Li Muyu, Yao Dan, Li Bin, Yue Suilu, Chen Zhiyong, Ren Erzhou, Wang Ningning, Yang Chong
School of Intelligent Vehicle Engineering, Luoyang Institute of Science and Technology, Luoyang 471000, China.
School of Intelligent Manufacturing, Luoyang Institute of Science and Technology, Luoyang 471000, China.
Materials (Basel). 2025 Jun 17;18(12):2843. doi: 10.3390/ma18122843.
To investigate the effects of deformation parameters on the phase transformation of B1500HS high-strength steel, non-isothermal deformation tests were conducted on a Thermomaster-Z thermal mechanical simulator under different conditions in this study. Qualitative and quantitative investigations were carried out by analyzing the dilatation curves, color metallograph, and hardness data of deformed specimens. The results indicate that deformation can promote the formation of non-martensite. Higher initial deformation temperature and lower strain are beneficial for obtaining more martensite in the deformed high-strength steel and leading to higher martensite transformation temperatures. Meanwhile, the variation of strain rate has relatively small effects on the content and transformation temperature of martensite, and the effects do not show a singular trend.
为研究变形参数对B1500HS高强度钢相变的影响,本研究在Thermomaster-Z热机械模拟器上于不同条件下进行了非等温变形试验。通过分析变形试样的膨胀曲线、彩色金相图和硬度数据进行了定性和定量研究。结果表明,变形可促进非马氏体的形成。较高的初始变形温度和较低的应变量有利于在变形高强度钢中获得更多马氏体,并导致更高的马氏体转变温度。同时,应变速率的变化对马氏体含量和转变温度的影响相对较小,且影响未呈现单一趋势。