材料科学
莫来石
复合材料
陶瓷
抗弯强度
多孔性
羧甲基纤维素
抗压强度
泥浆
发泡剂
流变学
钠
冶金
作者
Xiangong Deng,Songlin Ran,Lei Han,Haijun Zhang,Shengtao Ge,Shaowei Zhang
标识
DOI:10.1016/j.jeurceramsoc.2017.05.009
摘要
Abstract High-strength self-reinforced porous mullite ceramics were prepared via foam-gelcasting using mullite powder as a main raw material, AlF 3 ·3H 2 O (0–8 wt%) as an additive, Isobam-104 as a dispersing and gelling agent, sodium carboxymethyl cellulose as a foam stabilizing agent, and triethanolamine lauryl sulfate as a foaming agent. The effects of AlF 3 ·3H 2 O content on rheological and gelling behaviors of the slurries, and porosity and mechanical properties of self-reinforced porous mullite samples were examined. Addition of AlF 3 ·3H 2 O promoted the in-situ formation of elongated mullite in the fired porous samples, which improved considerably their mechanical properties. Compressive strength and flexural strength of 67.0% porous mullite ceramics prepared with addition of 6 wt% AlF 3 ·3H 2 O was as high as 41.3 and 13.9 MPa, respectively. Its hot modulus rupture (HMOR) increased initially with the testing temperature, and peaked (with a maximum value of 16.6 MPa) at 800 °C above which it started to decrease with the testing temperature. Nevertheless, it was still retained as high as 6.7 and 2.8 MPa at 1200 and 1400 °C, respectively.
科研通智能强力驱动
Strongly Powered by AbleSci AI