Wang Dong, Li Guanglong, Yin Wei, Yan Ling, Wang Zhenmin, Zhang Peng, Hu Xiaodong, Li Boyong, Zhang Wanshun
School of Materials & Metallurgy, University of Science & Technology Liaoning, Anshan 114051, China.
State Key Laboratory of Metal Material for Marine Equipment & Application, Anshan 114001, China.
Materials (Basel). 2023 Jun 30;16(13):4762. doi: 10.3390/ma16134762.
This study used simulation software and experiments to analyze the microstructure and texture of FH36 ship plate steel at different thicknesses and temperatures. The austenite phase transformed into ferrite phase at 830 °C and MC and MC phases precipitated at 1150 °C and 543 °C, respectively. At room temperature, the microstructure at the surface and 1/4 thickness consisted of polygonal ferrite, acicular ferrite and granular bainite, while the 1/2 thickness had less acicular ferrite and granular bainite. The texture components were mainly {111}<110> and {111}<112> at all thicknesses, but {001}<110> was stronger at 1/2 thickness. The grain size decreased gradually from 1/2 thickness to the surface, and the proportion of high-angle grain boundaries was significantly lower at the surface than at 1/4 and 1/2 thickness.
本研究使用模拟软件和实验,分析了不同厚度和温度下FH36船板钢的微观结构和织构。奥氏体相在830℃时转变为铁素体相,MC相和MC相分别在1150℃和543℃时析出。室温下,表面和1/4厚度处的微观结构由多边形铁素体、针状铁素体和粒状贝氏体组成,而1/2厚度处的针状铁素体和粒状贝氏体较少。所有厚度的织构组分主要为{111}<110>和{111}<112>,但{001}<110>在1/2厚度处更强。晶粒尺寸从1/2厚度到表面逐渐减小,表面处高角度晶界的比例明显低于1/4和1/2厚度处。