首页> 外文期刊>Archives of Metallurgy and Materials >INFLUENCE OF CHEMICAL COMPOSITION AND PRODUCTION PROCESS PARAMETERS ON THE STRUCTURE AND PROPERTIES OF SILVER BASED COMPOSITES WITH ZnO
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INFLUENCE OF CHEMICAL COMPOSITION AND PRODUCTION PROCESS PARAMETERS ON THE STRUCTURE AND PROPERTIES OF SILVER BASED COMPOSITES WITH ZnO

机译:化学成分及生产工艺参数对ZnO银基复合材料结构与性能的影响

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The paper shows results of the study into influence of chemical composition and consolidation process conditions on changes of physical and electrical properties of silver-based composites used in production of electric contacts. The investigations addressed influence of content of zinc oxide (ZnO) and modifying additions in a form of silver tungstate (Ag_2WO_4) and silver molybdate (Ag_2MoO_4) on changes in density, porosity and electrical conductivity. Density of the produced compacts was established by geometric method. The results of density measurements were used in determination of total porosity of sinters. Also arc erosion was examined to determine applicability of the produced composites for production of electric contacts. The erosion was measured as mass loss of individual materials after specific number of connections. The studies were conducted at current intensity of 10 A and voltage of 500V. The scope of the studies covered also evaluation of kinetics of sintering of the examined composites and determination of the mechanisms of mass transport in the process. Studies into kinetics of sintering were conducted in the air atmosphere at constant temperature of 900° C. Production of the examined composite materials consisted of mechanical synthesis of powders of silver, zinc oxide and silver tungstate and molybdate, and then their consolidation by two-sided pressing and subsequent sintering. In cold pressing various pressures were applied 200, 300 and 400 MPa. Sintering was performed with a partial participation of liquid phase in temperature of 900°C. Also additional two-sided pressing was applied under pressure of 500 MPa and stress-relieving recrystallization annealing was performed as the final operation.
机译:本文显示了化学成分和固结工艺条件对化学成分和固结过程条件影响的结果的研究结果对生产电触点的银基复合材料的物理和电性能变化。该研究涉及氧化锌(ZnO)含量的影响,并在钨酮(Ag_2WO_4)和银钼酸盐(Ag_2Moo_4)的形式上进行修饰添加对密度,孔隙率和电导率的变化。由几何法建立产生的压块的密度。密度测量结果用于测定烧结的总孔隙率。检查电弧侵蚀,以确定所生产的复合材料的适用性用于生产电触点。在特定的连接数量之后,测量侵蚀作为单个材料的质量损失。该研究以电流强度为10 A和500V的电压进行。研究范围还涵盖了检测的复合材料烧结动力学的评估和该过程中的大规模运输机制。进入烧结动力学在空气气氛中在恒定温度下在900℃的恒定温度下进行,所以通过机械合成银,氧化锌和银钨酸盐和钼酸盐的机械合成,然后通过双面固结按下和随后的烧结。在冷压制中,施用200,300和400MPa的各种压力。在900℃温度下液相的部分参与进行烧结。此外,在500MPa的压力下施加额外的双面压制,并进行应力缓解再结晶退火作为最终操作。

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