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Effect of AlF3 Content on the Properties of In-situ Generated Mullite Whisker Reinforced High Aluminum Castables

机译:ALF3含量对原位生成的莫来石晶须增强高铝浇口性能的影响

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The mullite whiskers have excellent high temperature resistance and high heat characteristics, the melting point is above 2000°C, and the maximum use temperature is 1500°C to 1700°C. In this paper, mullite whiskers were prepared by in-situ growth method. High aluminum castables were prepared by injecting mullite whiskers in situ at high temperature by adding A1(NO3)3-9H2O and NH4F to high alumina castables. It is 0, 0.5 wt%, 1 wt%, 2 wt%, 4 wt%. The materials were mixed, stirred, cast, and demolded and then fired at 1400°C. By testing the bulk density, apparent porosity and residual flexural strength of the samples, the properties, microstructure and micro structure of the fired samples were analyzed and characterized by means of XRD and SEM. The study focused on A1F3 to mullite whiskers. The effect of microstructure and flexural strength. The results show that the introduction of AIF3 promotes the formation of mullite whiskers. With the increase of A1F3 content, the aspect ratio of whiskers increases first and then decreases, and when the A1F3 content is lwt%, the aspect ratio of whiskers The maximum is 6.67. Excessive A1F3 causes the mullite whiskers to become thick and rod-shaped. The in-situ mullite whiskers form an interlocking structure, which enhances the flexural strength of mullite high-aluminum castables when A1F3 content When the weight is lwt%, the flexural strength of the model reaches the maximum value of 35.92MPa, and the residual flexural strength of the sample after 5, 10, and 15 thermal shocks reaches the maximum, which are respectively 2.07 MPa, 1.95 MPa, 1.19. MPa.
机译:莫来石晶须具有优异的高耐温性和高热特性,熔点高于2000℃,最大使用温度为1500℃至1700℃。在本文中,通过原位生长方法制备莫来石晶须。通过在高温下通过添加A1(NO 3)3-9H 2 O和NH 4 F至高氧化铝浇口,通过在高温下注入莫来石晶须来制备高铝浇铸物。它是0,0.5wt%,1wt%,2wt%,4wt%。将材料混合,搅拌,浇铸和脱模,然后在1400℃下烧制。通过测试样品的堆积密度,表观孔隙率和残余弯曲强度,通过XRD和SEM分析烧制样品的性质,微观结构和微结构。该研究专注于A1F3至莫来石晶须。微观结构和弯曲强度的影响。结果表明,AIF3的引入促进了莫来石晶须的形成。随着A1F3含量的增加,晶须的纵横比首先增加,然后减少,并且当A1F3含量为LWT%时,晶须的纵横比最大为6.67。过量的A1F3使莫来石晶须变厚而棒状。原位莫来石晶须形成互锁结构,该结构增强了莫来石高铝铸件的弯曲强度当A1F3含量在重量为LWT%时,模型的抗弯强度达到最大值35.92MPa,剩余弯曲5,10和15个热冲击后样品的强度达到最大值,分别为2.07MPa,1.95MPa,1.19。 MPA。

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