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BBO 晶体的化学腐蚀研究 被引量:1
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作者 洪慧聪 路治平 +2 位作者 赵天德 华素坤 仲维卓 《人工晶体学报》 EI CAS CSCD 1993年第1期42-46,共5页
本文报道了 BBO 晶体在有机溶剂、水和酸碱等腐蚀液中的腐蚀实验结果。测量了晶体在不同腐蚀液和温度下的腐蚀速率、并根据 Arrhenius 公式计算了各腐蚀活化能。BBO 晶体抗有机溶剂腐蚀能力最强,碱和水次之,而酸的腐蚀最为强烈。在同一... 本文报道了 BBO 晶体在有机溶剂、水和酸碱等腐蚀液中的腐蚀实验结果。测量了晶体在不同腐蚀液和温度下的腐蚀速率、并根据 Arrhenius 公式计算了各腐蚀活化能。BBO 晶体抗有机溶剂腐蚀能力最强,碱和水次之,而酸的腐蚀最为强烈。在同一腐蚀剂中,晶体以 Z 面的腐蚀速率最高,而以垂直于 Z 面的柱面腐蚀速率最低。对 BBO 晶体几个主要晶面的腐蚀形貌进行了观察和分析,探讨了晶体的腐蚀机理。 展开更多
关键词 BBO 晶体 腐蚀活化能 硼酸钡
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电镀锌钢板黑变机理的动力学 被引量:9
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作者 李宁 袁芳 +1 位作者 王春生 周德瑞 《中国有色金属学报》 EI CAS CSCD 北大核心 1999年第4期827-832,共6页
为探索铬酸盐钝化膜提高锌镀层耐蚀性的机理和研究其发生黑变的初期腐蚀现象, 对电镀锌钢板黑变的动力学规律进行了研究。以湿热实验中镀锌层表面明度差随时间变化的关系来表征钝化和未钝化试片腐蚀的速度, 发现钝化后的镀锌层的腐蚀... 为探索铬酸盐钝化膜提高锌镀层耐蚀性的机理和研究其发生黑变的初期腐蚀现象, 对电镀锌钢板黑变的动力学规律进行了研究。以湿热实验中镀锌层表面明度差随时间变化的关系来表征钝化和未钝化试片腐蚀的速度, 发现钝化后的镀锌层的腐蚀规律符合Wagner 方程, 未钝化的镀锌层的腐蚀规律符合对数方程, 并求出了相应的腐蚀反应的活化能。钝化使腐蚀反应的活化能提高了一个数量级以上。实验结果表明该腐蚀是由于氧的向内扩散和锌离子的向外扩散, 钝化膜的存在影响了腐蚀的历程。 展开更多
关键词 电镀锌钢板 铬酸盐钝化膜 黑变 腐蚀活化能
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Effects of Hg and Ga on microstructures and electrochemical corrosion behaviors of Mg anode alloys 被引量:1
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作者 张嘉佩 王日初 +1 位作者 冯艳 彭超群 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第12期3039-3045,共7页
The effects of Hg and Ga on the electrochemical corrosion behaviors of the Mg-2%Hg, Mg-2%Ga and Mg-2%Hg-2%Ga (mass fraction) alloys were investigated by measurements of polarization curves, galvanostatic tests and mea... The effects of Hg and Ga on the electrochemical corrosion behaviors of the Mg-2%Hg, Mg-2%Ga and Mg-2%Hg-2%Ga (mass fraction) alloys were investigated by measurements of polarization curves, galvanostatic tests and measurements of electrochemical impedance spectroscopy. Scanning electron microscopy, X-ray diffractometry and energy dispersive spectrometry were employed to characterize the microstructures and the corroded surface of the above alloys. The results demonstrate that the microstructure of the Mg-2%Ga alloy is solid solution and the Mg-2%Hg and Mg-2%Hg-2%Ga alloys have white second-phases at the grain boundaries. The Mg-2%Ga alloy has the worst electrochemical activity and the best corrosion resistance, showing a mean potential of -1.48 V and a corrosion current density of 0.15 mA/cm2. The Mg-2%Hg-2%Ga alloy has the best electrochemical activity and the worst corrosion resistance, showing a mean potential of -1.848 V and a corrosion current density of 2.136 mA/cm2. The activation mechanism of the Mg-Hg-Ga alloy is dissolution-deposition of the Hg and Ga atoms. 展开更多
关键词 Mg anode alloy microstructure electrochemical activity corrosion resistance electrochemical impedance spectroscopy
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Effect of rolling processing on microstructure and electrochemical properties of high active aluminum alloy anode 被引量:3
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作者 梁叔全 张勇 +2 位作者 官迪凯 唐艳 毛志伟 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第6期942-949,共8页
The effect of rolling processing on the microstructure,electrochemical property and anti-corrosion property of Al-Mg-Sn-Bi-Ga-In alloy anode in alkaline solution(80℃,Na2SnO3+5 mol/L NaOH)was analyzed by the chronopot... The effect of rolling processing on the microstructure,electrochemical property and anti-corrosion property of Al-Mg-Sn-Bi-Ga-In alloy anode in alkaline solution(80℃,Na2SnO3+5 mol/L NaOH)was analyzed by the chronopotentiometry (E-T curves),hydrogen collection tests and modern microstructure analysis.The results show that when the rolling temperature is 370℃,the electrochemical activity of Al anode decreases gradually with the increase of pass deformation in rolling,while the anti-corrosion property is improved in the beginning and then declined rapidly.When the pass deformation of rolling is 40%,the Al anode has good electrochemical activity as good as the anti-corrosion property and with the increase of rolling temperature,both electrochemical activity and anti-corrosion property of Al anode increase first and then decrease.When the rolling temperature is 420 ℃,the aluminum alloy anode has the most negative electrode potential of about-1.521 V(vs Hg/HgO)and the lowest hydrogen evolution rate of 0.171 6 mL/(min·cm2).The optimum comprehensive performance of Al alloy anode is obtained. 展开更多
关键词 Al alloy anode MICROSTRUCTURE electrochemical property anti-corrosion property
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