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Phase transformation and mechanical behaviour of thermo-mechanically controlled processed high-strength multiphase steel

机译:热机械控制的高强度多相钢的相变和力学行为

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摘要

A novel low-alloy high-strength steel [Fe-0.20C-1.65Mn-1.40Si-1.50Al-1.30Cu-1.05Ni-1.07Co (wt%)] has been thermo-mechanically processed with a finish rolling temperature of 850 A degrees C, followed by air cooling and water quenching in order to obtain a good combination of strength and ductility. Phase transformations of the above steel at different cooling rates have been studied and continuous cooling transformation (CCT) diagram has been constructed using data, obtained from dilatometric study. The phase field of CCT diagram indicates microstructure changes from a mixture of ferrite and bainite to fully martensite accompanied with the enhancement of hardness with increasing cooling rate. The microstructural investigation at lower cooling rate (a parts per thousand currency sign5 A degrees C/s) suggests the possibility of achieving pearlite-free microstructure by direct air cooling from the austenite region. Directly air-cooled steel has demonstrated primarily ferrite-bainite microstructure, which shows attractive tensile strength (> 1050 MPa) and ductility (> 15 %). On the other hand, directly water-quenched steels reveal predominantly lath martensitic microstructure with high dislocation density which exhibits higher tensile strength (> 1600 MPa) and lower ductility (similar to 12 %). The multiple stages of strain hardening behaviour of the investigated steel under different cooling conditions have been examined with respect to microstructural evolution.
机译:一种新颖的低合金高强度钢[Fe-0.20C-1.65Mn-1.40Si-1.50Al-1.30Cu-1.05Ni-1.07Co(wt%)]已通过精轧温度为850进行了热机械加工。摄氏度,然后进行空气冷却和水淬,以获得强度和延展性的良好组合。研究了上述钢在不同冷却速率下的相变,并使用从膨胀研究获得的数据构建了连续冷却转变(CCT)图。 CCT图的相场表明,从铁素体和贝氏体的混合物到完全马氏体的组织变化,伴随着冷却速率的增加,硬度增加。在较低的冷却速度(千分之五的货币符号5 A摄氏度/秒)下进行的显微组织研究表明,可以通过从奥氏体区域直接进行空气冷却来获得不含珠光体的显微组织。直接空冷的钢主要表现出铁素体-贝氏体的显微组织,该组织显示出有吸引力的拉伸强度(> 1050 MPa)和延展性(> 15%)。另一方面,直接水淬钢显示出主要的板条马氏体显微组织,具有高位错密度,表现出更高的拉伸强度(> 1600 MPa)和更低的延展性(大约12%)。关于微观组织演变,已经研究了在不同冷却条件下被研究钢的多级应变硬化行为。

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