首页> 外文期刊>CERAMICS INTERNATIONAL >Fast drying of high-alumina MgO-bonded refractory castables
【24h】

Fast drying of high-alumina MgO-bonded refractory castables

机译:高氧化铝MgO键合耐火浇注料的快速干燥

获取原文
获取原文并翻译 | 示例
           

摘要

Refractory producers face many challenges in terms of producing MgO-containing castables due to the high likelihood of magnesia to hydrate in contact with water, resulting in Mg(OH)(2) generation. The expansive feature of this transformation affects the performance of such refractories, as (i) if this hydrated phase is not accommodated in the formed microstructure, ceramic linings with cracks and low green mechanical strength will be obtained; and (ii) if crack-free pieces are prepared, they should present low porosity and reduced permeability, which require special attention when heating these materials. In both cases, spalling/explosion may be favored during the drying step of MgO-containing compositions. Hence, this work investigated the ability of various additives in the optimization of the drying behavior of Al2O3-MgO castables. Vibratable compositions were tested after incorporating polymeric fibers (PF), an organic salt (OAS), SiO2-based additive (SM) or permeability enhancing active compound (MP) into the dry-mixtures. Various experimental measurements were performed to infer the role of the drying agents to prevent the samples' explosion and whether they would also influence other properties of the castables. As observed, OAS and MP helped to inhibit the MgO-bonded samples' explosion even under severe heating conditions (2-20 degrees C/min) and increased their green mechanical strength and slag infiltration resistance when compared to the additive-free composition. On the other hand, the addition of polymeric fibers (PF) or silica-based compound (SM) to the formulations was not able to prevent the castables' explosion when using a high heating rate and other side effects (samples' cracking during drying at 110 degrees C, high linear expansion and increased slag penetration during corrosion tests) could also be observed when testing these materials. Thus, the selection of suitable drying agents is a key issue, as they may allow the development of MgO-bonded castables with enhanced properties and lower spalling risk during their first thermal treatment.
机译:由于氧化镁与水接触的高可能性,耐火生产者在生产MgO含量方面面临许多挑战,导致Mg(OH)(2)代。该变换的膨胀特征影响了这种耐火材料的性能,如(i)如果该水合相未容纳在形成的微观结构中,则将获得裂缝和低绿色机械强度的陶瓷衬里; (ii)如果制备无裂缝件,则它们应在加热这些材料时呈现低孔隙率和降低的渗透率,这需要特别注意。在这两种情况下,在含MgO组合物的干燥步骤期间可以赞成剥落/爆炸。因此,这项工作研究了各种添加剂在AL2O3-MGO浇注件的干燥行为中的能力。将聚合物纤维(PF),有机盐(OAS),基于SiO 2的添加剂(SM)或渗透性将活性化合物(MP)加入干混合物后,测试可振动的组合物。进行各种实验测量以推断干燥剂的作用,以防止样品的爆炸,以及它们是否也会影响浇口的其他性质。如图所示,即使在严重的加热条件下(2-20℃/ min),OAS和MP也有助于抑制MgO键合样品的爆炸,并且与无添加剂组合物相比,它们增加了它们的绿色机械强度和炉渣渗透性。另一方面,在制剂中加入聚合物纤维(PF)或二氧化硅基化合物(SM)不能在使用高加热速率和其他副作用时(样品)在干燥时(样品)裂缝时在测试这些材料时,还可以观察到110℃,高线性膨胀和腐蚀试验期间增加的炉渣穿透)。因此,选择合适的干燥剂是关键问题,因为它们可以在首次热处理期间允许在增强的性质和较低的剥落风险中允许开发MgO键合的碎屑。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号