娄艳芝, 柳得橹. CSP工艺含钛耐候钢中的纳米磷化物[J]. 工程科学学报, 2010, 32(9): 1163-1168. DOI: 10.13374/j.issn1001-053x.2010.09.015
引用本文: 娄艳芝, 柳得橹. CSP工艺含钛耐候钢中的纳米磷化物[J]. 工程科学学报, 2010, 32(9): 1163-1168. DOI: 10.13374/j.issn1001-053x.2010.09.015
LOU Yan-zhi, LIU De-lu. Nano-phosphides in weathering steels containing Ti by CSP processing[J]. Chinese Journal of Engineering, 2010, 32(9): 1163-1168. DOI: 10.13374/j.issn1001-053x.2010.09.015
Citation: LOU Yan-zhi, LIU De-lu. Nano-phosphides in weathering steels containing Ti by CSP processing[J]. Chinese Journal of Engineering, 2010, 32(9): 1163-1168. DOI: 10.13374/j.issn1001-053x.2010.09.015

CSP工艺含钛耐候钢中的纳米磷化物

Nano-phosphides in weathering steels containing Ti by CSP processing

  • 摘要: 应用透射电镜(TEM)和X射线能谱(EDX)对CSP工艺含钛耐候钢中的细小磷化物进行了研究.对成品钢板和经900℃压缩20%并等温30min的连铸坯分析结果表明:耐候钢中存在MxP型纳米级磷化物,x值为2~3,金属元素M为Fe、Ti及少量Cr或Ni,磷化物的结构为六方晶系,点阵常数a=0.609nm、c=0.351nm;成品钢板中磷化物尺寸多在20nm以下,而经过900℃压缩的连铸坯试样中磷化物的尺寸、形状不尽相同,较大的棒状磷化物长约300nm、宽约50nm,其他粒子在50nm以下,多呈方形.CSP工艺生产线中可能发生磷化物沉淀的阶段是热连轧的最后两个道次直至冷却到400~500℃的过程中;磷化物的析出可提高沉淀强化效果,但同时会使钢中的固溶磷浓度降低.

     

    Abstract: Phosphide precipitates in weathering steels with Ti addition produced by CSP processing were studied by using TEM and X-ray energy dispersive spectroscopy (EDX).The specimens were hot strips and a continuous casting slab.The slab was reheated and compressed by 20% at 900 ℃,followed by isothermal holding for 30 min.The results show that phosphides MxP in nanometer scale exist in the weathering steels.The value x is 2 to 3,and metallic elements M are Fe,Ti and Cr or Ni.The crystalline structure of the phosphides is hexagonal,the lattice parameters a=0.609 nm and c= 0.351 nm.In the hot strips,the size of most phosphide particles is smaller than 20 nm.But in the slab,the phosphides are with varied dimension and shape.The larger phosphide particles are rod-like,about 50 nm in width and 300 nm in length,but the others are smaller than 50 nm and in square shape.The phosphides may precipitate during the processing of the last pass of hot rolling and cooling until 400 to 500 ℃.Phosphide precipitation can result in strengthening the steels,but the phosphor content in solid solution of the steels decreases.

     

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