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操作次数对Ag/ZnO电触头电弧侵蚀行为的影响 被引量:5
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作者 徐国富 黄润章 +2 位作者 元梦 吴琼 吴春萍 《中国有色金属学报》 EI CAS CSCD 北大核心 2021年第5期1285-1298,共14页
通过电弧侵蚀模拟实验、三维轮廓仪(3DOP)和扫描电镜(SEM)等,研究操作次数对Ag/ZnO电触头电弧侵蚀行为的影响。结果表明:不同操作次数下,Ag/ZnO电触头电弧能量概率分布与电弧时间概率分布相似,电弧能量平均值与电弧时间平均值变化趋势... 通过电弧侵蚀模拟实验、三维轮廓仪(3DOP)和扫描电镜(SEM)等,研究操作次数对Ag/ZnO电触头电弧侵蚀行为的影响。结果表明:不同操作次数下,Ag/ZnO电触头电弧能量概率分布与电弧时间概率分布相似,电弧能量平均值与电弧时间平均值变化趋势一致。当操作次数为10000次时,Ag/ZnO电触头的电弧能量、电弧时间、温度变化、质量变化均最大,而电阻率变化最小。随着操作次数的增加,Ag/ZnO电触头表面形貌变化越来越大;相同操作次数下,阳极电触头表面形貌变化比阴极大。在电弧作用下,Ag/ZnO电触头主要发生喷溅侵蚀,并在触头表面观察到热水袋状、甜甜圈状、丝状等不常见典型电弧侵蚀形貌特征。 展开更多
关键词 ag/zno电触头 操作次数 电弧侵蚀
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Production of Ag-ZnO powders by hot mechanochemical processing 被引量:4
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作者 D.GUZMáN C.AGUILAR +5 位作者 P.ROJAS J.M.CRIADO M.J.DIáNEZ R.ESPINOZA A.GUZMáN C.MARTíNEZ 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第2期365-373,共9页
Ag–CdO composites are still one of the most commonly used electrical contact materials in low-voltage applications owing to their excellent electrical and mechanical properties.Nevertheless,considering the restrictio... Ag–CdO composites are still one of the most commonly used electrical contact materials in low-voltage applications owing to their excellent electrical and mechanical properties.Nevertheless,considering the restriction on using Cd due to its toxicity,it is necessary to find alternative materials that can replace these composites.In this study,the synthesis of Ag-ZnO alloys from Ag-Zn solid solutions was investigated by hot mechanochemical processing.The hot mechanochemical processing was conducted in a modified attritor mill at 138℃under flowing O2 at 1200 cm3/min for 3.0 h.The microstructure and phase evolution were investigated using X-ray diffractometry,field emission gun scanning electron microscopy and transmission electron microscopy.The results suggest that it is possible to complete the oxidation of Ag-Zn solid solution by hot mechanochemical processing at a low temperature and short time.This novel synthesis route can produce Ag-ZnO composites with a homogeneous distribution of nanoscale ZnO precipitates,which is impossible to achieve using the conventional material processing methods.Considering the fact that the fundamental approach to improving electric contact material performance resides in obtaining uniform dispersion of the second-phase in the Ag matrix,this new processing route could open the possibility for Ag-ZnO composites to replace non-environmentally friendly Ag-CdO. 展开更多
关键词 ag-zno NANOCOMPOSITE electrical contact material powder synthesis MILLING
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