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作 者:王泽汉 唐荻[1] 蔡阿云 苏岚[1] 程俊业[1] 黄耀[1] 丁然[1]
机构地区:[1]北京科技大学冶金工程研究院,北京100083 [2]北京首钢冷轧薄板有限公司,北京101304
出 处:《热加工工艺》2014年第24期83-86,共4页Hot Working Technology
基 金:国家自然科学基金资助项目(51271035)
摘 要:对C-Si-Mn系TRIP钢采用等温退火工艺,得到具有TRIP效应贝氏体基高强钢。结果表明,TBF钢的组织主要由无碳化物贝氏体板条束、块状残余奥氏体、板条束间的薄膜状残余奥氏体及少量的回火马氏体组成。在连退过程中,贝氏体等温温度对TBF钢的组织和性能影响显著,当贝氏体等温温度为300℃时,TBF钢具有低屈服强度(789 MPa)、高抗拉强度(1241 MPa)以及良好的伸长率(16.6%)。等温300℃时,屈服强度的降低主要是因为80~190 nm的无碳化物贝氏体板条的生成。经过XRD测定,其残余奥氏体含量为12.04%,残奥含碳量经过测算为1.4%。稳定的块状残余奥氏体和无碳化物贝氏体板条有利于韧性的提高,相反,马氏体应该减少或避免。A newly development C-Si-Mn bearing high strength bainitic sheet steel which was associated with the transformation-induced plasticity (TRIP) of retained austenite obtained by isothermal annealing. The steel mainly consists of carbon-flee baintic ferrite lathe, inter-lath retained anstenite films, stable blocky retained austenite and little tempering martensite. When isothermal holding at 300℃, the tensile strength of "TRIP type bainitesteel" possesses high tensile strength of 12401 MPa, low yield strength of 789 MPa and large total elongation of 16.6%. The decreased yield strength can mainly contribute to the carbon-free baintic ferrite lathe whose width changes from 80 nm to 190 nm, when isothermal temperature is at 300℃. The XRD energyspectrum of the steel at 300℃ isothermal temperature indicates that the volume of retained anstenite is 12.04%, and the carbon content of retained anstenite is 1.4%. The increasing tough depends on the stabler blocky retained austenite and carbon-free baintic lath, whereas, the martensite should be avoided.
分 类 号:TG113.2[金属学及工艺—物理冶金]
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