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Influence of Morphology of the Press Powder Particles and Thermal Annealing on the Structure and Microhardness of Palladium Obtained by Solid-Phase Sintering

机译:压粉颗粒的形态和热退火对通过固相烧结获得的钯结构和微硬度的影响

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The article is devoted to the investigation of the structure of pressed palladium-barium cathodes. These cathodes are made from a polycrystalline palladium matrix with inclusions of the particles of the activator phase Pd5Ba. The high efficiency and durability of pressed palladium-barium cathodes is ensured by the formation of an active-emission BaO layer on the working surface. The active metal Ba comes from the volume to the surface by diffusion of atoms on the defects of the crystal structure of the palladium matrix. When comparing the electrical parameters of the cathodes, the matrices of which were made from the same fractions but different batches of palladium powder, a considerable spread of electrical parameters was established. There were also revealed significant differences in the roughness of the cathode working surface. These differences affect the uniformity and stability of the emission current. This indicates the need for a detailed study of the characteristics of the initial palladium powder and their effect on the structure of the sintered material, and, consequently, on the physicomechanical properties of its surface. In this paper, the morphological features of eight batches of palladium powder in the initial state and after the purification annealing were studied by the method of electron microscopy. Significant differences in the form of particles and agglomerates of powder from different batches have been revealed. A metallographic analysis of microsections of the palladium samples prepared by solid-phase sintering was carried out. The influence of the morphological features of the particles of the initial powder on the grain size and the mechanical properties of the sintered compact is determined. Studies have shown that to obtain a compact palladium with reproducible and predictable properties, stability of the morphological characteristics of the original powder is necessary.
机译:本文致力于调查压制钯 - 钡阴极的结构。这些阴极由多晶钯基质制成,具有活化剂相Pd5ba的颗粒的夹杂物。通过在工作表面上形成有源排放BaO层来确保压制钯 - 钡阴极的高效率和耐久性。通过原子扩散在钯基质的晶体结构的缺陷上,活性金属BA来自表面上的体积。当比较阴极的电参数时,其基质由相同的级分制成但不同批钯粉末,建立了相当大的电气参数差异。阴极工作表面的粗糙度也揭示了显着差异。这些差异影响了发射电流的均匀性和稳定性。这表明需要详细研究初始钯粉末的特性及其对烧结材料结构的影响,因此,在其表面的物理机制上。本文采用电子显微镜方法研究了初始状态下八批钯粉末的形态特征,并通过电子显微镜方法研究了纯化退火。已经揭示了来自不同批次的颗粒形式和粉末附聚物形式的显着差异。进行了通过固相烧结制备的钯样品的微观体的金相分析。确定初始粉末颗粒的形态特征对晶粒尺寸和烧结体的力学性能的影响。研究表明,为了获得具有可重复和可预测性质的紧凑型钯,需要原始粉末的形态特征的稳定性。

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