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URANOKSIDNY RADIATOR ionization chamber FISSION

机译:URANOKSIDNY辐射器电离室FISSION

摘要

The claimed utility model relates to a radiator uranoksidnym - coatings based fissile uranium isotope on a metal substrate for ionization chambers dividing the control and protection system (CPS) of nuclear reactors as well as for alpha-radiation sources. Uranoksidny radiator fission ionization chamber which is the oxide coating is U 3 O 8 on the basis of highly enriched uranium with a surface density of 1.0-1.2 mg / cm 2 to 235 U isotope deposited on a metal substrate (electrode) is made as a composite from interleaved nanoscale oxide layers, at least two sizes of 15-20 nm (type A) and 60-80 nm (type B), wherein the device structure appears as a sequence of A-B-A-B ... A-B-A-B. The composite coating from the metal comprises from two to four nanoscale layers of type A, the rest of the functional scope consists of alternating layers of type A and B, the top layer of a radiator of the type B design of the device then looks like sequence A-A-A-B-A -b ... A-B-A-B. The technical result is to increase the durability, vibration resistance and thermal design uranoksidnogo radiator. 2 ZP f ly-3-yl.
机译:要求保护的本实用新型涉及一种辐射器铀金属化合物-在金属基底上的基于裂变铀同位素的涂层,该金属基底用于将核反应堆的控制和保护系统(CPS)分开的电离室以及用于α辐射源。以高浓铀为基础的氧化膜的Uranoskidny辐射器裂变电离室为U 3 O 8 ,表面密度为1.0-1.2 mg / cm 沉积在金属基底(电极)上的2 235 U同位素由交错的纳米级氧化物层制成复合材料,至少两种尺寸为15-20 nm(A型)和60 -80 nm(B型),其中该器件结构显示为ABAB ... ABAB的序列。由金属制成的复合涂层包括2到4个A型纳米级层,其余的功能范围由A和B型交替层组成,设备的B型设计散热器的顶层看起来像序列AAABA -b ... ABAB。技术成果是提高耐用性,抗振性和热设计uranoksidnogo散热器。 2 ZP f ly-3-yl。

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