钢厂
高硅钢薄板退火过程中的织构演变
采用传统的轧制和退火工艺制备了0.30mm厚的6.5%(质量分数)Si高硅电工钢薄板,采用X射线衍射技术对退火过程中的再结晶织构进行了研究。冷轧高硅钢薄板700℃退火形成以{111}〈112〉为峰值的γ织构(〈111〉∥ND)和以{001}〈210〉为峰值的{001}织构;而900℃以上温度退火则形成强{001}〈210〉织构。进一步的研究表明是在晶粒长大过程中{001}〈210〉发展成为主要再结晶织构组分。 High silicon steel thin sheets with thickness of 0.3mm were successfully produced by conventional rolling and annealing methods.Recrystallization texture was investigated by means of X-ray diffraction.It is found that recrystallization texture is mainly composed of γ fiber(〈111〉∥ND)with peak at {111}〈112〉 and {001} fiber with peak at {001}〈210〉 after annealing at 700℃,while strong {001}〈210〉 component dominates recrystallization texture after annealing above 900℃.It is during grain growth that {...
CN202110876530.2取向硅钢极薄带的工业连续化生产方法
本发明公开了一种取向硅钢极薄带的工业连续化生产方法,包括异步轧制、脱脂、热处理、急速冷却、涂绝缘层、烘干烧结、卷带收集各工序;其中,异步轧制中使用异步比为1:1.05~1:1.24;脱脂、热处理、急速冷却、涂绝缘层、烘干烧结、卷带收集工序为连续化生产工艺;热处理工序中,第一步为预热,预热温度为500℃~700℃,预热时间4秒~120秒;第二步为相变热处理,相变热处理温度为820℃~920℃,相变加热时间100秒~600秒;急速冷却工序中,钢带30秒内降温到350℃以下。优点在于:实现工业化连续生产取向硅钢极薄带,有效提高产能,生产的取向硅钢极薄带制备高磁感、低铁损等磁性能。

