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Preparation of environmentally friendly high-emissivity Ca2+-Fe3+ co-doped LaAlO3 ceramic
被引:6
|作者:
Wang, Qu
[1
]
Yan, Senwang
[1
]
Dong, Binbin
[2
]
Zhang, Yifan
[1
]
Zhang, Qi
[1
]
Du, Penghui
[1
]
Wang, Gang
[1
,3
]
机构:
[1] Sinosteel Luoyang Inst Refractories Res Co Ltd, State Key Lab Adv Refractories, Luoyang, Peoples R China
[2] Luoyang Inst Sci & Technol, Luoyang, Peoples R China
[3] Sinosteel Luoyang Inst Refractories Res Co Ltd, State Key Lab Adv Refractories, Luoyang 471039, Peoples R China
基金:
中国国家自然科学基金;
关键词:
co-doping;
LaAlO3;
infrared emissivity;
thermal conductivity;
thermal expansion coefficient;
ENHANCED INFRARED EMISSIVITY;
RADIATION PROPERTIES;
THERMOPHYSICAL PROPERTIES;
THERMAL-CONDUCTIVITY;
LANTHANUM ALUMINATE;
PROPERTY;
CA2+;
COATINGS;
COFE2O4;
IONS;
D O I:
10.1111/ijac.14335
中图分类号:
TQ174 [陶瓷工业];
TB3 [工程材料学];
学科分类号:
0805 ;
080502 ;
摘要:
Ca2+-Cr3+ co-doped LaAlO3 is an excellent ceramic material with high emissivity; however, it is harmful to the environment because of the presence of Cr3+ ions. In this study, Ca2+-Fe3+ co-doped LaAlO3 ceramic materials were successfully prepared via a high-temperature solid-state reaction. The emissivity of Ca2+-Fe3+ co-doped LaAlO3 was 0.91, which is approximately equal to that of Ca2+-Cr3+ co-doped LaAlO3. To compensate for the lack of data on the thermophysical properties of doped LaAlO3 high-emissivity ceramics, the thermal expansion coefficients and thermal conductivities of LaAlO3 doped with Ca2+-Fe3+ or Ca2+-Cr3+ were investigated. The thermal conductivities of La0.9Ca0.1Al0.9Fe0.1O3 and La0.9Ca0.1Al0.9Cr0.1O3 at 1200 degrees C were 3.802 and 3.707 W center dot m(-1)center dot K-1, respectively. The thermal expansion coefficients of La0.9Ca0.1Al0.9Fe0.1O3 and La0.9Ca0.1Al0.9Cr0.1O3 at 1200 degrees C were 11.49x10(-6) and 11.41x10(-6) K-1, respectively. These results indicate that Ca2+-Fe3+ co-doped LaAlO3 exhibits great potential as a new generation of environmentally friendly near-infrared radiating materials in the field of energy efficiency.
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页码:1785 / 1792
页数:8
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