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991.
992.
RUI Wen-juan CAO De-xin SONG Xie-wu 《中国矿业大学学报(英文版)》2005,15(4):379-383
1 IntroductionThe maximum entropy method, also calledaggregate function method, is mainly based on theentropy function theory in information science. Ituniformly approximates the primitive function viaconstructing maximum entropy function. Owing tothe favorable properties of the maximum entropyfunction, it is convenient to do theory and algorithmresearch. In recent years, many good results insolving nonlinear programming problems such asmini-max problems, nonlinear ill-posed problems andnonlin… 相似文献
993.
994.
995.
Xiwen SONG Yongwang ZHAO Zhefeng WANG Jun PENG Wenguang ZHAO Shengli AN School of Materials Science Engineering Inner Mongolia University of Science Technology Baotou China School of Metallurgical Ecological Engineering University of Science Technology Beijing Beijing ChinaAssoc. Prof. 《材料科学技术学报》2005,(1)
SmxGdyCe1-x-yO2-δ (x+y=0.2 and x=0, 0.04, 0.08, 0.12, 0.16, 0.2) nanopowders were prepared by a copre-cipitation method. The zeta potential and sedimentation volume of Ce(OH)4 aqueous dispersions at different pH values were measured. The isoelectric point (IEP) of Ce(OH)4 suspensions is 7.0. The maximum potential value of -18.5 mV and maximum sedimentation volume of 19 ml are reached at pH=10. The evolution behaviors of the xSm(OH)3·yGd(OH)3·(1-x-y)Ce(OH)4 dried powders in the heating process was characterized by DTA/TG and XRO. The powders decompose to ceria based solid solution at a temperature below 300℃ and forms cubic fluorite structure ceria at about 650℃. The properties of SmxGdyCe1-x-yO2-δ solid solutions were characterized by XRD, TEM and BET. The lattice parameter of doped Ce02 increases linearly with increasing Sm3+ substitution (or decreasing Gd3+ substitution). The particle size of the doped ceria powders is from 5 nm to 10 nm. 相似文献
996.
Jinping GAO Xiaoyan SONG Jiuxing ZHANG Keyong YANG Xuemei LIUCollege of Materials Science Engineering the Key Laboratory of Advanced Functional Materials of the Education Ministry Beijing University of Technology Beijing China 《材料科学技术学报》2005,21(5):705-709
1.IntroductionNanocrystalline materials have attracted increasingscientific interests since they emerged in the late80s',be-cause of their unusual physical and chemical propertiesthat are normally attributed to the ultrafine grains.Thespecial properties of nanocrystalline materials are essen-tially connected with both thermodynamics and dynam-ics of the formation of nano materials.However,it hasshown that traditional thermodynamic and phase trans-formation models cannot satisfactorily describe… 相似文献
997.
Eu^3+:LiNbO3Eu单晶的坩埚下降法生长及其光谱性质 总被引:1,自引:0,他引:1
选用合适的温度梯度(20~30℃/cm)与生长速度(1~3mm/h),用坩埚下降法成功地生长出了掺杂Eu^3 的LiNbO3单晶。用X射线衍射及DTA分析表征了获得的晶体。生长的晶体无宏观缺陷,在He-Ne激光的照射下,无散射中心。测定了从生长初期下部到生长后期上部晶体的紫外一可见吸收光谱与荧光光谱。观测到分裂的光谱线。结果表明,沿着晶体生长方向,Eu抖浓度逐步减少。Eu抖离子在晶体中取代Li与Nb格位。 相似文献
998.
Photoluminescent (PL) and cathodoluminescent (CL) properties of rare earths (Sc^3+ , La^3+ , Gd^3+ and Lu^3+ ) doped (Y0.97Tb0.03)2SiO5 were studied. Rare earth doping clearly influences PL and CL properties of Y2SiO5 : Tb. For La^3+ doped system, PL intensity increases nearly 10 % at x = 0.05 whereas for Lu^3+ doped system, the intensity increases about 20% at x = 0.20. Gd^3 + doping and Sc^3+ doping reduce the intensity; at x = 0.3, it is reduced about 30% for Gd^3+ doped system and about 15 % for Sc^3+ doped system, respectively. Quenching concentration of activator became higher in rare earth doped samples, which may be understood by that the rare earth dopants might dilute the concentration of the activator. Additionally, doping also influences the color saturation of Y2SiO5 : Tb. Sc^3+ , La^3+ , and Gd^3
doping improve the color saturation, whereas Lu^3+ doping decreases the color saturation. CL measurements show that CL intensity increases for all rare earths doped systems. The energy transfer from Gd^3+ to Tb^3+ was discussed. 相似文献
999.
1000.
金隆闪速炉精矿喷嘴的优化 总被引:3,自引:0,他引:3
介绍金隆公司闪速炉精矿喷嘴的结构特点和运行情况,针对运行中存在的问题,通过优化操作参数、改进结构,喷嘴的性能得到了很大改善。 相似文献