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飞机起落架AMS4340M钢在3.5%NaCl溶液中腐蚀电化学行为研究 被引量:1
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作者 何先定 王晓光 徐伟 《腐蚀科学与防护技术》 CAS CSCD 北大核心 2019年第5期508-514,共7页
采用EIS、动电位极化曲线、浸泡腐蚀实验等测试方法研究了飞机起落架AMS4340M钢在3.5%NaCl溶液中的腐蚀行为。AMS4340M钢的显微组织为回火马氏体、残余奥氏体、碳化物。浸泡过程中合金的腐蚀方式主要为均匀腐蚀。XRD测试结果显示,合金... 采用EIS、动电位极化曲线、浸泡腐蚀实验等测试方法研究了飞机起落架AMS4340M钢在3.5%NaCl溶液中的腐蚀行为。AMS4340M钢的显微组织为回火马氏体、残余奥氏体、碳化物。浸泡过程中合金的腐蚀方式主要为均匀腐蚀。XRD测试结果显示,合金表面的腐蚀产物较少,Fe2O3、Fe3O4的衍射峰较弱。电化学结果表明,在3.5%NaCl溶液中,合金钢表现为阳极活性溶解,极化曲线表现出了明显的钝化特征,随着浸泡时间的延长,AMS4340M钢的自腐蚀电位(Ecorr)逐渐增大,最大约为-225 mV,腐蚀电流密度逐渐减小(Icorr),最小为0.004μA·cm^-2,合金的耐蚀性增大,腐蚀速率逐渐减小。AMS4340M钢的阻抗谱在低频区域和高频区域均由一个容抗弧组成,其中,浸泡240 h状态下试样的容抗弧半径最大,总阻抗最大。 展开更多
关键词 ams4340 均匀腐蚀 电化学腐蚀 钝化膜 耐蚀性
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Effect of electroslag remelting and homogenization on hydrogen flaking in AMS-4340 ultra-high-strength steels 被引量:4
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作者 Shivraj Singh Kasana O.P.Pandey 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第5期611-621,共11页
Hydrogen flakes and elemental segregation are the main causes of steel rejection. To eliminate hydrogen flaking, the present study focuses on the manufacture of AMS-4340 ultra-high-strength steel through an alternate ... Hydrogen flakes and elemental segregation are the main causes of steel rejection. To eliminate hydrogen flaking, the present study focuses on the manufacture of AMS-4340 ultra-high-strength steel through an alternate route. AMS-4340 was prepared using three different processing routes. The primary processing route consisted of melting in an electric arc furnace, refining in a ladle refining furnace, and vacuum degassing. After primary processing, the heat processes(D1, D2, and D3) were cast into cylindrical electrodes. For secondary processing, electroslag remelting(ESR) was carried out on the primary heats to obtain four secondary heats: E1, E2, E3, and E4. Homogenization of ingots E1, E2, E3, and E4 was carried out at 1220°C for 14, 12, 12, and 30 h, respectively, followed by an antiflaking treatment at 680°C and air cooling. In addition, the semi-finished ESR ingot E4 was again homogenized at 1220°C for 6–8 h and a second antiflaking treatment was performed at 680°C for 130 h followed by air cooling. The chemical segregation of each heat was monitored through a spectroscopy technique. The least segregation was observed for heat E4. Macrostructure examination revealed the presence of hydrogen flakes in heats E1, E2, and E3, whereas no hydrogen flakes were observed in heat E4. Ultrasonic testing revealed no internal defects in heat E4, whereas internal defects were observed in the other heats. A grain size investigation revealed a finer grain size for E4 compared with those for the other heats. Steel produced in heat E4 also exhibited superior mechanical properties. Therefore, the processing route used for heat E4 can be used to manufacture an AMS-4340 ultra-high-strength steel with superior properties compared with those of AMS-4340 prepared by the other investigated routes. 展开更多
关键词 ams-4340 steel SEGREGATION and HOMOGENIZATION antiflaking treatment ELECTROSLAG REMELTING
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