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肖晓明, 彭云, 田志凌. 铬、钼对耐候钢熔敷金属耐蚀性能和力学性能的影响[J]. 焊接学报, 2014, 35(6): 44-48.
引用本文: 肖晓明, 彭云, 田志凌. 铬、钼对耐候钢熔敷金属耐蚀性能和力学性能的影响[J]. 焊接学报, 2014, 35(6): 44-48.
XIAO Xiaoming, PENG Yun, TIAN Zhiling. Effect of Cr and Mo contents on corrosion resistance and mechanical properties of weathering steel deposited metal[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2014, 35(6): 44-48.
Citation: XIAO Xiaoming, PENG Yun, TIAN Zhiling. Effect of Cr and Mo contents on corrosion resistance and mechanical properties of weathering steel deposited metal[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2014, 35(6): 44-48.

铬、钼对耐候钢熔敷金属耐蚀性能和力学性能的影响

Effect of Cr and Mo contents on corrosion resistance and mechanical properties of weathering steel deposited metal

  • 摘要: 通过周浸加速腐蚀试验、锈层微观分析、电化学等方法,研究了铬和钼对耐候钢熔敷金属耐蚀性能和力学性能的影响.结果表明,熔敷金属中铬、钼含量增加,其耐蚀性能提高.钼对耐蚀性的提升优于铬.铬、钼分别以Cr2O3,FexCr3-xO4,MnFexCr2-xO4,Mn1-xFexCr2O4,NiFexCr2-xO4和MoO3形式富集于锈层中,提高锈层致密性,抑制阳极溶解,增强锈层对基体的保护作用,从而提高熔敷金属的耐蚀性能.铬、钼含量增加,熔敷金属强度上升,冲击韧性明显下降.同时,熔敷金属中M-A组元和粒状贝氏体含量增加,针状铁素体含量降低.组织差异是造成熔敷金属强度升高、韧性降低的主要原因.

     

    Abstract: The effect of Cr and Mo content on corrosion resistance and mechanical properties of weathering steel deposited metal was investigated by cycle immersion corrosion test, rust layer micro-analysis and electrochemical test. The experimental results indicate that corrosion resistance of deposited metal was improved with the increase of Cr and Mo contents. Mo improved I he corrosion resistance better than Cr. Cr and Mo enriched in the rust layer as Cr2O3, FexCr3-xO4,MnFexCr2-xO4, Mn1-xFex-Cr204, NiFexCr2-x04 and MoO3,which promoted the compactness of rust layer, impeded the anode dissolution and enhanced the protecting performance of rust,so the corrosion resistance of deposited metal was improved. With the increase of Cr and Mo contents, the strength of deposited metal also improved, whereas the impact toughness declined sharply. At the same time, the contents of M-A constituent and granular bainite increased while the acicular ferrite decreased. The change of microstructure was the main reason for increase of strength and deterioration of toughness.

     

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