中国有色金属学报(英文版)
中國有色金屬學報(英文版)
중국유색금속학보(영문판)
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA
2014年
3期
770-776
,共7页
李慧%冯运莉%宋孟%梁精龙%苍大强
李慧%馮運莉%宋孟%樑精龍%蒼大彊
리혜%풍운리%송맹%량정룡%창대강
低温取向硅钢%常化冷却工艺%组织%析出相%磁性能
低溫取嚮硅鋼%常化冷卻工藝%組織%析齣相%磁性能
저온취향규강%상화냉각공예%조직%석출상%자성능
low temperature grain-oriented silicon steel%normalizing cooling process%microstructure%precipitate%magnetic property
利用OM、TEM与EDS技术,对Fe-3.2%Si低温取向硅钢热轧板进行不同常化冷却工艺处理后的显微组织、析出相及最终产品的磁性能进行分析,并与热轧板的组织和析出相进行对比。结果表明,常化板较热轧板的表层组织均匀,基体中再结晶比例增加,带状组织变窄;常化板中析出物的数量明显比热轧板的多,析出物主要有AlN、MnS及复合析出的(Cu,Mn)S等。在常化温度1120℃、保温3 min的条件下,采用二段式冷却较空冷、淬沸水、淬常温水的冷却工艺,常化板表层显微组织更均匀,沿板厚方向的显微组织的不均匀性显著,取向硅钢的磁性能最高;常化后采用二段式冷却工艺析出的细小析出物数量最多,且弥散分布在基体中,抑制剂的抑制效果最好,对成品获得高磁性最有利。
利用OM、TEM與EDS技術,對Fe-3.2%Si低溫取嚮硅鋼熱軋闆進行不同常化冷卻工藝處理後的顯微組織、析齣相及最終產品的磁性能進行分析,併與熱軋闆的組織和析齣相進行對比。結果錶明,常化闆較熱軋闆的錶層組織均勻,基體中再結晶比例增加,帶狀組織變窄;常化闆中析齣物的數量明顯比熱軋闆的多,析齣物主要有AlN、MnS及複閤析齣的(Cu,Mn)S等。在常化溫度1120℃、保溫3 min的條件下,採用二段式冷卻較空冷、淬沸水、淬常溫水的冷卻工藝,常化闆錶層顯微組織更均勻,沿闆厚方嚮的顯微組織的不均勻性顯著,取嚮硅鋼的磁性能最高;常化後採用二段式冷卻工藝析齣的細小析齣物數量最多,且瀰散分佈在基體中,抑製劑的抑製效果最好,對成品穫得高磁性最有利。
이용OM、TEM여EDS기술,대Fe-3.2%Si저온취향규강열알판진행불동상화냉각공예처리후적현미조직、석출상급최종산품적자성능진행분석,병여열알판적조직화석출상진행대비。결과표명,상화판교열알판적표층조직균균,기체중재결정비례증가,대상조직변착;상화판중석출물적수량명현비열알판적다,석출물주요유AlN、MnS급복합석출적(Cu,Mn)S등。재상화온도1120℃、보온3 min적조건하,채용이단식냉각교공랭、쉬비수、쉬상온수적냉각공예,상화판표층현미조직경균균,연판후방향적현미조직적불균균성현저,취향규강적자성능최고;상화후채용이단식냉각공예석출적세소석출물수량최다,차미산분포재기체중,억제제적억제효과최호,대성품획득고자성최유리。
Microstructure, precipitate and magnetic characteristic of final products with different normalizing cooling processes for Fe-3.2%Si low-temperature hot-rolled grain-oriented silicon steel were analyzed and compared with the hot-rolled plate by optical microscopy (OM), transmission electron microscopy (TEM), and energy dispersive spectrometry (EDS). The results show that, the surface microstructure is uniform, the proportion of recrystallization in matrix increases, and the banding textures are narrowed;the precipitates, whose quantity in normalized plate is more than that in hot-rolled plate greatly, are mainly AlN, MnS, composite precipitates (Cu,Mn)S and so on. Normalizing technology with a temperature of 1120 °C, holding for 3 min, and a two-stage cooling is a most advantaged method to obtain oriented silicon steel with sharper Goss texture and higher magnetic properties, owing to the uniform surface microstructures and the obvious inhomogeneity of microstructures along the thickness. The normalizing technology with the two-stage cooling is the optimum process, which can generate more fine precipitates dispersed over the matrix, and be beneficial for finished products to get higher magnetic properties.