探讨了 Ti 注入 H13钢时形成 Ti 和 Fe 合金相的规律以及 Ti 注入钢的硬化机理.根据辐射损伤理论给出了离子注入引起的空位和间隙原子产生率微分方程,并导出了平衡态时方程的解.研究了注量、能量和靶温对合金形成的影响.注入后退火的样...探讨了 Ti 注入 H13钢时形成 Ti 和 Fe 合金相的规律以及 Ti 注入钢的硬化机理.根据辐射损伤理论给出了离子注入引起的空位和间隙原子产生率微分方程,并导出了平衡态时方程的解.研究了注量、能量和靶温对合金形成的影响.注入后退火的样品表面硬度可提高40~50%.用 X衍射和透射电子显微镜测量了 Fe_2Ti 和 FeTi 合金相.用维氏硬度计测量了上述诸条件下注入样品的表面硬度,用针盘磨损机测量了样品抗磨损特性.分析了这些合金相对表面硬化和抗磨损影响的机制.展开更多
In-situ observation in high voltage electron microscope(HVEM) was used to investigate transformation from amorphous La(OH)3 to nanophase La2O3. Electron diffraction pattern indicates that the transition temperature fr...In-situ observation in high voltage electron microscope(HVEM) was used to investigate transformation from amorphous La(OH)3 to nanophase La2O3. Electron diffraction pattern indicates that the transition temperature from La(OH)3 to nanophase La2O3 is 400 ℃. Particle sizes for nanophase La2O3 are from 20 to 50 nm.展开更多
hemical co-precipitation method was used to prepare indium tin hydroxide. Indium tin hydroxide has the structure of cubic crystal. The cubic crystal structure transformed to amorphous after heat treatment at 250℃ for...hemical co-precipitation method was used to prepare indium tin hydroxide. Indium tin hydroxide has the structure of cubic crystal. The cubic crystal structure transformed to amorphous after heat treatment at 250℃ for 1 h. When the heat treatment temperature was higher than 280℃, the amorphous transformed to cubic crystal structure. After heat treatment at 600℃ for 1 h, the particle size of indium tin oxide is 8~20 nm. The weight ratio of In∶Sn is near 9∶1. Its granule has spherical shape. The dispersity is good.展开更多
文摘探讨了 Ti 注入 H13钢时形成 Ti 和 Fe 合金相的规律以及 Ti 注入钢的硬化机理.根据辐射损伤理论给出了离子注入引起的空位和间隙原子产生率微分方程,并导出了平衡态时方程的解.研究了注量、能量和靶温对合金形成的影响.注入后退火的样品表面硬度可提高40~50%.用 X衍射和透射电子显微镜测量了 Fe_2Ti 和 FeTi 合金相.用维氏硬度计测量了上述诸条件下注入样品的表面硬度,用针盘磨损机测量了样品抗磨损特性.分析了这些合金相对表面硬化和抗磨损影响的机制.
文摘In-situ observation in high voltage electron microscope(HVEM) was used to investigate transformation from amorphous La(OH)3 to nanophase La2O3. Electron diffraction pattern indicates that the transition temperature from La(OH)3 to nanophase La2O3 is 400 ℃. Particle sizes for nanophase La2O3 are from 20 to 50 nm.
文摘hemical co-precipitation method was used to prepare indium tin hydroxide. Indium tin hydroxide has the structure of cubic crystal. The cubic crystal structure transformed to amorphous after heat treatment at 250℃ for 1 h. When the heat treatment temperature was higher than 280℃, the amorphous transformed to cubic crystal structure. After heat treatment at 600℃ for 1 h, the particle size of indium tin oxide is 8~20 nm. The weight ratio of In∶Sn is near 9∶1. Its granule has spherical shape. The dispersity is good.