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Effect of microstructures on corrosion and erosion of an alloy steel gear pump

机译:微观结构对合金钢齿轮泵腐蚀和腐蚀的影响

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Investigation on an alloy steel gear-pump has been carried out to understand the effect of microstructures on corrosion and erosion behavior of the material. The alloy tool steel gear pump was designed to replace an existing pump made of grey cast iron to increase the service life to 7-8 years from 4-5 years. However, the new pump, used for dispensing hot adhesive polymer at 170°C and 8 bar pressure, was damaged due to pitting corrosion within one year of service. Local galvanic cells were formed between M_(23)C_6 carbides and martensite matrix of steel plate of the pump in presence of sulfide ions sourced from liquid adhesive followed by anodic dissolution of martensitic matrix surrounding the carbides. As a consequence, hard carbide particles were dislodged and facilitated the pump to undergo wear rapidly.
机译:已经进行了合金钢齿轮泵的研究,以了解微观结构对材料腐蚀和腐蚀行为的影响。合金工具钢齿轮泵旨在代替现有的灰铸铁泵,将使用寿命从4-5年提高到7-8年。但是,用于在170°C和8 bar的压力下分配热粘性聚合物的新泵在服役一年内由于点蚀而损坏。在M_(23)C_6碳化物与泵钢板的马氏体之间形成局部原电池,存在液态粘合剂来源的硫化物离子,然后阳极溶解包围碳化物的马氏体。结果,硬质硬质合金颗粒脱落并促进泵快速磨损。

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