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In-situ synthesis mechanism of plate-shaped beta-Sialon and its effect on Al2O3-C refractory properties

机译:板形β-Sialon的原位合成机理及其对Al2O3-C耐火性能的影响

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This study investigated the effect of the sintering temperature on the microstructural evolution and properties of Al2O3-C refractory samples, which were prepared using corundum, flake graphite, reactive alumina, Al and Si powders. The phenolic resin and nanometallic Ni were respectively applied as the binder and catalyst. The results indicate that hexagonal AlN particles, generated from the reaction of Al-N-2 in Al2O3 refractories at 1000 degrees C, could transform into whiskers at 1200 degrees C. By increasing the sintering temperature to 1400 degrees C, a large number of plate-shaped beta-Sialon could be generated. Under the action of Ni catalyst, the beta-Sialon phases in refractories grew preferentially toward the crystalline facets (210) and (011) of AN crystal and formed the plate-shape structure. When plate-shaped beta-Sialon formed, the cold crushing strength (CCS) and cold modulus of rupture (CMOR) increased from 90.57 MPa to 148.67 MPa and from 22.83 MPa to 33.02 MPa, respectively. After two thermal shock cycles, the CCS of the refractories containing the plate-shaped beta-Sialon had only decreased by 4.5 MPa. Thus, the in situ formation of plate-shaped beta-Sialon could significantly improve the thermal shock resistance of Al2O3-C refractories. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:本研究研究了烧结温度对使用刚玉,鳞片状石墨,活性氧化铝,Al和Si粉末制备的Al2O3-C耐火样品的组织演变和性能的影响。分别使用酚醛树脂和纳米金属Ni作为粘合剂和催化剂。结果表明,由Al-N-2在1000摄氏度的Al2O3耐火材料中反应生成的六角形AlN颗粒在1200摄氏度时可转变为晶须。通过将烧结温度提高至1400摄氏度,大量的板可以生成形状为beta的Sialon。在Ni催化剂的作用下,耐火材料中的β-Sialon相优先向AN晶体的晶面(210)和(011)生长,并形成板状结构。当形成板状β-Sialon时,冷压强度(CCS)和冷断裂模量(CMOR)分别从90.57 MPa增加到148.67 MPa和从22.83 MPa增加到33.02 MPa。经过两个热冲击循环后,包含板状β-Sialon的耐火材料的CCS仅降低了4.5 MPa。因此,板状β-Sialon的原位形成可以显着提高Al2O3-C耐火材料的抗热震性。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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