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首页> 外文期刊>Engineering failure analysis >Effect of repeated weld-repairs on microstructure, texture, impact properties and corrosion properties of AISI 304L stainless steel
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Effect of repeated weld-repairs on microstructure, texture, impact properties and corrosion properties of AISI 304L stainless steel

机译:重复焊接修复对AISI 304L不锈钢的组织,织构,冲击性能和腐蚀性能的影响

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An investigation is performed into the effects of repeated weld-repairs on the microstructural and mechanical properties of AISI 304L stainless steel. In preparing the specimens, the root weld is fabricated using gas tungsten arc welding (GTAW). The weld bead is then ground away, and the weld is repaired using shielded metal arc welding (SMAW). Two different weld-repair specimens are fabricated, namely one specimen repaired just one time (designated as WD-1) and one specimen repaired five times (designated as WD-5).The microstruc-tures of the base metal (BM), WD-1 and WD-5 specimens are investigated using optical microscopy (OM), X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and electron back scattering diffraction (EBSD). The results show that the microstructures of all three specimens comprise a BCC solid solution austenite matrix with interspersed ferrite phrase. The EBSD results show that the number of weld-repairs has no significant effect on the Σ1 boundaries of the fusion zone (FZ). In addition, no significant difference is observed in the texture orientations of the heat affected zone (HAZ) and the base metal (BM) regions of the WD-1 specimen. However, in the WD-5 specimen, the HAZ has a preferred orientation in the (111) plane, whereas the BM has a preferred orientation in the (212) plane. The grain boundaries (GBs) character results show that the low-energy coincident site lattice of the grain boundaries (ΣCSL GBs) are formed predominantly in the HAZs of the two weld-repair specimens. Moreover, the fraction of low angle grain boundaries decreases with an increasing number of weld repairs, the high-energy ΣCSL GBs remained similar to those of the HAZs in the WD-1 and WD-5 specimens. The impact test results show that the number of weld-repairs has no significant effect on the impact strength of the specimens, but affects the fracture characteristics. Finally, the corrosion test results show that the BM and HAZ of the WD-1 and WD-5 specimens exhibit significant corrosion following immersion in a 3.5% NaCl solution. The depth of the corrosion pitting increases with an increasing number of weld-repairs due to the corresponding increase in the amount of short ferrite phase in the austenite matrix.
机译:对重复进行的焊接修复对AISI 304L不锈钢的显微组织和力学性能的影响进行了研究。在准备样品时,使用气体钨极电弧焊(GTAW)制造根部焊缝。然后将焊缝打磨掉,并使用屏蔽金属电弧焊(SMAW)修复焊缝。制作了两个不同的焊接修复试样,即一个试样仅修复了一次(称为WD-1)和一个试样被修复了五次(称为WD-5)。贱金属(BM)的显微组织WD使用光学显微镜(OM),X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM)和电子反向散射衍射(EBSD)研究-1和WD-5样品。结果表明,所有三个试样的微观结构均包含一个散布着铁素体短语的BCC固溶奥氏体基体。 EBSD结果表明,焊缝修复次数对熔合区(FZ)的Σ1边界没有显着影响。此外,在WD-1试样的热影响区(HAZ)和贱金属(BM)区域的织构方向上没有观察到显着差异。但是,在WD-5样品中,HAZ在(111)平面中具有首选方向,而BM在(212)平面中具有首选方向。晶界(GBs)特征结果表明,晶界(ΣCSLGBs)的低能重合位点晶格主要形成在两个焊接修复试样的热影响区中。此外,随着焊接修复次数的增加,低角度晶界的比例降低,高能ΣCSLGBs与WD-1和WD-5试样中的HAZ相似。冲击试验结果表明,焊缝修复次数对试样的冲击强度没有明显影响,但会影响断裂特性。最后,腐蚀测试结果表明,将WD-1和WD-5样品的BM和HAZ浸入3.5%NaCl溶液后会表现出明显的腐蚀。由于奥氏体基体中短铁素体相的数量相应增加,腐蚀点蚀的深度随焊接修复次数的增加而增加。

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