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Surface Modification of Thin Rods by Theta-Pinching Metallic Plasmas

机译:θ挤压金属等离子体对细棒的表面改性

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Metallic-ion deposition on the surface of a thin dielectric rod is successfully demonstrated by using a small theta-pinch device. This method needs no application of a negative potential and has few limits on the surface irregularities of the treatment objects. A single-turn coil surrounding a glass tube of 16.6 mm in inner diameter is excited by a capacitor discharge circuit. Nitrogen gas is filled up to 10 Pa and pre-ionized before triggering the capacitor discharge. The plasma is concentrated and expanded repeatedly with the coil current of 15-kA peak and 1.54-$muhboxs$periods. Through the interaction between the expanding plasma and a metalized film placed at the inner wall of the tube, the metallic ions are generated and introduced into the pinching plasma and utilized for deposition. The pinching time of the plasma is around 0.25$muhboxs$obtained from a streak photograph. Polytetrafluoroethylene rods of 3 mm in diameter are placed at the center of the tube and exposed to the pinching plasma. An electron-probe microanalyzer analysis shows that the thickness of a deposited gold is around 10$muhboxm$after 400 shots of the discharges.
机译:通过使用小型theta-pinch装置成功地证明了在细电介质棒表面上的金属离子沉积。该方法不需要施加负电位,并且对治疗对象的表面不规则度几乎没有限制。围绕着一个内径为16.6 mm的玻璃管的单匝线圈由电容器放电电路激励。在触发电容器放电之前,将氮气充至10 Pa并预电离。血浆被浓缩并以15kA峰值线圈电流和1.54muhboxbox $周期的线圈电流反复膨胀。通过膨胀的等离子体与放置在管内壁上的金属化膜之间的相互作用,生成金属离子并将其引入到收缩等离子体中,并用于沉积。从条纹照片中获得的等离子体的捏合时间大约为0.25 muhboxs。将直径为3 mm的聚四氟乙烯棒放置在试管的中央,并暴露于压缩等离子体中。电子探针显微分析仪分析显示,在放电400次后,沉积的金的厚度约为10μmboxm$。

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