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首页> 外文期刊>Defence science journal >Influence of Surface Resistivity and Temperature on Variation with Time of Current Pulses in Air at Optimum Pressure
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Influence of Surface Resistivity and Temperature on Variation with Time of Current Pulses in Air at Optimum Pressure

机译:在最佳压力下,表面电阻率和温度对空气中电流脉冲的时间变化的影响

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摘要

The variation of discharge current pulses with the surface nature of electrodes has been investigated by producing discharge in the intense ionizing zone of two ozonizers (A&B) containing pure, dry air at a pressure of 4 & 10mm of mercury respectively. The course of reaction in the tube A showed that the periodic rise and fall of discharge counts through a series of recurrences whose amplitude varied randomly. During this reaction, steady potential, temperature of the electrolytic bath, counting time and pulse height were kept fixed. The phenomenon obtained for both the tubes is produced within a critical range of conditions. The results have been interpreted on the basis of activated adsorption at a temperature of 90 degree and 100 degree Centigrade and discussed on the theoretical grounds of change of surface resistivity upon the glass walls. Use of different coatings on annular surface in the same system with appropriate levels of electrolytic solution for a definite value of height-pulses and temperature, etc. shows significant variations in the discharge counts.
机译:放电电流脉冲随电极表面性质的变化已经通过在两个臭氧发生器(A& B)的强电离区中产生放电而进行了研究,所述臭氧发生器含有纯净的干燥空气,压力为4& 2。分别为10mm的汞。管A中的反应过程表明,放电的周期性上升和下降通过一系列振幅随机变化的重复计数。在该反应过程中,稳定电位,电解槽温度,计数时间和脉冲高度保持固定。在临界条件范围内都会产生两个管子所产生的现象。在90摄氏度和100摄氏度的温度下基于活化吸附对结果进行了解释,并根据玻璃壁表面电阻率变化的理论基础进行了讨论。在同一系统的环形表面上使用不同的涂层,并在一定的高度脉冲和温度等确定值的情况下,使用适当水平的电解液,会显示出放电次数的显着变化。

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