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Effect of moisture content and compaction on the corrosion of mild steel buried in clay soils

机译:水分含量的影响和压实对粘土土壤埋藏的温和钢腐蚀

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The corrosion of steels in clay soils is of interest for buried steel infrastructure. To obtain better information about the early corrosion effects, mild steel coupons were exposed for 3, 6 and 13 months in finely graded clay soil at different moisture contents and with different degrees of compression to simulate compaction. It was found that the maximum corrosion mass loss and pit depths occurred at a soil moisture content of 17-18 wt-% for all exposures and levels of compaction, corresponding to around 0.65 degree of saturation. These values are broadly consistent with earlier findings for non-clay soils. For exposures of 3 months corrosion was predominantly localised but subsequently became more uniform. This was shown to be consistent with good compaction of the soil against the steel surface. Poorly compacted lumpy clays, however, showed larger areas of localised corrosion and relatively greater corrosion mass loss and deeper pitting.
机译:粘土土壤中钢的腐蚀对埋藏钢基础设施感兴趣。 为了获得有关早期腐蚀效应的更好信息,在不同的水分含量的细化粘土土壤中暴露3,6和13个月的温和钢优惠券,并具有不同程度的压缩以模拟压缩。 发现所有暴露和压实水平的土壤水分含量为17-18重量%的最大腐蚀质量损失和坑深度,对应于约0.65度饱和度。 这些值与非粘土土壤的早期发现广泛一致。 对于3个月的曝光,腐蚀主要是局部的,但随后变得更加均匀。 这显示出与土壤抵抗钢表面的良好压实一致。 然而,压实良好的块状粘土显示出较大的局部腐蚀区域和相对较大的腐蚀质量损失和更深的蚀点。

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