轧制工艺对微合金管线钢组织及M/A岛的影响
Effect of rolling processing on the microstructure and M/A islands in a X70 grade pipeline steel
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摘要: 采用热模拟和显微组织分析方法,研究了冷却速率、变形温度、变形量等轧制工艺参数对一种X70级微合金管线钢组织及马氏体/奥氏体(M/A)小岛的影响.结果表明:增大冷速、降低变形温度均可使组织细化,组织中多边形铁素体减少,针状铁素体增多;同时,在不同的控轧条件下,会形成一定的M/A小岛,变形温度对M/A小岛影响不大,而适当提高冷速和增大变形量将减少小岛相对量,并使其细小而弥散分布于基体;合理控制形变参数及冷速可获得较理想的显微组织与M/A小岛的配合,提高材料性能.Abstract: The effects of cooling rate, deformation temperature and reduction on the microstructure and martensite/austenite (M/A) islands in a Nb-V-Ti micro-alloyed steel were studied by Gleeble thermal-mechanical simulation tests and microstructural observations. The results show that an increase in cooling rate and a decrease in deformation temperature can refine the mierostructure, reduce polygonal ferrite and enhance acicular ferrite (AF) in the steel. Under different controlled rolling processes, there is a certain amount of M/A island structure in the matrix, while the effect of deformation temperature on the M/A is small. Appropriately increasing the cooling rate and reduction can reduce the volume fraction of islands and make them be refined and dispersed, so the proper combination of AF and M/A can be obtained by controlling deformation parameters to improve the properties of the steel.