首页> 外文期刊>Journal of Fusion Energy >Characteristics of X-ray Hot Spots in a 3.5 kJ Plasma Focus Device at Different Pressures of Argon and Air
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Characteristics of X-ray Hot Spots in a 3.5 kJ Plasma Focus Device at Different Pressures of Argon and Air

机译:3.5 kJ等离子聚焦装置在氩气和空气不同压力下的X射线热点特征

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The present study examined the formation of hot spots in the plasma column of a 3.5 kJ Mather-type plasma focus device. Experiments were performed with air and argon as operating gases at 0.2-1.5 mbar of pressures. X-ray source images were obtained using a pinhole camera with dental X-ray film as X-ray detector. The objective was to investigate the effect of the operating conditions and gas type on formation and characteristics of the hot spots. Results showed that when using air in comparison to argon, the total X-ray emission is increased and therefore, the hot spots are covered by this high intensity emission and would be observed less frequently in the image. Using metal filters to attenuate the low-energy X-rays revealed that the most energetic or the most intense radiation was emitted from the hot spots region. The images of the X-ray source obtained using argon at the middle pressures (0.4-0.6 mbar) showed both the plasma column and the photons emitted from the anode surface. A pressure of 0.8-1.5 mbar using argon was most likely to observe the hot spots. For argon gas, the 0.9 mbar was the pressure in which the hot spots were more frequently observed with high reproducibility of location and number. Measurements revealed that the typical size of a hot spot was 10-300 mu m and the distance from the anode surface was 0.5-20 mm.
机译:本研究检查了3.5 kJ Mather型等离子聚焦装置的等离子柱中热点的形成。使用空气和氩气作为工作气体在0.2-1.5 mbar的压力下进行了实验。使用具有牙科X射线胶片作为X射线检测器的针孔照相机获得X射线源图像。目的是研究操作条件和气体类型对热点形成和特征的影响。结果表明,与氩气相比,使用空气时,总的X射线发射增加,因此,热点被这种高强度发射所覆盖,并且在图像中观察不到的频率更高。使用金属滤光片衰减低能X射线显示,热点区域发射的能量最大或强度最大。使用氩气在中压(0.4-0.6 mbar)下获得的X射线源图像既显示了等离子体柱,又显示了从阳极表面发出的光子。使用氩气在0.8-1.5 mbar的压力下最有可能观察到热点。对于氩气,0.9 mbar是压力,在该压力下更频繁地观察到热点,并且位置和数量的再现性很高。测量表明,热点的典型尺寸为10-300μm,并且距阳极表面的距离为0.5-20mm。

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