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A study of electrode temperature lowering in Dy-containing ceramic metal halide lamps: I. the effect of mixtures of Dy, Tl and Na compared with pure Dy

机译:含Dy的陶瓷金属卤化物灯中电极温度降低的研究:I. Dy,Tl和Na的混合物与纯Dy相比的影响

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The reduction in the electrode temperature by the gas phase emitter effect of dysprosium in ceramic metal halide lamps is investigated within special research lamps in dependence on the operating frequency of switched-dc lamp currents. The lamp tubes are made of transparent YAG material. They are filled with a fixed amount of Hg, which produces a buffer gas during lamp operation at a pressure of 2 MPa, with different amounts of DyI_3 and in part with different amounts of NaI plus TlI. The Dy atomic ground state density is measured phase resolved both in the middle of the discharge and in front of the upper electrode by broad band absorption spectroscopy. The Dy ion density in front of the electrode is evaluated from line intensities being measured in absolute units by emission spectroscopy. The electrode tip temperature is determined by a 1λ - 2D pyrometric measuring method. It is found that a high Dy ion density in front of the electrode is correlated with a strong reduction in the electrode tip temperature relating to a pure mercury lamp. At low operating frequencies (f 100 Hz) the Dy ion density and the temperature reduction is high within the cathodic phase and low within the anodic phase, at higher operating frequencies an increased Dy ion density and a reduction in the electrode tip temperature overlaps onto the anodic phase. The Dy ion density is reduced and with it the tip temperature drop by an addition of Na and Tl vapour to the lamp plasma. The effect of Tl and Na is investigated in more detail in a successive paper.
机译:根据开关直流灯电流的工作频率,在特殊的研究灯中研究了ceramic金属在金属卤化物灯中由于气相发射极效应而导致的电极温度降低。灯管由透明的YAG材料制成。它们填充有固定量的Hg,在灯操作过程中,在2 MPa的压力下会产生缓冲气体,其中包含不同量的DyI_3,部分包含不同量的NaI和TlI。 Dy原子的基态密度是通过宽带吸收光谱法在放电中和上电极前相分辨而测得的。根据通过发射光谱法以绝对单位测量的线强度来评估电极前面的Dy离子密度。电极头温度通过1λ-2D高温测量法确定。发现与纯汞灯有关的电极前面的高Dy离子密度与电极头温度的强烈降低有关。在低工作频率(f 100 Hz)下,Dy离子密度和温度降低在阴极相内较高,而在阳极相内部则较低,在较高的工作频率下,Dy离子密度增加且电极头温度的降低重叠在阴极上。阳极相。通过向灯等离子体中添加Na和T1蒸气,降低了Dy离子密度,并由此降低了尖端温度。在后续论文中将更详细地研究Tl和Na的作用。

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