炼钢 ›› 2026, Vol. 42 ›› Issue (2): 76-82.

• 产品工艺与质量控制 • 上一篇    下一篇

导致钢板超声波探伤不合的大型钙镁铝酸盐夹杂物表征与成因研究

甄新刚1,陈紫璇2,王  川1,赵和明1,姜  敏2,王新华2   

  1. 1.敬业(营口)中板有限公司,辽宁 营口 115005;
    2.北京科技大学 冶金与生态工程学院,北京 100083
  • 出版日期:2026-04-05 发布日期:2026-03-27

Characterization and formation mechanism of macro calcium magnesium aluminate inclusions in steel plates rejected in ultra sonic inspection

  • Online:2026-04-05 Published:2026-03-27

摘要: 详细表征了导致高品质钢板超声波探伤不合的冶金质量缺陷,分析探讨了大型钙镁铝酸盐类夹杂物的成因。研究结果表明,导致钢板探伤不合的大型钙镁铝酸盐夹杂物有两类:一类在钢板中为毫米尺寸级别、呈密集层状分布的颗粒,导致钢板分层,这些颗粒物有钙镁铝酸盐、镁铝尖晶石、含少量SiO2的钙铝酸盐以及少量CaS;另一类为单个的、尺寸数百微米的条串状钙镁铝酸盐。基于钢板和铸坯对应关系的回溯,发现第一类超大尺寸层状分布的钙镁铝酸盐所在钢板均来自于混浇坯所轧制,所以推测此类毫米级超大型钙镁铝酸盐夹杂物为钢渣卷入钢液形成的大尺寸夹杂物与钢中内生的镁铝尖晶石、CaS、钙镁铝酸盐夹杂物聚合而成的超大型夹杂物,在轧制时破碎为层状、密集分布的颗粒,此类夹杂物可以通过严格控制浇铸时钢包铸余量、准确标记非稳态坯予以减少和避免;第二类钙镁铝酸盐是钢水精炼过程内生夹杂物,其轧制前最大估计尺寸在200~300 μm,由于其化学组成分布在CaO-MgO-Al2O3三元系低熔点区域,在轧制后成为典型的B类条串状夹杂物,此类夹杂物应通过精炼工艺优化予以减少或避免。

关键词: 大型夹杂物, 钙镁铝酸盐, 超声波探伤, 钢板

Abstract: Metallurgical defects initiate rejections in ultra sonic inspection were carefully characterized in present study, with emphasis on the origins of macro-sized calcium magnesia aluminates. It was found that large calcium magnesia aluminates could be categorized into two types. The first type was featured by huge sizes of several millimeters, as a layer of scatter oxide particles of calcium magnesia aluminates, spinel, calcium aluminates with certain amounts of SiO2, and some CaS particles, resulting in steel plate delamination. The second kind of calcium magnesia aluminates were with sizes about several hundred microns, and appeared in rolling direction as string shaped B-type inclusions. Based on the correlated information of rolled plates and as-cast slabs, it was found that rolled plates contained the first kind of calcium magnesia aluminates were casted during the transition of ladles. As a result, it could be reasonably inferred that the first type of calcium magnesia aluminates were exogenous inclusions originated from entrapped teeming ladle slag, which agglomerated with endogenous spinel, CaS and calcium magnesia aluminate inclusions to form a huge inclusion cluster. During hot rolling, the agglomerated huge inclusion clusters were crushed into a layer of densely scatter oxide inclusion particles with sizes of millimeter scale. The first type of inclusions can be reduced and avoided by strictly controlling the ladle residue during casting and accurately marking non steady state slabs.The second type of inclusions should be endogenous ones formed during refining process, which was with estimated maximum sizes about 200-300 μm in as-cast slab and elongated into B-type inclusions in rolled plates because of chemical compositions locating in low melting point region in the ternary system of CaO-MgO-Al2O3. Hence, the latter type of inclusions can be decreased or avoided by refining process optimization. 

Key words: macro inclusion, calcium magnesia aluminate, ultra sonic inspection, steel plate