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首页> 外文期刊>Materials Science and Engineering >Structural properties of Al_2O_3-MgO-C refractory composites improved with YAG nanoparticle hybridized expandable graphite
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Structural properties of Al_2O_3-MgO-C refractory composites improved with YAG nanoparticle hybridized expandable graphite

机译:Al_2O_3-MgO-C耐火复合材料的结构性能改善了YAG纳米粒子杂交的可膨胀石墨

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The structural properties of Al_2O_3-MgO-C refractories were measured with the addition of YAG nanoparticle hybridized expandable graphite (EG) powder as a partial replacement of graphite in the refractory composition. The experimental findings showed that the refractories fabricated with YAG nanoparticle hybridized EG exhibited a considerable improvement in structural properties (strength, toughness, Weibull modulus) as compared to that of refractories developed with conventional graphite compositions. These improvements in structural properties can be attributed to the formation of a well-sintered framework of EG embedded polyhedral YAG grains throughout the matrix microstructure of these new class of refractory composites. Mechanisms of microstructure evaluation and toughening in Al_2O_3-MgO-C refractory composites are proposed.
机译:通过加入YAG纳米颗粒杂交的可膨胀石墨(例如)粉末作为耐火材料组合物中石墨的部分替代来测量Al_2O_3-MgO-C耐火材料的结构性质。实验结果表明,与用常规石墨组合物开发的耐火材料相比,用YAG纳米粒子制造的耐火材料杂交例如具有相当大的结构性质(强度,韧性,尾壳模量)的改善。结构性质的这些改善可归因于在这些新的耐火复合材料的基质微结构中形成例如嵌入的多面体YAG晶粒的烧结框架。提出了AL_2O_3-MGO-C耐火复合材料的微观结构评价和增韧机制。

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