添加锆对900 MPa低碳贝氏体钢奥氏体晶粒粗化行为及力学性能的影响

Jia Guo , Aimin Guo , Hui Guo , Ying Wang , Jing Li , Xinlai He
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引用次数: 2

摘要

采用新开发的弛豫沉淀控制(RPC)相变工艺,获得了900mpa低碳贝氏体Cu-Ni-Mo-B钢的超细贝氏体组织。在锅饼状奥氏体晶粒中,组织由板条贝氏体、少量异常粒状贝氏体和针状铁素体组成。采用透射电镜研究了碳氮化锆对奥氏体晶粒粗化行为的影响。结果表明:随着冷却速度的增加,板条越窄;在中等冷却速率下,各种贝氏体组织的比例合适;含锆析出相分布均匀,抑制了热影响区奥氏体晶粒的生长。
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Effect of zirconium addition on the austenite grain coarsening behavior and mechanical properties of 900 MPa low carbon bainite steel

The ultra-fine bainitic microstructure of a 900 MPa low carbon bainitic Cu-Ni-Mo-B steel was obtained by a newly developed relaxation precipitation control (RPC) phase transformation processing. In a pan-cake like prior-austenite grain, the microstructure consisted of lath bainite, a little of abnormal granular bainite, and acicular ferrite. The effect of zirconium carbonitrides on the austenite grain coarsening behavior was studied by transmission electron microscopy (TEM). The results show that, the lath is narrower with increasing cooling rate. The ratio of all kinds of bainitic microstructure is proper with the intermediate cooling rate; and Zr-containing precipitates distribute uniformly, which restrains austenite grain growing in heat-affected welding zone.

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