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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >FEM simulations of a multi stage forming process on Sandvik maraging steel 1RK91 describing the stress assisted and the strain induced martensite transformation
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FEM simulations of a multi stage forming process on Sandvik maraging steel 1RK91 describing the stress assisted and the strain induced martensite transformation

机译:山特维克马氏体时效钢1RK91的多阶段成形过程的有限元模拟,描述了应力辅助和应变诱发的马氏体转变

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摘要

Sandvik steel 1RK91 combines good corrosion resistance with high strength. The steel has good deformability in austenitic conditions. This material belongs to the group of metastable austenites, so during deformation a strain-induced transses. Depending on the heat treatment, this stress-assisted transformation continues as a result of internal stresses. Depending on the heat treatment, this stress-assisted transformation is more or less autocatalytic. Both transformations are stress-state and temperature dependent. This article presents a constitutive model for this steel, based on the macroscopic material behaviour measured by inductive measurements. Both the stress-assisted and the strain- induced transformation to martensite are incorporated in this model. Path-dependent work hardening is also taken into account. The model is implemented in the commercial FEM code MARC for doing simulations. In the simulations the tools are treated as rigid bodies, friction is taken into account because it influences the stress state during metal forming. The material properties after a calculation step are mapped to the next step to incorporate the cumulative effect of the transformation and work hardening during the different steps. A multi-stage metal-forming process is simulated. The process consists of different forming steps with intervals between them to simulate the waiting time between the different metal-forming steps. Results of the transformation behaviour are presented together with the shape of the product during and after metal forming. Finally, this article shows the results of the calculation in which the material transforms autocatalytic, as a result of a specific heat treatment.
机译:山特维克钢1RK91兼具良好的耐腐蚀性和高强度。该钢在奥氏体条件下具有良好的可变形性。这种材料属于亚稳态奥氏体,因此在变形过程中会产生应变诱导的转变。取决于热处理,这种应力辅助的转变由于内部应力而继续。取决于热处理,这种应力辅助的转化或多或少是自催化的。两种转换都与应力状态和温度有关。本文基于通过感应测量测量的宏观材料性能,提出了这种钢的本构模型。应力辅助和应变诱导的马氏体相变均纳入该模型。还考虑了与路径有关的工作强化。该模型在商业FEM代码MARC中实现,用于进行仿真。在模拟中,工具被视为刚性体,因此考虑了摩擦,因为它会影响金属成型过程中的应力状态。计算步骤后的材料属性将映射到下一步骤,以合并变换的累积效果和不同步骤中的加工硬化。模拟了多阶段金属成形过程。该过程由不同的成型步骤组成,它们之间有间隔,以模拟不同金属成型步骤之间的等待时间。在金属成型过程中和之后,均会提供相变行为的结果以及产品的形状。最后,本文显示了计算结果,其中由于特定的热处理,材料转化为自催化。

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