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首页> 外文期刊>Sodagem & inspecao >Microstructural Development in a TRIP-780 Steel Joined by Friction Stir Welding (FSW): Quantitative Evaluations and Comparisons with EBSD Predictions
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Microstructural Development in a TRIP-780 Steel Joined by Friction Stir Welding (FSW): Quantitative Evaluations and Comparisons with EBSD Predictions

机译:TRIP-780钢通过摩擦搅拌焊(FSW)的微观组织发展:定量评估和与EBSD预测的比较

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The present work describes the effect of FSW on the result microstructure in the stir zone (SZ), thermo-mechanically affected zone (TMAZ), heat affected zone (HAZ) and base metal (BM) of a TRIP-780 steel. X-ray diffraction (XRD), optical microscopy (OM) and EBSD were used for determinations retained austenite (RA) in the SZ, It was found that the amount of RA developed in SZ was relatively large, (approximately 11% to 15%). In addition, recrystallization and the formation of a grain texture were resolved using EBSD. During FSW, the SZ experienced severe plastic deformation which lead to an increase in the temperature and consequently grain recrystallization. Moreover, it was found that the recrystallized grain structure and relatively high martensite levels developed in the SZ lead to a significant drop in the mechanical properties of the steel. In addition, microhardness profiles of the welded regions indicated that the hardness in both the SZ and TMAZ were relatively elevated confirming the development of martensite in these regions. In particular, to evaluate the mechanical strength of the weld, lap shear tensile test was conducted; exhibited the fracture zone in the SZ with shear fracture with uniformly distributed elongation shear dimples.
机译:本工作描述了FSW对TRIP-780钢的搅拌区(SZ),热机械影响区(TMAZ),热影响区(HAZ)和贱金属(BM)的最终组织的影响。 X射线衍射(XRD),光学显微镜(OM)和EBSD用于测定SZ中的残留奥氏体(RA),发现SZ中RA的生成量相对较大(大约11%至15% )。另外,使用EBSD解决了重结晶和晶粒织构的形成。在FSW期间,SZ经历了严重的塑性变形,从而导致温度升高,进而导致晶粒重结晶。此外,发现在SZ中产生的再结晶晶粒结构和较高的马氏体含量会导致钢的机械性能显着下降。另外,焊接区域的显微硬度分布表明,SZ和TMAZ的硬度都相对较高,这证实了马氏体在这些区域的发展。尤其是,为了评估焊缝的机械强度,进行了搭接剪切拉伸试验。表现出深圳南部的断裂带剪切断裂,并具有均匀分布的延伸剪切凹痕。

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