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The Influence of Lath Block and Prior Austenite Grain (PAG) Size on the Tensile Creep and Fatigue Properties of Novel Maraging Steel

机译:板条块体和先验奥氏体晶粒尺寸对新型马氏体时效钢的拉伸蠕变和疲劳性能的影响

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摘要

The influence of martensitic microstructure and prior austenite grain (PAG) size on the mechanical properties of novel maraging steel was studied. This was achieved by looking at two different martensitic structures with PAG sizes of approximately 40 µm and 80 µm, produced by hot rolling to different reductions. Two ageing heat-treatments were considered: both heat-treatments consisted of austenisation at 960 °C, then aging at 560 °C for 5 h, but while one was rapidly cooled the other was slow cooled and then extended aged at 480 °C for 64 h. It is shown that for the shorter ageing treatment the smaller PAG size resulted in significant improvements in strength (increase of more than 150 MPa), ductility (four times increase), creep life (almost four times increase in creep life) and fatigue life (almost doubled). Whereas, the extended aged sample showed similar changes in the fatigue life, elongation and hardness it displayed yet showed no difference in tensile strength and creep. These results display the complexity of microstructural contributions to mechanical properties in maraging steels.
机译:研究了马氏体组织和奥氏体晶粒尺寸(PAG)对新型马氏体时效钢力学性能的影响。这是通过观察两种不同的马氏体组织来实现的,它们的PAG尺寸分别约为40 µm和80 µm,是通过热轧不同的压下率生产的。考虑了两种时效热处理:两种热处理都包括在960°C下奥氏体化,然后在560°C下进行5 h时效,但是当其中一种快速冷却时,另一种则进行缓慢冷却,然后在480°C下进行时效延长。 64小时结果表明,对于较短的时效处理,较小的PAG尺寸可显着改善强度(增加150 MPa以上),延展性(增加四倍),蠕变寿命(蠕变寿命将近四倍)和疲劳寿命(几乎翻了一番)。而延长的时效样品在疲劳寿命,伸长率和硬度方面显示出相似的变化,而在拉伸强度和蠕变方面却没有显示出差异。这些结果表明,马氏体时效钢的微观结构对机械性能的贡献非常复杂。

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