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Transformation induced plasticity in martensitic transformation of ferrous alloys

机译:铁合金马氏体相变中的相变诱发塑性

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摘要

An experimental characterisation of transformation induced plasticity (TRIP) and related phenomena is presented for the martensitic transformation in a 16MND5 steel. Two problems are considered 1. Assessment of the primacy of Magee or Greenwood-Johnson mechanisms: this is achieved through the evolution of TRIP in a repeated cyclic TRIP test which should be reversible for Magee mechanism and cumulative for Greenwood-Johnson mechanism. The second case is observed showing thus that Greenwood-Johnson mechanism is dominant. 2. Coupling of an austenitic prehardening with the TRIP behavior : it is shown that this behavior is strongly influenced by a tensile or compressive prehardening and that this influence cannot be described, as sometimes mentioned, through some kind of kinematic hardening.
机译:给出了16MND5钢中马氏体相变的相变诱发塑性(TRIP)和相关现象的实验表征。考虑两个问题:1.评估Magee或Greenwood-Johnson机制的首要性:这是通过重复循环TRIP测试中TRIP的演变来实现的,对于Magee机制,该循环应该是可逆的,对于Greenwood-Johnson机制是可累积的。因此观察到第二种情况,表明格林伍德-约翰逊机制占主导地位。 2.奥氏体预硬化与TRIP行为的耦合:表明该行为受拉伸或压缩预硬化的强烈影响,并且有时通过某种运动学硬化无法描述这种影响。

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