Xinbin Lao
Wuhan University of Technology
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Journal of Wuhan University of Technology-materials Science Edition | 2012
Jianfeng Wu; Guanghui Leng; Xiaohong Xu; Yaxiang Zhang; Xinbin Lao; Kun Li
In order to utilize solid wastes, ceramic facing brick was made form East-lake sediment and some additives. The strength and freeze-thaw resistance of the samples were tested, and the crystal phases and microstructures were studied by XRD and SEM. The results indicate that the samples have a wide firing temperature range. The main crystal phases are CaAl2Si2O8, α-Al2O3, Fe2O3, which distribute uniformly in the samples. The sample have the best properties in the series ‘Ca-Al-Si’, and water absorption (Wa), porosity (Pa), bulk density (D), bending strength and compressive strength are 7.24%, 15.82%, 2.19 g·cm−3, 45.57 MPa and 56.81 MPa respectively, when the addition amount of East-lake sediment is 80% and the firing temperature is 1 100 °C. In the series ‘K-Al-Si’, the sample with the best properties was obtained when addition amount of East-lake sediment was 70% and firing temperature was 1 060 °C. The water absorption, porosity, bulk density, bending strength and compressive strength are 7.62%, 16.37%, 2.15 g·cm−3, 39.26 MPa, and 50.81 MPa respectively. They all come up to the national standardization, and meet the needs of manufacturing production.
Journal of Wuhan University of Technology-materials Science Edition | 2016
Xiaohong Xu; Xinbin Lao; Jianfeng Wu; Yaxiang Zhang; Xiaoyang Xu; Kun Li
For improving the properties of SiC-mullite composite ceramics used for solar sensible thermal storage, MnO2 was introduced as sintering additive when preparing. The composite ceramics were synthesized by using SiC, andalusite, α-Al2O3 as the starting materials with non-contact graphite-buried sintering method. Phase composition and microstructure of the composites were investigated by XRD and SEM, and the effect of MnO2 on the properties of SiC composites was studied. Results indicated that samples SM1 with 0.2 wt% MnO2 addition achieved the optimum properties: bending strength of 70.96 MPa, heat capacity of 1.02 J·(g·K)-1, thermal conductivity of 9.05 W·(m·K)-1. Proper addition of MnO2 was found to weaken the volume effect of the composites and improve the thermal shock resistance with an increased rate of 27.84% for bending strength after 30 cycles of thermal shock (air cooling from 1 100 °C to RT).
Journal of Wuhan University of Technology-materials Science Edition | 2015
Jianfeng Wu; Kun Li; Xiaohong Xu; Yaxiang Zhang; Xiaoyang Xu; Xinbin Lao
Cadmium sulphoselenide was synthesized continuous substitution solid solution and the only known pigment to yield bright red color on ceramic decoration. Encapsulated cadmium sulphoselenide pigments could yield abundant hues from yellow to red with high opacity at high temperature. The color generation has a linear function relation with the substitution rate. The encapsulation formation process of zirconium silicate encapsulated cadmium sulphoselenide was shown. Insufficient encapsulation efficiency and potential hazard to human and environment had limited the industrial application of cadmium sulphoselenide red pigment. Ink-jet printing decoration required fine size cadmium sulphoselenide red pigment on ceramic decoration. The review mainly focused on the synthesis techniques and industrial application of cadmium sulphoselenide red pigment.
Applied Clay Science | 2015
Xiaohong Xu; Xinbin Lao; Jianfeng Wu; Yaxiang Zhang; Xiaoyang Xu; Kun Li
Journal of Alloys and Compounds | 2016
Xiaohong Xu; Xinbin Lao; Jianfeng Wu; Yaxiang Zhang; Xiaoyang Xu; Kun Li
Ceramics International | 2015
Xiaohong Xu; Xiaoyang Xu; Jianfeng Wu; Yaxiang Zhang; Xinbin Lao; Kun Li; Yu Xu
International Journal of Applied Ceramic Technology | 2015
Xiaohong Xu; Xinbin Lao; Jianfeng Wu; Zhenggang Rao; Yang Zhou; Dezhi He; Yi Liu
International Journal of Applied Ceramic Technology | 2014
Jianfeng Wu; Meng Liu; Xiaohong Xu; Yaxiang Zhang; Xinbin Lao
Applied Clay Science | 2016
Xiaohong Xu; Xinbin Lao; Jianfeng Wu; Xiaoyang Xu; Yaxiang Zhang; Kun Li
Ceramics International | 2016
Xiaohong Xu; Xiaoyang Xu; Jianfeng Wu; Xinbin Lao; Yaxiang Zhang; Kun Li