STUDY OF THE INFLUENCE OF INTENSIFYING ADDITIVES ON LOW-TEMPERATURE SYNTHESIS OF SLAVSONITE AND CELZIAN IN THE CREATION OF RADIOTRANSPARENT CERAMIC MATERIALS

G. Lisachuk, R. Kryvobok, A. Zakharov, V. Voloshchuk, L. Lisachuk, Y. Chefranov
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引用次数: 1

Abstract

The studies carried out concern the development of structural radiotransparent ceramic materials based on the four-component system BaO–SrO–Al2O3–SiO2. Due to the widespread use of radar equipment at modern aviation facilities, the development of radiotransparent fairings for them is a rather important and urgent task.The purpose of the fairings is to protect the antenna devices of radar stations from environmental influences during flight. Based on this, the fairings must meet a complex set of requirements for aerodynamic, thermal, radio engineering and mechanical properties. These requirements at supersonic flight speeds of modern objects increase significantly, since the improvement of the aerodynamic shape, the increase in the mechanical strength and thermal stability of the fairings contradicts the interests of radio engineering, leading to a significant deterioration in their radiotransparency and to distortions of antenna directional patterns. The consequence is a decrease in the range of radar stations and serious deterioration in their accuracy characteristics.The aim of the research was to obtain, on the basis of the BaO–SrO–Al2O3–SiO2 system, crystalline phases of slavsonit and celsian at low temperatures and times of synthesis, by introducing sintering intensifiers with fluxing and modifying action.The influence of a number of additives on the intensification of the low-temperature synthesis of slavsonit and celsian is investigated. The positive effect of the eutectic additive of the SnO2–Li2O system on the preparation of a densely sintered ceramic material based on solid solutions of slavsonit and monoclinic celsian is shown. It has been established that, according to its dielectric properties, the obtained ceramic material can be classified as structural radio-transparent materials.
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在放射性透明陶瓷材料的制备中,强化添加剂对低温合成斜长石和斜长石的影响研究
研究了基于BaO-SrO-Al2O3-SiO2四组分体系的放射性透明结构陶瓷材料的研制。由于雷达设备在现代航空设施中的广泛应用,研制无线电透明整流罩是一项相当重要和紧迫的任务。整流罩的目的是保护雷达站的天线设备在飞行过程中不受环境影响。基于此,整流罩必须满足一系列复杂的气动、热、无线电工程和机械性能要求。在现代物体的超音速飞行速度下,这些要求显著增加,因为气动形状的改进、整流罩机械强度和热稳定性的增加与无线电工程的利益相矛盾,导致其无线电透明度的显著恶化和天线方向图的扭曲。其结果是雷达站的范围缩小,其精度特性严重恶化。本研究的目的是在BaO-SrO-Al2O3-SiO2体系的基础上,通过引入具有助熔剂和改性作用的烧结增强剂,在低温和合成次数下获得slavsonit和celsian的结晶相。研究了几种添加剂对强化低温合成斯拉夫尼和塞尔西的影响。研究了SnO2-Li2O体系共晶添加剂对制备基于slavsonit和单斜celsian固溶体的致密烧结陶瓷材料的积极作用。根据其介电性能,所制备的陶瓷材料可归类为结构无线电透明材料。
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