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The Influence of Mechanical Alloying and Plastic Consolidation on the Resistance to Arc Erosion of the Ag–Re Composite Contact Material

机译:机械合金化和塑料固结对Ag-Re复合材料接触材料电弧腐蚀的影响

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摘要

The article presents the influence of mechanical alloying and plastic consolidation on the resistance to arc erosion of the composite Ag–Re material against the selected contact materials. The following composites were selected for the tests: Ag90Re10, Ag95Re5, Ag99Re1 (bulk chemical composition). Ag–Re materials were made using two methods. In the first, the materials were obtained by mixing powders, pressing, sintering, extrusion, drawing, and die forging, whereas, in the second, the process of mechanical alloying was additionally used. The widely available Ag(SnO2)10 and AgNi10 contact materials were used as reference materials. The reference AgNi10 material was made by powder metallurgy in the process of mixing, pressing, sintering, extrusion, drawing, and die forging, while the Ag(SnO2)10 composite was obtained by spraying AgSniBi alloy with water, and then the powder was pressed, oxidized internally, sintered, extruded into wire, and drawn and die forged. The tests of electric arc resistance were carried out for loads with direct current (DC) and alternating current (AC). For alternating current (I = 60 A, U = 230 V), 15,000 switching cycles were made, while, for constant current 50,000 (I = 10 A, U = 550 V). A positive effect of the mechanical alloying process and the addition of a small amount of rhenium (1% by mass) on the spark erosion properties of the Ag–Re contact material was found. When DC current of 10 A was used, AgRe1 composite was found to be more resistant than commonly used contact materials (AgNi10 and Ag(SnO2)10).
机译:本文介绍了机械合金化和塑料固结对所选接触材料的复合Ag-Re材料的电弧腐蚀的影响。选择以下复合材料进行测试:AG90RE10,AG95RE5,AG99RE1(散装化学成分)。使用两种方法制备AG-RE材料。首先,通过混合粉末,压制,烧结,挤出,拉伸和模具锻造来获得材料,而在第二中,另外使用机械合金化方法。广泛的AG(SnO2)10和Agni10接触材料用作参考材料。通过粉末冶金在混合,压制,烧结,挤出,拉伸和模具锻造过程中通过粉末冶金制备,而通过用水喷洒Agsnibi合金获得Ag(SnO2)10复合材料,然后压制粉末,内部氧化,烧结,挤出成导线,并绘制并模具锻造。对具有直流(DC)和交流(AC)的负载进行电抗电弧电阻的测试。对于交流电流(I = 60a,U = 230V),进行15,000个切换周期,而对于恒定电流50,000(i = 10a,u = 550V)。找到了机械合金化方法的正效应和添加少量铼(1质量%)对Ag-Re接触材料的火花腐蚀性质进行的。当使用10 A的DC电流时,发现ACC1复合材料比常用的接触材料(AgNi10和Ag(SnO2)10)更具抵抗力。

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