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Structural Engineering of Impregnated Dispenser Cathodes

机译:浸渍分配器阴极的结构工程

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摘要

Targeted research efforts focusing on the properties and structure of impregnated dispenser cathodes (IDCs) have been monitored. The data are summarized in terms of scale structural hierarchy in inorganic materials to develop principles for controlling their formation in the design of high-emission and long-life IDCs. The performance of IDCs of different types is modeled using the materials science triad 'chemical composition a dagger" structure a dagger" properties' and the concept of structural hierarchical levels in IDCs. Basic structural levels in IDCs are determined: electronic, nanostructured, mesoscopic, microscopic, and macroscopic. Their structural elements are analyzed: electrons, emitter layer, film coating, matrix and emission material, and cathode structure. It is found out that the electronic level is the key one in the hierarchy of IDC structural levels; its effectiveness depends on the nanocrystalline, mesoscopic, and microscopic levels. The principles of structural engineering are developed for the design of high-emission and long-life IDCs and for the control of their formation at nanostructured and microscopic levels by variation in the chemical composition and structure.
机译:重点关注了浸渍分配器阴极(IDC)的特性和结构的有针对性的研究工作。根据无机材料的尺度结构层次对数据进行了总结,以开发出在高排放和长寿命IDC设计中控制其形成的原理。使用材料科学三合会“化学成分为匕首”,“结构为匕首”特性和IDC中的结构层次级别的概念来模拟不同类型的IDC的性能。确定IDC的基本结构级别:电子,纳米结构,介观,微观和宏观。分析了它们的结构元素:电子,发射极层,薄膜涂层,基质和发射材料以及阴极结构。发现电子级别是IDC结构级别层次结构中的关键之一。其有效性取决于纳米晶,介观和微观水平。开发结构工程学原理是为了设计高排放和长寿命的IDC,并通过改变化学成分和结构来控制它们在纳米结构和微观水平上的形成。

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