首页> 外文会议>International Conference on TRIP-Aided High Strength Ferrous Alloys, Jun 19-21, 2002, Ghent, Belgium >On the optimisation of the mechanical properties of two aluminium-alloyed multiphase TRIP-assisted steels
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On the optimisation of the mechanical properties of two aluminium-alloyed multiphase TRIP-assisted steels

机译:两种铝合金多相TRIP辅助钢的力学性能优化

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Aluminium-alloyed multiphase TRIP-assisted steels have been recently developed, so as to get rid of the disadvantages related to the high silicon contents classically used so far in TRIP-assisted steels. It has been shown that aluminium has a stronger ferritising effect than silicon and that it is slightly less efficient as far as austenite retention is concerned. A careful selection of the aluminium content and of the processing conditions is thus of primary importance in order to optimise the mechanical properties. The present study aims at determining the optimal heat treatment conditions leading to enhanced mechanical properties for two low aluminium-alloyed grades containing with mass contents of 0.12% C, 1.5% Mn and 0.5% Al or 1.0% Al respectively. The microstructures generated during the heat treatment were assessed using SEM, X-ray diffraction and Moessbauer spectrometry. The mechanical properties were evaluated by uniaxial tensile testing and the strain-hardening behaviour was characterised by means of an incremental strain-hardening exponent. The relations between the observed microstructures and the mechanical properties were discussed and, as a consequence, the importance of a careful control of the isothermal bainitic holding was highlighted.
机译:铝合金多相TRIP辅助钢最近得到了发展,以消除迄今为止传统上在TRIP辅助钢中使用的高硅含量带来的缺点。已经表明,铝具有比硅强的铁素体作用,并且就奥氏体保留而言,其效率略低。因此,精心选择铝含量和加工条件是最重要的,以优化机械性能。本研究旨在确定最佳的热处理条件,以提高质量分数分别为0.12%C,1.5%Mn和0.5%Al或1.0%Al的两种低铝合金牌号的机械性能。使用SEM,X射线衍射和Moessbauer光谱法评估热处理期间产生的微观结构。通过单轴拉伸试验评估机械性能,并通过增加的应变硬化指数来表征应变硬化行为。讨论了观察到的微观结构和力学性能之间的关系,因此,强调了小心控制等温贝氏体保持的重要性。

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