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首页> 外文期刊>Ironmaking & Steelmaking >Separation behaviour of zinc dross from hot dip galvanising melts of different aluminium concentrations by alternating magnetic field
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Separation behaviour of zinc dross from hot dip galvanising melts of different aluminium concentrations by alternating magnetic field

机译:交流磁场对不同铝浓度的热浸镀锌熔体中锌渣的分离行为

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摘要

Dross in zinc pots is the most important factor that impairs the surface quality of hot dip galvanising automobile steel sheet. Separation behaviour of zinc dross from galvanising melts of different Al concentrations (0·12, 4·5 and 55·0 wt-% by an alternating magnetic field has been investigated in order to reduce the dross defects on steel sheets. The properties of different zinc drosses were investigated by means of EDAX and the quantitative metallographic method and the conductivities were measured by physics property measurements system. The experimental results show that the zinc dross in different hot dip galvanising melts has different morphologies, compositions and structures, and the average particle size of the dross increases with the Al concentration. In the case of extra iron (above the solubility limit) in the zinc melt, zinc dross quantity also increases with the Al concentration. All of the three types of zinc dross particles >5 μm can be successfully separated when the magnetic frequency is 17·5 kHz, effective magnetic flux intensity is 0·05 T, imposed time is 15 s and the cross-section of the ceramic square pipe is 5 × 5 mm.
机译:锌罐中的灰渣是影响热镀锌汽车钢板表面质量的最重要因素。为了减少钢板上的锡渣缺陷,研究了通过交变磁场对锌含量不同的Al浓度(0·12、4·5和55·0 wt%)镀锌熔体的分离行为。用EDAX法对锌渣进行了研究,采用定量金相方法,通过物理性质测量系统对电导率进行了测定,实验结果表明,不同热浸镀锌熔体中的锌渣具有不同的形貌,组成和结构,平均颗粒锡渣的尺寸随铝浓度的增加而增加,在锌熔体中铁含量超过溶解度极限的情况下,锌渣量也随铝浓度的增加而三种> 5μm的锌渣颗粒都能当磁频率为17·5 kHz,有效磁通强度为0·05 T,施加时间为15 s且横截面为陶瓷方管为5×5毫米。

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  • 来源
    《Ironmaking & Steelmaking》 |2009年第4期|316-320|共5页
  • 作者单位

    The State Key Laboratory of Metal Matrix Composites, Shanghai Jiaotong University, Shanghai 200240, China;

    The State Key Laboratory of Metal Matrix Composites, Shanghai Jiaotong University, Shanghai 200240, China;

    The State Key Laboratory of Metal Matrix Composites, Shanghai Jiaotong University, Shanghai 200240, China;

    The State Key Laboratory of Metal Matrix Composites, Shanghai Jiaotong University, Shanghai 200240, China;

    Research and Development Centre of Baosteel, Shanghai 201900, China;

    Research and Development Centre of Baosteel, Shanghai 201900, China;

    Research and Development Centre of Baosteel, Shanghai 201900, China;

    Research and Development Centre of Baosteel, Shanghai 201900, China;

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