首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Interaction of high temperature deuterium plasma streams and fast ion beams with stainless steels in dense plasma focus device
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Interaction of high temperature deuterium plasma streams and fast ion beams with stainless steels in dense plasma focus device

机译:致密等离子体聚焦装置中高温氘等离子体流和快速离子束与不锈钢的相互作用

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摘要

Interaction of deuterium plasma of streams and shock-waves (velocities up to 5 x 10(7) cm s(-1)) and fast ion beams (50-150 keV) generated in a dense plasma focus (DPF) device with low-activated austenitic steel, 25Cr12Mn20W, and ferritic steel, 10Cr9W, specimens positioned in the cathode part of DPF chamber has been investigated. If the power flux density of both types of irradiation is about q = 10(5)-10(7) W cm(-2), then ion implantation into a surface layer of the materials was observed. An increase of this parameter till q = 10(7)-10(8) W cm(-2) results in the so-called 'detachment' effect (screening of the specimen surface by a cold plasma cloud). When the power flux density is increased up to q = 10(9)-10(10) W cm(-2), the evaporated plasma cloud becomes of the same temperature as the plasma of the shock-wave, and melting and evaporation of material from the specimen surface appears to be very strong, thus the so-called 'broken-implantation' takes place. [References: 26]
机译:流和冲击波(速度高达5 x 10(7)cm s(-1))和快速离子束(50-150 keV)的氘等离子体在密集的等离子体聚焦(DPF)设备中产生的低相互作用研究了放置在DPF室阴极部分中的25Cr12Mn20W活性奥氏体钢和10Cr9W的铁素体钢。如果两种照射的功率通量密度约为q = 10(5)-10(7)W cm(-2),则观察到离子注入到材料的表面层中。直到q = 10(7)-10(8)W cm(-2)为止,此参数的增加都会导致所谓的“分离”效应(通过冷等离子体云对样品表面进行屏蔽)。当功率通量密度增加到q = 10(9)-10(10)W cm(-2)时,蒸发的等离子体云的温度与冲击波的等离子体相同,并且熔化和蒸发样品表面的材料似乎非常坚固,因此发生了所谓的“断植入”。 [参考:26]

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