。研究了各种量的纳米级Al2O3粉末对制备的MgO的耐火聚集体的相组成,微观结构,物理性质和热抗冲击物(TSR)的影响。结果表明,最佳纳米级Al 2 O 3粉末添加为10wt%,纳米级Al2O3颗粒与MgO反应,烧制并形成纳米级MA产生反应性烧结,这导致制备的聚集体的密度和冷强度显着增加。纳米MA和MgO之间的热失配可以产生微裂纹产生增韧效果,从而改善制备的聚集体的TSR。并且形成在MgO晶界和MgO晶粒表面上的形成的纳米MA晶粒将导致微裂纹偏转和吸收更多的骨折能量,进一步改善TSR。所得聚集体是在MgO-C滑板材料中使用的试验,并且改善了材料的热抗震性。

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