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Effect of heat surface treatment on photoelectric work function of silver-metal alloys

机译:热表面处理对银 - 金属合金光电工作功能的影响

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Contact materials used for electrical breakers are often made with silver alloys. Mechanical and thermodynamical properties as well as electron emission of such complicated alloys present a lack of reliable and accurate experimental data. At present, new types of contactors with longer duration are marketed, but manufacturers do not understand well why this improvement. This paper deals mainly with electron work function (EWF) measurements in UHV conditions. Also, the photoelectric emission from silver-metal (Ag-Me) electrical contacts (Ag-Ni (60/40), Ag-Ni (70/30) and Ag-W (50/50)) has been investigated in the spectral range of 196-256 nm. The effects of thermal surface treatment on EWF of the abovementioned contacts were studied at room temperature and residual gas pressure of 1.4 × 10~(-7) mbar. The EWF of the contact pastille made with silver alloys Ag-Ni and Ag-W varies with surface treatments: cleaning by vacuum outgassing and annealing (long heating time in UHV). By heating alloy contact in ultra high vacuum large variations of EWF have been observed, which result from material component vaporization by sheets. In addition, the influence of arcing on EWF of binary alloys has been investigated. Also, EWF varies with the number of applied arcs. Therefore, after 500 arcs in air, the observed EWF increasing is probably due to progressive inclusion of oxide on alloy surface. Microscopic examination is necessary to get better understandings on EWF of silver alloys, for both virgin and eroded electric contacts. So, surface analysis by SEM and EDS have been performed to produce proofs of these various phenomena.
机译:用于电气断路器的接触材料通常用银合金制成。机械和热力学性能以及这种复杂合金的电子发射缺乏可靠和准确的实验数据。目前,持续时间更长的新型接触器是销售的,但制造商不太了解为什么这种改进。本文主要涉及UHV条件下的电子工作功能(EWF)测量。此外,在光谱中已经研究了银金属(Ag-ME)电触点(Ag-Ni(60/40),Ag-Ni(70/30)和Ag-W(50/50))的光电发射范围为196-256 nm。在1.4×10〜(-7)毫巴的室温和剩余气体压力下,研究了热表面处理对上述触点EWF的影响。用银合金Ag-Ni和Ag-W制成的接触锭的EWF随表面处理而变化:通过真空放气和退火清洁(UHV的长加热时间)。通过加热合金接触,在超高真空中观察到的大型eWF的大变化,这是由薄片的材料成分蒸发导致的。此外,研究了对二元合金EWF对EWF的影响。此外,EWF随着施加弧的数量而变化。因此,在空气中500弧后,观察到的EWF增加可能是由于氧化物在合金表面上的逐渐包含。对于在原始和侵蚀的电触点中,有必要在银合金的EWF上更好地了解微观检查。因此,已经进行了SEM和EDS的表面分析以产生这些各种现象的证据。

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