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首页> 外文期刊>Applied Surface Science >Emission efficiency optimization of RE2O3 doped molybdenum thermionic cathode by application of pattern recognition method
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Emission efficiency optimization of RE2O3 doped molybdenum thermionic cathode by application of pattern recognition method

机译:模式识别法优化掺RE2O3的钼热电子阴极的发射效率

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摘要

As an alternative for thoriated tungsten thermionic cathodes, molybdenum doped with either a single rare earth oxide such as La2O3, Y2O3 and Sc2O3 or a mixture thereof has been produced by powder metallurgy. It is shown that carbonization can greatly improve the emission properties (i.e. emission capability and stability) of RE2O3 doped molybdenum due to the formation of a (metallic) rare earth atomic layer on the surface of the cathode by the reduction reaction of molybdenum carbide and rare earth oxide. Among all the carbonized samples, La2O3 and Y2O3 co-doped molybdenum cathode showed the best performance in emission. In addition, computer pattern recognition technique has been used to optimize the composition of the material and of the cathode preparation technique. We derive the equation of the emission efficiency as a function of cathode composition and carbonization degree. Based on the projecting coordinates obtained from the equation, the optimum projection region was identified, which can serve as guide for the composition and carbonization degree design. (c) 2005 Elsevier B.V. All rights reserved.
机译:作为th化钨热电子阴极的替代品,已经通过粉末冶金生产了掺杂有单一稀土氧化物(例如La2O3,Y2O3和Sc2O3或它们的混合物)的钼。结果表明,由于碳化钼和稀有金属的还原反应在阴极表面形成了(金属)稀土原子层,碳化可以大大改善掺RE2O3的钼的发光性能(即发光性能和稳定性)。地球氧化物。在所有碳化样品中,La2O3和Y2O3共掺杂钼阴极表现出最佳的发光性能。另外,计算机模式识别技术已被用来优化材料和阴极制备技术的组成。我们导出了发射效率与阴极组成和碳化程度之间关系的方程。根据方程式得到的投影坐标,确定了最佳投影区域,可作为组成和碳化程度设计的指导。 (c)2005 Elsevier B.V.保留所有权利。

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