Galvanic corrosion of magnesium alloys in atmospheric environment
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摘要: 研究了AZ91D,AM50,AM60三種鎂合金分別與0235碳鋼、316L不銹鋼、H62黃銅、LY12鋁合金4種材料組成電偶對在青島和武漢大氣暴曬實驗場進行周期分別為3,6,15,20,27個月的大氣腐蝕行為及規律.結果表明,鎂合金作為電偶對的陽極其腐蝕速率在與實驗所用材料偶接后顯著提升.其中,與Q235碳鋼、316L不銹鋼偶接后大氣電偶腐蝕效應最大,而與LY12鋁合金偶接后大氣電偶腐蝕效應最小.青島站鎂合金試樣的大氣電偶腐蝕效應要明顯高于武漢站的試樣.不同鎂合金的大氣電偶腐蝕效應γ之間存在的基本關系為AZ91D最大,AM50最小.Abstract: This paper investigated the galvanic corrosion behavior and laws of AZ91D, AM50 and AM60 cast magnesium alloys coupled with four materials of Q235 carbon steel, H62 brass, 316L stainless steel and LY12 aluminum alloy under atmospheric exposure in Qingdao and Wuhan of China for three, six, fifteen, twenty, twenty-seven months. The results show that the magnesium alloys act as the anode and their corrosion rates obviously increase when coupled with the four materials used in this test. The atmospheric galvanic effects of the magnesium alloys coupled with Q235 carbon steel and 316L stainless steel are larger than those of others, while that of the magnesium alloy/LY12 aluminum alloy couple is the smallest. The atmospheric galvanic effect in Qingdao is obviously higher than in Wuhan. Among the experimental magnesium alloys the maximum atmospheric galvanic effect was found in the test of AZ91D, while AM50 the minimum.
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Key words:
- magnesium alloy /
- atmospheric environment /
- galvanic corrosion /
- galvanic effect
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