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Microstructural evolution and mechanical properties of friction stir welded 12Cr-ODS steel

机译:摩擦搅拌焊接12Cr-ODS钢的微观结构演化与力学性能

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12Cr oxide dispersion strengthened (ODS) steel was welded by friction stir welding (FSW) method. The weld joint is composed of heat-affected zone (HAZ), advancing side thermo-mechanically affected zone (AS-TMAZ), retreating side thermo-mechanically affected zone (RS-TMAZ) and stir zone (SZ). Electron back scattering diffraction (EBSD) results reveal that dynamic recrystallization occurs in SZ and AS-TMAZ, and the size and orientation of the grains change drastically compared with base mental (BM). Structures transfer from elongated grains in BM towards equiaxed grains in SZ. The dynamic recrystallization process is accompanied by a transition from low angle boundaries (LAB) to high angle boundaries (HAB). In SZ, parts of oxide particles are found to agglomerate together. High compressive stress exists in all the FSW joint region, and two peaks are detected in AS-TMAZ and RS-TMAZ, respectively. Compared with the hardness of BM (295 HV), the hardness of SZ increases obviously, and the highest value is up to 350 HV.
机译:通过摩擦搅拌焊接(FSW)方法焊接12Cr氧化物分散体(ODS)钢。焊接接头由热影响区域(HAZ)组成,推进侧热机械患区(AS-TMAZ),退缩侧热机械受影响的区域(RS-TMAZ)和搅拌区(SZ)。电子背面散射衍射(EBSD)结果表明,动态重结晶在Sz和As-Tmaz中发生,谷物的尺寸和取向与基础心理(BM)进行大幅相比。结构在SZ中从BM中的细长晶粒转移。动态再结晶过程伴随着从低角度边界(实验室)到高角度边界(HAB)的过渡。在Sz中,发现氧化物颗粒的一部分聚集在一起。在所有FSW接合区域中存在高压缩应力,分别在AS-TMAZ和RS-TMAZ中检测到两个峰。与BM(295HV)的硬度相比,Sz的硬度明显增加,最高值高达350HV。

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