Synthesis and application evaluation in lithium battery furnace of mullite insulating refractory bricks from tailings

Author:

Wang Hailu1,Li Yuanbing12ORCID,Yin Bo13,Li Shujing12ORCID,He Xiaohong4,Xiang Ruofei1ORCID,Qiao Zhe1

Affiliation:

1. The State Key Laboratory of Refractories and Metallurgy Wuhan University of Science and Technology Wuhan PR China

2. National‐provincial Joint Engineering Research Center of High Temperature Materials and Lining Technology Wuhan University of Science and Technology Wuhan PR China

3. Yixing Morgan Thermal Ceramics Co., Ltd Yixing PR China

4. Guangdong Shanmo New Material Technology Co., Ltd Zhaoqing PR China

Abstract

AbstractIn order to realize efficient and comprehensive utilization of kyanite tailings (KT) mullite insulating firebrick (M‐IFB) with high strength and low thermal conductivity with spherical‐low connectivity porous were success fully prepared by using KT and alumina as the main raw material. Control of the porosity and properties of mullite insulating firebrick can be easily and accurately achieved by adjusting the heat treatment temperature and the amount of forming agent. The compressive strengths, bulk density, thermal conductivities, liner change, and porosities ranged from 25.86–53.26 MPa, .58–1.61 g/cm3, .236–.599 W/(m·K), −1.01 to −.426 % and 66.89 to 78.63 %, respectively. The creep rate of M‐IFB was compared with that of current insulating bricks after them used in the baking kiln of lithium ion battery cathode materials in the laboratory to simulate the environment. The results show that the M‐IFB corrosion resistance was obviously superior to the current insulation bricks. The high porosity high strength mullite insulating firebrick prepared by this method is expected to be used in thermal insulation system of kiln to realize the comprehensive utilization of solid waste.

Publisher

Wiley

Subject

Materials Chemistry,Marketing,Condensed Matter Physics,Ceramics and Composites

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