Methods to Improve the Reliability of the Electrodes System Blocks of the Gas Discharged Display Panels

S. Kruglov, A. A. Serezhin, A. Trubitsyn, V. Nasedkin, Natalia Ludvikovskay, V. Skripin
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Abstract

Have determined of the main reliability parameters of electrodes system blocks for gas discharge display panels. Identified the main methods to improve the reliability of the electrodes system blocks. Have done experimental investigation of the electrodes adhesion dependence for gas discharge display panels GIP768*576,0.145 and GIP320*256,0.42 from repeated heat treatments at addition into the paste of refractory metal oxide. Have examined the condition and characteristics of the electrodes and the parameters of the gas discharge display panel as a part of display unit Have defined qualitative and quantitative composition of refractory metal oxide and method of making the material into a paste. It is established that the optimal variant of the metal oxide is titanium dioxide when added to the mixture in the ratio of 1.9%. Have determined optimum mode of electrodes heat treatment. The selected low-melting glass composition for the dielectric coating, thermal treatment of the dielectric coating. Definitely the optimal number and thickness of layers of dielectric coatings. The production units of the electrode systems according to the chosen technology ensures no de-lamination of the electrode material from the substrate gas discharge display panel with multiple heat treatment with intermediate application of dielectric coatings.
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提高气体放电显示面板电极系统块可靠性的方法
确定了气体放电显示面板电极系统块的主要可靠性参数。确定了提高电极系统模块可靠性的主要方法。实验研究了加入难熔金属氧化物后反复热处理的气体放电显示面板(GIP768*576,0.145)和GIP320*256,0.42)电极粘附依赖性。考察了作为显示单元组成部分的气体放电显示面板的电极的状态和特性以及参数,确定了难熔金属氧化物的定性和定量组成以及制成膏状材料的方法。确定了以1.9%的比例加入混合物时,金属氧化物的最佳变体是二氧化钛。确定了电极热处理的最佳方式。所选的低熔玻璃组合物用于介质涂层,对介质涂层进行热处理。确定了介质涂层的最佳层数和厚度。根据所选择的技术,电极系统的生产单元确保电极材料不会从基材气体放电显示面板上剥离,并经过多次热处理,中间应用介电涂层。
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