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Color rendering affected by scandium vapor mixed with argon using wall-stabilized arc

机译:使用壁稳定电弧,受scan蒸气与氩气混合影响的显色性

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The arc lighting to obtain the environment to evacuate, save the life, keep the safety and be comfortable are focus on. The lack of radiation intensity and color rendering is problem because of inappropriate energy balance. This research elucidates the color rendering affected by scandium vapor mixed with argon using wall-stabilized arc. The color rendering, lightness, radiation power and luminous efficacy increases with increasing the current and radius of wall-stabilized arc because of the increment of continuous spectrum emitted from high temperature argon. In addition, they increases with increasing the contamination ratio of scandium vapor using the xy coordinate in chromaticity diagram even if the temperature is low derived from the scandium vapor contamination. This research defines the aim area within 0.5 from the white color point of the xy coordinate in chromaticity diagram. When the wall-stabilized argon arc contaminates the scandium, the mean distance for this aim area becomes small with increasing the current, radius and contamination ratio of scandium. The improvement of color rendering occurs because of the control of balance between the continuous spectrum of argon and line spectrum of scandium with temperature distribution, current and radius of wall-stabilized argon arc. In addition, this appropriate temperature distribution is derived from the arc pinch.
机译:电弧照明是获得环境疏散,挽救生命,保持安全和舒适的重点。由于不适当的能量平衡,缺少辐射强度和显色性是个问题。这项研究阐明了使用壁稳定电弧,scan蒸气与氩气混合对显色性的影响。随着高温稳定电弧的电流和半径的增加,显色性,亮度,辐射功率和发光效率会增加,这是因为高温氩发出的连续光谱增加了。另外,即使由于from蒸气的污染而温度低,使用色度图中的xy坐标的they蒸气的污染率也随着它们的增加而增加。这项研究将色度图中xy坐标的白色点定义在0.5以内的目标区域。当壁稳定的氩弧污染the时,该目标区域的平均距离会随着current的电流,半径和污染比的增加而变小。显色性的改善是由于控制了氩的连续光谱和of的线光谱与温度分布,壁稳定氩弧的电流和半径之间的平衡。另外,这种适当的温度分布是从电弧夹缩得到的。

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