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Extruded ZrSiO{sub}4 particulate-reinforced LZSA glass-ceramics matrix composite

机译:挤压成型的ZrSiO {sub} 4颗粒增强LZSA玻璃陶瓷基复合材料

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摘要

This work reports on the characterization of ZrSiO{sub}4 particulate-reinforced Li{sub}2O-ZrO{sub}2-SiO{sub}2-Al{sub}2O{sub}3 (LZSA) glass-ceramic matrix composite added with bentonite as binder and formed by extrusion. The glass batches and composites were characterized on the point of view of their typical physical/mechanical and chemical properties. Composition with 60 wt.% ZrSiO{sub}4 was preliminary selected, since it showed the best results in terms of bending strength (190 MPa) and deep abrasion resistance (51 mm{sup}3). The same composition as before but added with 7 wt.% bentonite was selected for further studies since it exhibited the highest plasticity index, which resulted in good billets after extrusion. In this last case, the extruded samples, after sintering at 1150℃ for 10 min, showed a thermal linear shrinkage of 14% and deep abrasion resistance and bending strength of 51 mm{sup}3 and 220 MPa, respectively.
机译:这项工作报告了ZrSiO {sub} 4颗粒增强的Li {sub} 2O-ZrO {sub} 2-SiO {sub} 2-Al {sub} 2O {sub} 3(LZSA)玻璃陶瓷基复合材料的表征加入膨润土作为粘合剂并通过挤出成型。从玻璃批料和复合材料的典型物理/机械和化学特性的角度对其进行了表征。初步选择了具有60 wt。%ZrSiO {sub} 4的组合物,因为它在抗弯强度(190 MPa)和深耐磨性(51 mm {sup} 3)方面显示出最好的结果。选择与以前相同但添加了7 wt%膨润土的成分进行进一步研究,因为它具有最高的可塑性指数,可在挤压后获得良好的坯料。在这最后一种情况下,挤出的样品在1150℃下烧结10分钟后,其热线性收缩率为14%,深层耐磨性和弯曲强度分别为51 mm {sup} 3和220 MPa。

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