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Degradations of Mechanical Properties in Surface Layer and Erosion Resistance of Carbon Steel in Slurries with Different pH and Chemical Compositions

机译:不同pH与化学成分的浆料中表面层表面层的机械性能和碳钢的抗蚀性降低

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Effects of anodic dissolution in corrosive slurries with different chemical compositions and pHs on the in-situ surface mechanical properties and slurry erosion resistance of carbon steel are investigated. The experimental measurements indicate that the materials loss rate due to corrosion-enhanced erosion increases linearly with the logarithm of anodic current density. The in-situ nanoindentation shows that the presence of anodic current on surface reduces the surface hardness. Under the galvanostatic control, the erosion rates in acidic slurries are much higher than those in the neutral and alkaline slurries. The exposure to the acidic solutions can also lead to a larger in-situ surface hardness reduction than those than those observed in neutral and alkaline solutions. In the neutral and alkaline corrosive media, the erosion rates and the in-situ surface hardness degradation are hardly affected by the chemical composition of aqueous media. The agreement in the high-to-low order of the in-situ surface hardness and the erosion wastage under the galvanostatic control suggests the corrosion-induced surface mechanical property degradation may play a role in the mechanism of corrosion-enhanced erosion.
机译:研究了阳极溶解在不同化学组合物中腐蚀性浆料的影响及对原位表面力学性能和碳钢的淤浆腐蚀性的影响。实验测量表明,由于阳极电流密度的对数,由于腐蚀增强的腐蚀引起的材料损失率随着阳极电流密度的对数而增加。原位纳米凸缘表明,表面上的阳极电流的存在降低了表面硬度。在潮汐静脉控制下,酸性浆料中的腐蚀速率远高于中性和碱性浆料中的侵蚀率。暴露于酸性溶液也可以导致比在中性和碱性溶液中观察到的那些更大的原位表面硬度降低。在中性和碱性腐蚀性介质中,侵蚀速率和原位表面硬度降解几乎不受水性介质的化学组成的影响。在潮流控制下,在原位表面硬度和侵蚀浪费中的高低顺序的协议表明,腐蚀诱导的表面机械性能降解可能在腐蚀增强侵蚀机制中起作用。

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