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Preparation of Silicon Nitride Multilayer Ceramic Radome Material and Optimal Design of the Wall Structure

机译:氮化硅多层陶瓷弧内材料的制备及墙体结构的最优设计

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A study of silicon nitride ceramic radomes, which includes preparation of the material and optimal design of the radome wall structure, is presented in this paper. Multilayer radome wall structure with high dielectric constant skins and a low dielectric constant core layer is used for broadband application. As a candidate material for both the skins and core layer, silicon nitride ceramics of controlled dielectric constant in the range 3.0~7.5 were prepared by adding different content of sintering aids such as magnesia, alumina, silica and zirconium phosphate binder and choosing suitable sintering methods. A computer aided design (CAD) for the wall structure of silicon nitride multilayer ceramic radome based on microwave equivalent network method is carried out according to design requirements. By optimizing the thickness of skins and core layer, the power transmission efficiency of such a multilayer Si3N4 ceramic radome is calculated. The calculated results suggest that when the dielectric constant of skins lies in the range 6~7.5 and core layer in the range 3.5~4, the power transmission efficiency is above 85% with frequency of 2~18 GHz while the thickness of skins is less than 0.03 and the thickness ratio of skins to core layer is less than 1:15.
机译:本文介绍了一种研究氮化硅陶瓷放射线,其包括制备材料的制备和径向壁结构的最佳设计。具有高介电常数皮和低介电常数芯层的多层弧形壁结构用于宽带应用。作为皮肤和芯层的候选材料,通过添加不同含量的烧结助剂如氧化镁,氧化铝,二氧化锆粘合剂,并选择合适的烧结方法,制备3.0〜7.5的控制介电常数的氮化硅陶瓷。 。基于微波等效网络方法的氮化硅多层陶瓷基拉族墙体结构的计算机辅助设计(CAD)根据设计要求进行。通过优化皮肤和芯层的厚度,计算这种多层Si3N4陶瓷基拉麦的动力传递效率。计算结果表明,当3.5〜4范围内的皮肤的介电常数位于3〜7.5和芯层的范围内,电力传输效率高于85%,频率高于2〜18 GHz,而皮肤厚度较小比0.03和皮肤的厚度比小于1:15。

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