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Zn-Cu及BeCoCu表面钝化处理与防腐蚀性能

Surface Complex Conversion Coating and Corrosion Resistance of Cu-Zn and BeCoCu Alloy

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【作者】 林生岭谢春生王俊德郑奇兵

【Author】 LIN Sheng-ling, XIE Chun-sheng, WANG Jun-de, ZHENG Qi-bing(1. School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210014; 2. East China Shipbuilding Institute, Zhenjiang 212003, China)

【机构】 南京理工大学化工学院华东船舶工业学院华东船舶工业学院 江苏 南京 210014 华东船舶工业学院江苏 镇江 212003江苏 南京 210014江苏 镇江 212003

【摘要】 采用失重法与电化学方法,研究了Cu-Zn及BeCoCu铜合金表面BTA钼酸盐-锰酸盐的化学复合转化膜。首先,在不同的BTA钼酸盐-锰酸盐钝化剂里生成Cu-Zn及BeCoCu转化膜,然后进行阴极和阳极极化曲线测定,得到一系列电化学参数。将成膜的Cu-Zn及BeCoCu浸在人造海水中观察,用失重法分别测试在5%HCl、5%NaOH、10%NaOH溶液中腐蚀速率及缓蚀率。结果表明,此方法处理工艺简单、成膜速度快。Cu-Zn及BeCoCu合金的BTA钼酸盐-锰酸盐的化学复合转化膜提高了耐蚀性能,有效地抑制了Cu-Zn及BeCoCu合金的腐蚀。失重法与电化学方法同时都表明,BeCoCu合金具有更高的耐蚀性。

【Abstract】 The BTA molybdate and manganate conversion coatings for Cu-Zn and BeCoCu copper alloys were in-vestigated by weight-loss and electrochemical methods. First the conversion coatings of Cu-Zn and BeCoCu alloys were produced in different passivants of BTA and molybdate (existing manganate) , and then a series of electrochemical pa-rameters were obtained by cathodic and anodic polarization curves. The corrosion resistance of Cu-Zn and BeCoCu copper alloys with BTA and molybdate and manganate complex coating were studied in artificial seawater, 5%HCl and 5%NaOH and 10%NaOH, respectively. The experimental results showed that the process was simple and rapid in the formation of complex conversion coating, which could prohibit the corrosion of Cu-Zn and BeCoCu alloys efficiently.

【基金】 江苏省教委基金
  • 【文献出处】 材料保护 ,Materials Protection , 编辑部邮箱 ,2003年05期
  • 【分类号】TG174.4
  • 【被引频次】8
  • 【下载频次】171
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