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Effects of Erosion Angle on Erosion Properties of Fe-B Alloy in Flowing Liquid Zinc

机译:冲蚀角度对流动锌液中Fe-B合金冲蚀性能的影响

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摘要

The effect of erosion angle on erosion behavior of the as-cast Fe-B alloy in flowing liquid zinc was investigated. The results show that the erosion rate of Fe-B alloy decreases linearly with increasing erosion angle. The erosion resistance of Fe-B alloy is better than that of 316L stainless steel, which is attributed to the favorable barrier effect of net-like Fe2B that resists erosion by flowing liquid zinc. Meanwhile, the ductile matrix can provide support in preventing borides from spalling and borides cause barrier effect on flowing liquid zinc during liquid zinc erosion, which shows a synergistic erosion-corrosion behavior between the matrix and borides. Moreover, an increase in erosion angle can cause a decrease in the removal effect of the flowing liquid zinc scouring component on the erosion compounds. Therefore, the quantity of erosion compounds increases at the erosion interface, weakening the mass transfer process and decreasing the erosion rate of the Fe-B alloy.
机译:研究了腐蚀角对铸态Fe-B合金在液态锌中的腐蚀行为的影响。结果表明,Fe-B合金的腐蚀速率随腐蚀角的增加而线性减小。 Fe-B合金的耐蚀性优于316L不锈钢,这归因于网状Fe2B的良好阻隔作用,它能抵抗液态锌的流动而产生腐蚀。同时,可延展的基体可为防止硼化物剥落和硼化物在液锌腐蚀过程中对液锌的流动产生阻挡作用提供支持,这表明基体与硼化物之间具有协同的腐蚀腐蚀行为。此外,腐蚀角的增加会导致流动的液态锌精练组分对腐蚀化合物的去除效果降低。因此,腐蚀化合物的数量在腐蚀界面处增加,从而削弱了传质过程并降低了Fe-B合金的腐蚀速率。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2015年第5期|1900-1907|共8页
  • 作者单位

    State Key Laboratory for Mechanical Behavior of Materials School of Materials Science and Engineering Xi’an Jiaotong University">(1);

    State Key Laboratory for Mechanical Behavior of Materials School of Materials Science and Engineering Xi’an Jiaotong University">(1);

    State Key Laboratory for Mechanical Behavior of Materials School of Materials Science and Engineering Xi’an Jiaotong University">(1);

    MOE Key Laboratory of Thermo-Fluid Science and Engineering School of Energy and Power Engineering Xi’an Jiaotong University">(2);

    Research Institute of Advanced Materials Processing Technology School of Materials Science and Engineering Beijing University of Technology">(3);

    State Key Laboratory for Mechanical Behavior of Materials School of Materials Science and Engineering Xi’an Jiaotong University">(1);

    State Key Laboratory for Mechanical Behavior of Materials School of Materials Science and Engineering Xi’an Jiaotong University">(1);

    State Key Laboratory for Mechanical Behavior of Materials School of Materials Science and Engineering Xi’an Jiaotong University">(1);

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