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THERMALLY ACTIVATED MARTENSITE: ITS RELATIONSHIP TO NON-THERMALLY ACTIVATED (ATHERMAL) MARTENSITE

机译:热活化的马氏体:其与非热活化(滴注)马氏体的关系

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The classification of martensitic displacive transformations into athermal, isothermal or anisothermal is discussed. Athermal does not mean "no temperature dependence" as is often thought, but is best considered to be short for the notion of no thermal activation. Processes with no thermal activation do not depend on time, as there is no need to wait for sufficient statistical fluctuations in some specific order parameter to overcome an activation barrier to initiate the process. Clearly, this kind of process contrasts with those that are thermally activated. In the literature, thermally activated martensites are usually termed isothermal martensites, suggesting a constant temperature. Actually such martensites also typically occur with continuous cooling. The important distinctive feature of these martensites is that they are thermally activated and hence are distinguishable in principle from athermal martensites. A third type of process, anisothermal, has been introduced to account for those transformations which are thought to be thermally activated but which occur on continuous cooling. They may occur so rapidly that they do not appear to have an incubation time, and hence could be mistakenly called an athermal transformation. These designations will be reviewed and discussed in terms of activation energies and kinetic processes of the various martensitic transformations.
机译:讨论了马氏体移位转化进入滴注,等温或引导性的分类。 Athermal并不意味着通常认为“没有温度依赖”,但最好被认为是没有热激活的概念的短暂。没有热激活的过程不依赖于时间,因为没有必要等待某些特定顺序参数中足够的统计波动来克服激活屏障以启动该过程。显然,这种过程与热激活的过程形成鲜明对比。在文献中,热活化的马氏体通常称为等温马氏体,表明恒定温度。实际上,这种马氏体通常也发生连续冷却。这些马氏体的重要独特特征是它们被热激活,因此原则上可区分地球马氏体。已经引入了第三种过程,一种引导的一种方法,以解释那些被认为是热敏的转化,但在连续冷却时发生。它们可能如此迅速地出现,即它们似乎没有孵育时间,因此可以被错误地称为动力转化。将在各种马氏体转化的激活能量和动力学过程方面进行审查和讨论这些名称。

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