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Influence of Multi-step Cumulative Deformation on Static Recrystallization of Steel 26Cr2Ni4MoV

机译:多步累积变形对钢26Cr2Ni4mov静态再结晶的影响

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Considering the difficulty for the dynamic recrystallization to happen in Steel 26Cr2Ni4MoV, which was used to manufacture low-pressure steam turbine rotors generally, after-forging static recrystallization was studied with the thermo-torsion method. In order to investigate the influence of multi-step cumulative deformation on after-forging static recrystallization of Steel 26Cr2Ni4MoV, the thermo-torsion method was adopted to conduct a constant-temperature four-step torsion test at 900°C. The time gap between each step in the test agreed with that in real production. Results show that the influence of multi-step cumulative deformation on after-forging static recrystallization is almost the same with that of single-step deformation. It means that the nucleation and the growth of after-forging static recrystallization are related mainly to the last deformation and temperature-keeping time. Grain size can be controlled through the last deformation and temperature-keeping time. The findings supply the theoretical foundation for the said-steel controlled forging processes.
机译:考虑到在用于制造低压蒸汽汽轮机转子的钢26Cr2Ni4mov中发生动态再结晶的难度通常,用热扭转方法研究了锻造后锻造后静态再结晶。为了探讨多步累积变形对钢26Cr2Ni4mov后锻造后静态再结晶的影响,采用热扭转方法在900℃下进行恒温四步扭转试验。测试中每个步骤之间的时间差距同意实际生产中的。结果表明,多步累积变形对锻造后静态再结晶的影响几乎与单步变形相同。这意味着果肉和锻造后静态再结晶的生长主要是在最后变形和温度保持时间的相关。可以通过最后变形和温度保持时间来控制粒度。调查结果为上述钢控制锻造工艺提供了理论基础。

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