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Preparation and arc erosion behavior of AgNi10 contact material with different allotropes of carbon addition

机译:Agni10接触材料的制备和电弧侵蚀行为,不同碳添加异滴

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摘要

AgNi10 contact materials adding carbon nanotubes (CNTs), nanographene sheets (GNPs), and graphite(Gr) were fabricated via powder metallurgy method. To investigate the influence of different allotropes of carbon addition on microstructure and properties of AgNi10 contacts, the arc erosion behavior was tested under a DC resistive load of 24V/20A. The results indicate that uniformly dispersed CNTs and GNPs present obvious strengthening effect while Gr leads to strength reduction of AgNi10 contacts. The contacts adding CNTs and GNPs show well-scattered and stable arc. Material transfer from cathode to anode was observed but the mass change is less than that of the contact without addition. The contacts with CNTs and GNPs addition show smooth surface without deep crater on the cathode or sharp tip on the anode. Moreover, no obvious splash of molten Ag and Ni was observed. Anti-welding performance is improved with all the carbon allotropes. The contact added GNPs presents the best arc erosion performance with average arc time as 14.7 ms, average contact resistance as 4.51m Omega, and maximum welding force as 38cN.
机译:通过粉末冶金方法制备了添加碳纳米管(CNT)、纳米石墨烯片(GNP)和石墨(Gr)的AgNi10触头材料。为了研究不同碳添加同素异形体对AgNi10触头微观结构和性能的影响,在24V/20A直流电阻负载下测试了其电弧侵蚀行为。结果表明,均匀分散的CNT和GNP对AgNi10触头有明显的强化作用,而Gr则使其强度降低。添加CNT和GNP的触点显示出良好的分散性和稳定的电弧。观察到材料从阴极转移到阳极,但质量变化小于未添加添加剂的接触。与CNT和GNPs的接触显示出光滑的表面,阴极上没有深坑,阳极上没有尖尖。此外,未观察到明显的熔融银和镍飞溅。所有的碳同素异形体都提高了抗焊接性能。添加触点的GNPs具有最佳的电弧侵蚀性能,平均电弧时间为14.7 ms,平均接触电阻为4.51 mΩ,最大焊接力为38 cn。

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