The isothermal section of the Er-Mn-Nd ternary system at 773 K was investigated mainly by X-ray powder diffraction with the aid of differential thermal analysis. The 773 K isothermal section of the ternary system cons...The isothermal section of the Er-Mn-Nd ternary system at 773 K was investigated mainly by X-ray powder diffraction with the aid of differential thermal analysis. The 773 K isothermal section of the ternary system consists of 9 single-phase regions, 14 two-phase regions, and 6 three-phase regions. At 773 K, the maximum solid solubility of Er in Nd and Nd in Er is about 20%(atom fraction) Er and 26%(atom fraction) Nd, respectively. Er6Mn23 and Nd6Mn23 form a continuous solid solution. The homogeneity range of δ phase extends from about 38% (atom fraction) Er to 43% (atom fraction) Er. No ternary compounds were observed at 773 K in this system.展开更多
结合运载器测试数据的特点,采用ER图及关系模式对通用测试数据库的设计进行了较详细的分析,提出客户/服务器两层体系结构的数据库实现方案。在该系统中,服务器端采用SQL Server 2000,客户端采用C++ Builder5.0开发平台,客户端和服务器...结合运载器测试数据的特点,采用ER图及关系模式对通用测试数据库的设计进行了较详细的分析,提出客户/服务器两层体系结构的数据库实现方案。在该系统中,服务器端采用SQL Server 2000,客户端采用C++ Builder5.0开发平台,客户端和服务器端的连接采用ODBC标准。该系统经某型号运载器试验验证,收到了良好的效果。展开更多
Phase diagrams of the RE (rare earth)-Ⅳ-Ⅵ systems are very important for the design of rare earth doped diluted magnetic semiconductors (DMSs), but related information is very limited. In this work, the phase eq...Phase diagrams of the RE (rare earth)-Ⅳ-Ⅵ systems are very important for the design of rare earth doped diluted magnetic semiconductors (DMSs), but related information is very limited. In this work, the phase equilibria of the Er-Sn-Te system in whole compositional range at room temperature were investigated mainly by means of X-ray powder diffraction (XRD) and differential thermal analysis (DTA). The existences of 9 binary compounds, i.e., SnTe, ErTe3, EraTe3, ErTe, ErsSn3, Er11Sn10, ErSn2, Er3Sn7 and Er2Sn5 were confirmed. The phase diagram consisted of 12 single-phase regions, 21 binary phase regions and 10 ternary phase re- gions. The maximum solid solubility of Er in SnTe was determined to be about 7.5 at.%, none of the other phases in this system re- vealed a remarkable homogeneity range at room temperature. No ternary compound was found in this work.展开更多
基金Project supported bythe National Natural Science Foundation of China (50471108)
文摘The isothermal section of the Er-Mn-Nd ternary system at 773 K was investigated mainly by X-ray powder diffraction with the aid of differential thermal analysis. The 773 K isothermal section of the ternary system consists of 9 single-phase regions, 14 two-phase regions, and 6 three-phase regions. At 773 K, the maximum solid solubility of Er in Nd and Nd in Er is about 20%(atom fraction) Er and 26%(atom fraction) Nd, respectively. Er6Mn23 and Nd6Mn23 form a continuous solid solution. The homogeneity range of δ phase extends from about 38% (atom fraction) Er to 43% (atom fraction) Er. No ternary compounds were observed at 773 K in this system.
文摘结合运载器测试数据的特点,采用ER图及关系模式对通用测试数据库的设计进行了较详细的分析,提出客户/服务器两层体系结构的数据库实现方案。在该系统中,服务器端采用SQL Server 2000,客户端采用C++ Builder5.0开发平台,客户端和服务器端的连接采用ODBC标准。该系统经某型号运载器试验验证,收到了良好的效果。
基金supported by the Guangxi Science and Technology Development Project (11107003-1)National Natural Science Foundation of China (50601006, 51161002)
文摘Phase diagrams of the RE (rare earth)-Ⅳ-Ⅵ systems are very important for the design of rare earth doped diluted magnetic semiconductors (DMSs), but related information is very limited. In this work, the phase equilibria of the Er-Sn-Te system in whole compositional range at room temperature were investigated mainly by means of X-ray powder diffraction (XRD) and differential thermal analysis (DTA). The existences of 9 binary compounds, i.e., SnTe, ErTe3, EraTe3, ErTe, ErsSn3, Er11Sn10, ErSn2, Er3Sn7 and Er2Sn5 were confirmed. The phase diagram consisted of 12 single-phase regions, 21 binary phase regions and 10 ternary phase re- gions. The maximum solid solubility of Er in SnTe was determined to be about 7.5 at.%, none of the other phases in this system re- vealed a remarkable homogeneity range at room temperature. No ternary compound was found in this work.