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Reverse transformation mechanism of martensite to austenite in a metastable austenitic alloy

机译:亚稳奥氏体合金中马氏体向奥氏体的反向转变机理

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摘要

The reverse transformation of martensite to austenite in a metastable austenitic alloy was investigated during continuous heating followed by isothermal holding. The diffusionless reverse transformation occurred irrespective of heating rate during continuous heating, resulting in lath-shaped austenite with high dislocation density. During isothermal holding, the equiaxed grains are nucleated and grow due to the diffusive reverse transformation. With further holding time, the diffusionlessly formed austenite laths were recovered to be subgrains. These results are summarized by the reverse transformation-temperature-time diagram.
机译:研究了亚稳态奥氏体合金中马氏体向奥氏体的反向转变,过程是在连续加热然后等温保温的过程中进行的。与连续加热时的升温速度无关,发生无扩散的逆相变,从而形成位错密度高的板条状奥氏体。在等温保持过程中,等轴晶粒由于反向扩散扩散而成核并生长。随着保持时间的延长,无扩散形成的奥氏体板条被恢复为亚晶粒。通过逆变换温度-时间图总结了这些结果。

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