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DEVICE reduce radar visibility rocket and artillery armament

机译:DEVICE降低雷达能见度,火箭和炮兵装备

摘要

The invention relates to devices for reducing the radar signature samples missiles and artillery. Device for reducing the radar signature samples missiles and artillery designed as chaff straight cutting edge of the tape with 8 mm (1) acting as the conductive elements having a finite strictly specify the electrical resistivity in the range 50-60 ohms, a size of 70 mm × 2 mm × 0.1 mm (2) glued melting at 30 ° to the grid to a cell of 60 mm × 60 mm, running due extremely thin metallized slrya, about 100 nm (3) supported on polietilenterftalatnuyu film by vacuum m agnetronnogo spraying. The incident electromagnetic radiation, due to the presence of finite strictly predetermined electric resistance in the range 50-60 ohms, falling on the sample begins to interact with the metallized layer. The process of interaction of the electric field E with metallized layer (3) having a finite electrical resistance, accompanied by losses that are released as heat in the sample. To reduce the influence of polarization effects, it used a special method of mounting the constituent elements in the sample design that allows a chaotic distribution of conductive elements that in turn provides anisotropic absorbing characteristics. Due optimally selected ratio of geometrical parameters of the constituent elements is achieved with a wide range of wavelengths and the use of a special cutting allows for converting the flat structure in the bulk, which also has a positive effect on the working range with a minimum weight. The technical result of the present utility model is to increase the level of security patterns missiles and artillery radar detection means by the opponent with a small specific gravity material performance properties, as well as allergic reactions exception when handling the device.
机译:本发明涉及用于减少雷达特征样本导弹和大炮的装置。减少雷达特征样本的装置导弹和大炮设计为8毫米(1)胶带的糠壳直切边缘,用作具有有限导电性的元件,严格规定电阻率在50-60欧姆范围内,尺寸为70毫米×2毫米×0.1毫米(2)在30°的温度下粘合到网格上,熔化成60毫米×60毫米的单元,这是由于极薄的金属化胶体(约100 nm(3))通过真空磁致喷技术支撑在polietilenterftalatnuyu膜上。由于存在于50-60欧姆范围内的有限严格预定的电阻,入射的电磁辐射落在样品上开始与金属化层相互作用。电场E与具有有限电阻的金属化层(3)相互作用的过程,伴随着损耗,这些损耗在样品中作为热量释放出来。为了减少极化效应的影响,它使用了一种特殊的方法在样品设计中安装组成元素,该方法允许导电元素的混沌分布,进而提供各向异性的吸收特性。由于在宽范围的波长范围内实现了组成元素的几何参数的最佳选择比率,并且使用特殊的切割方式可以将扁平结构转换为整体,这对最小重量的工作范围也有积极的影响。本实用新型的技术成果是提高了具有较小比重材料性能特性的对手的安全模式导弹和火炮雷达探测装置的水平,以及在处理该装置时的过敏反应异常。

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