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AgSnO_2-Bi_2Sn_2O_7触头材料制备及应用 被引量:8
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作者 刘辉 覃向忠 《电工材料》 CAS 2007年第1期15-19,共5页
采用雾化工艺制备含有多种添加元素的AgSnBi合金粉。合金粉氧化后经过扩散处理、压制、烧结、挤压、轧制或拉丝得到AgSnO2_Bi2Sn2O7系列银复合氧化锡材料。丝材加工制作成铆钉触头,在ZWP-1型电性能模拟试验机上与AgNi(10)、AgCdO(12)进... 采用雾化工艺制备含有多种添加元素的AgSnBi合金粉。合金粉氧化后经过扩散处理、压制、烧结、挤压、轧制或拉丝得到AgSnO2_Bi2Sn2O7系列银复合氧化锡材料。丝材加工制作成铆钉触头,在ZWP-1型电性能模拟试验机上与AgNi(10)、AgCdO(12)进行直流、灯负载条件模拟电寿命对比试验。结果表明,银复合氧化锡材料、AgNi(10)、AgCdO(12)的电寿命分别为132358~148153次、15930~17300次、6054~8038次。将银复合氧化锡材料装在商用开关上进行电性能型式试验,常规操作寿命试验和荧光灯负载开关试验后端子的最高温升分别为42.5K和17.1K。 展开更多
关键词 电触头材料 银复合氧化锡 雾化 扩散处理 Bi2Sn2O7 模拟电寿命
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Preparation of AgSnO_2 composite powders by hydrothermal process 被引量:2
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作者 杨天足 杜作娟 +2 位作者 古映莹 邱晓勇 江名喜 《Journal of Central South University of Technology》 EI 2007年第2期176-180,共5页
Silver-tin oxide powders were synthesized by the hydrothermal method with Ag(NH_3)_2^+ solution and Na_2SnO_3 solution as raw materials and Na_2SO_3 as reductant. The precipitation conditions of Na2SnO3 solution and t... Silver-tin oxide powders were synthesized by the hydrothermal method with Ag(NH_3)_2^+ solution and Na_2SnO_3 solution as raw materials and Na_2SO_3 as reductant. The precipitation conditions of Na2SnO3 solution and the reduction conditions of Ag(NH_3)_2^+ were also investigated. The powders prepared were characterized by differential thermal analysis (DTA), X-ray diffraction analysis (XRD), scanning electron microscope (SEM) and energy spectrum analysis. The results show that pH value of the solution is a key parameter in the formation of Sn(OH)_4 precipitate and the reduction reaction of Ag(NH_3)_2^+ can release H+ ions, which results in synchronous precipitation of Sn(OH)_6~2- as Sn(OH)_4. The reduction of Ag(NH_3)_2^+ and precipitation of Na_2SnO_3 occur simultaneously and the coprecipitation of silver and tin oxide is reached by the hydrothermal method. The silver-tin oxide composite powders have mainly flake shape of about 0.3 μm in thickness and there exists homogeneous distribution of tin oxide and silver in the powder synthesized. 展开更多
关键词 silver-tin oxide powder hydrothermal method flake structure coprecipitation
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