Morawiec Mateusz, Skowronek Adam, Król Mariusz, Grajcar Adam
Department of Engineering Materials and Biomaterials, Silesian University of Technology, 18A Konarskiego Street, 44-100 Gliwice, Poland.
Materials (Basel). 2020 Nov 29;13(23):5443. doi: 10.3390/ma13235443.
This paper aims to analyze the effect of deformation on the phase transformation kinetics of low-carbon structural steel. The steel used for the investigation was subjected to two different dilatometric analyses using a DIL 805A/D device. The first analysis was to determine the phase transformation kinetics without deformation of austenite before cooling. Then, the analysis under deformation conditions was conducted to investigate the deformation effect on the transformation kinetics. Microscopic studies by light microscopy were performed. The essential part of the research was hardness analysis for different cooling rates and the creation of continuous-cooling-transformation (CCT) and deformation continuous-cooling-transformation (DCCT) diagrams. It was found that the deformation of the samples before cooling increases a diffusion rate in the austenite resulting in the corresponding increase of ferritic, pearlitic, and bainitic start temperatures, as well as shifting the austenite transformation product regions to a longer time. The increase of the transformation area and a decrease in grain size are observed for the deformed samples.
本文旨在分析变形对低碳结构钢相变动力学的影响。用于研究的钢材使用DIL 805A/D装置进行了两种不同的膨胀分析。第一次分析是在冷却前确定奥氏体未变形时的相变动力学。然后,进行变形条件下的分析,以研究变形对转变动力学的影响。通过光学显微镜进行了微观研究。该研究的重要部分是对不同冷却速率进行硬度分析,并绘制连续冷却转变(CCT)图和变形连续冷却转变(DCCT)图。结果发现,冷却前样品的变形会提高奥氏体中的扩散速率,导致铁素体、珠光体和贝氏体开始转变温度相应升高,同时使奥氏体转变产物区域向更长时间偏移。对于变形后的样品,观察到转变区域增加且晶粒尺寸减小。