针对激光熔覆高熵合金涂层的成分设计已有较多探究,但激光工艺参数对涂层结构与性能的影响尚缺乏系统研究。采用激光熔覆技术在316L不锈钢基体表面制备Fe Co Ni Cr高熵合金涂层,系统探究激光功率(1.2~2.0 kW)对Fe Co Ni Cr高熵合金涂层...针对激光熔覆高熵合金涂层的成分设计已有较多探究,但激光工艺参数对涂层结构与性能的影响尚缺乏系统研究。采用激光熔覆技术在316L不锈钢基体表面制备Fe Co Ni Cr高熵合金涂层,系统探究激光功率(1.2~2.0 kW)对Fe Co Ni Cr高熵合金涂层的组织结构以及耐腐蚀性能的影响规律。不同激光功率制备的Fe Co Ni Cr涂层均由典型的单一面心立方结构(FCC)组成,但随着激光功率的增大,涂层逐渐出现择优取向。Fe Co Ni Cr涂层呈现典型的双层组织结构特征,底部为柱状晶,顶部为等轴晶,但随着激光功率增加,顶部等轴晶逐渐向柱状晶转变。随着激光功率的增加,Fe Co Ni Cr涂层混合熵值逐渐下降。Fe Co Ni Cr涂层具有优异的耐腐蚀性能,但随激光功率的增加而逐渐减弱。其中,当功率为1.2 kW时,涂层的自腐蚀电流密度最小,自腐蚀电压最大且涂层表面无腐蚀坑,具有最佳的耐腐蚀性能,优于316L基体以及Stellite6和Ni60等常规激光熔覆涂层。通过优化激光功率获得具有良好耐腐蚀性能的激光熔覆Fe Co Ni Cr高熵合金涂层,可对该类涂层的开发、制备和应用提供一定的理论指导和技术支持。展开更多
A systematic interpretation of laser-induced damage in the nanosecond regime is realized with a defect distribution buried inside the redeposited layer arising from a polishing process. Under the 355-nm laser irradiat...A systematic interpretation of laser-induced damage in the nanosecond regime is realized with a defect distribution buried inside the redeposited layer arising from a polishing process. Under the 355-nm laser irradiation, the size dependence of the defect embedded in the fused silica can be illustrated through the thermal conduction model. Considering CeO_2 as the major initiator, the size distribution with the power law model is determined from the damage probability statistics. To verify the accuracy of the size distribution, the ion output scaling with depth for the inclusion element is obtained with the secondary ion mass spectrometer. For CeO_2 particulates in size of the depth interval with ion output satisfied in the negative exponential form, the corresponding density is consistent with that of the identical size in the calculated size distribution. This coincidence implies an alternative method for the density analysis of photoactive imperfections within optical components at the semi-quantitative level based on the laser damage tests.展开更多
The inclusions in conventionally grown KD2PO4(DKDP) crystals are investigated. The inclusions are captured by a light-scattering technique. The sizes are determined by an optical microscope and a transmission electron...The inclusions in conventionally grown KD2PO4(DKDP) crystals are investigated. The inclusions are captured by a light-scattering technique. The sizes are determined by an optical microscope and a transmission electron microscope(TEM), and the compositions are analyzed by time of flight secondary ion mass spectrometry(TOF-SIMS) and an energy dispersive spectrometer(EDS). Two kinds of inclusions are observed in the DKDP crystals: a submicron-scale inclusion and a micron-scale inclusion. The typical submicron-scale inclusions contain growth solution, and their sizes range from tens to hundreds of nanometers, whereas the micron-scale inclusions contain growth solution and the metal element Na, and the sizes are tens of microns. The possible formation mechanisms of the inclusions are discussed, and the influence of the inclusions on laser-induced damage behaviors are analyzed and discussed.展开更多
文摘针对激光熔覆高熵合金涂层的成分设计已有较多探究,但激光工艺参数对涂层结构与性能的影响尚缺乏系统研究。采用激光熔覆技术在316L不锈钢基体表面制备Fe Co Ni Cr高熵合金涂层,系统探究激光功率(1.2~2.0 kW)对Fe Co Ni Cr高熵合金涂层的组织结构以及耐腐蚀性能的影响规律。不同激光功率制备的Fe Co Ni Cr涂层均由典型的单一面心立方结构(FCC)组成,但随着激光功率的增大,涂层逐渐出现择优取向。Fe Co Ni Cr涂层呈现典型的双层组织结构特征,底部为柱状晶,顶部为等轴晶,但随着激光功率增加,顶部等轴晶逐渐向柱状晶转变。随着激光功率的增加,Fe Co Ni Cr涂层混合熵值逐渐下降。Fe Co Ni Cr涂层具有优异的耐腐蚀性能,但随激光功率的增加而逐渐减弱。其中,当功率为1.2 kW时,涂层的自腐蚀电流密度最小,自腐蚀电压最大且涂层表面无腐蚀坑,具有最佳的耐腐蚀性能,优于316L基体以及Stellite6和Ni60等常规激光熔覆涂层。通过优化激光功率获得具有良好耐腐蚀性能的激光熔覆Fe Co Ni Cr高熵合金涂层,可对该类涂层的开发、制备和应用提供一定的理论指导和技术支持。
文摘A systematic interpretation of laser-induced damage in the nanosecond regime is realized with a defect distribution buried inside the redeposited layer arising from a polishing process. Under the 355-nm laser irradiation, the size dependence of the defect embedded in the fused silica can be illustrated through the thermal conduction model. Considering CeO_2 as the major initiator, the size distribution with the power law model is determined from the damage probability statistics. To verify the accuracy of the size distribution, the ion output scaling with depth for the inclusion element is obtained with the secondary ion mass spectrometer. For CeO_2 particulates in size of the depth interval with ion output satisfied in the negative exponential form, the corresponding density is consistent with that of the identical size in the calculated size distribution. This coincidence implies an alternative method for the density analysis of photoactive imperfections within optical components at the semi-quantitative level based on the laser damage tests.
基金supported by the National Natural Science Foundation of China under Grant 61405219
文摘The inclusions in conventionally grown KD2PO4(DKDP) crystals are investigated. The inclusions are captured by a light-scattering technique. The sizes are determined by an optical microscope and a transmission electron microscope(TEM), and the compositions are analyzed by time of flight secondary ion mass spectrometry(TOF-SIMS) and an energy dispersive spectrometer(EDS). Two kinds of inclusions are observed in the DKDP crystals: a submicron-scale inclusion and a micron-scale inclusion. The typical submicron-scale inclusions contain growth solution, and their sizes range from tens to hundreds of nanometers, whereas the micron-scale inclusions contain growth solution and the metal element Na, and the sizes are tens of microns. The possible formation mechanisms of the inclusions are discussed, and the influence of the inclusions on laser-induced damage behaviors are analyzed and discussed.