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熔体过热对AISI 304不锈钢亚快速凝固薄带组织的影响
引用本文:马建超,杨院生,童文辉.熔体过热对AISI 304不锈钢亚快速凝固薄带组织的影响[J].金属学报,2007,43(8):879-882.
作者姓名:马建超  杨院生  童文辉
作者单位:中国科学院金属研究所,沈阳,110016
摘    要:采用水冷铜模薄带铸造方法研究了熔体过热对AISI 304不锈钢亚快速凝固薄带组织的影响.结果表明:AISI 304不锈钢亚快速凝固薄带由外层的胞状奥氏体组织、次外层的柱状铁素体枝晶组织和中心的等轴铁素体枝晶组织组成;随着熔体过热度增加,奥氏体胞晶间距和柱状铁素体二次枝晶间距随之增加,残余铁素体含量亦降低.过热度的增加降低了熔体过冷度和冷却速率,造成薄带凝固组织中枝晶间距的增加和残余铁素体含量的降低.

关 键 词:不锈钢  过热  枝晶间距  残余铁素体  熔体过热  AISI  不锈钢  快速凝固薄带  凝固组织  影响  STEEL  STRIP  AUSTENITIC  MICROSTRUCTURE  MELT  SUPERHEATING  二次枝晶间距  冷却速率  过冷度  铁素体含量  胞晶间距  过热度  组成  中心  枝晶组织  奥氏体
文章编号:0412-1961(2007)08-0879-04
收稿时间:2007-02-12
修稿时间:2007-02-122007-05-15

EFFECT OF SUPERHEATING ON THE SUB-RAPID SOLIDIFIED MICROSTRUCTURE OF AISI 304 AUSTENITIC STAINLESS STEEL STRIP
MA Jianchao,YANG Yuansheng,TONG Wenhui.EFFECT OF SUPERHEATING ON THE SUB-RAPID SOLIDIFIED MICROSTRUCTURE OF AISI 304 AUSTENITIC STAINLESS STEEL STRIP[J].Acta Metallurgica Sinica,2007,43(8):879-882.
Authors:MA Jianchao  YANG Yuansheng  TONG Wenhui
Affiliation:Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016
Abstract:The effect of melt superheating on the sub-rapidly solidified microstructure of AISI 304 austenitic stainless steel strip cast by water-cooled copper mould casting was investigated. The results show that the solidified microstructures from surface to center of the as-cast strip are cellular austenite, columnar ferrite dendrite and equiaxed ferrite dendrite, respectively. With the increase of superheating, both the primary arm spacing of cellular austenite and the secondary arm spacing of ferrite dendrite raise, while the delta ferrite fraction decreases. As the melt superheating raises, the supercooling of meIt falls, then the cooling rate of melt decreases, resulting in the increase of dendritic arm spacings of austenite and delta ferrite. The decrease of cooling rate also accelerates the transformation from delta ferrite to austenite during the subsequent cooling process after solidification, leading to the reduction of residual delta ferrite fraction.
Keywords:stainless steel  superheating  dendritic arm spacing  residual ferrite
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