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Improving Corrosion Fatigue Performance of AA2219 Friction Stir Welds with Low Plasticity Burnishing

机译:改善AA2219摩擦搅拌焊缝的腐蚀疲劳性能,具有低塑性抛光

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Low Plasticity Burnishing (LPB) has been investigated as a post-weld surface treatment to improve the corrosion fatigue performance of friction stir welded (FSW) AA2219 plate. Welds were fabricated from 9.5 mm thick AA2219-T8751 plate. Residual stress distributions mapped by x-ray diffraction through the thickness of the weld indicate zones of tension parallel to the weld line at the interface of the weld and parent metal on both the advancing and retreating sides of the weld stir zone. Maximum tension ranged from 100 MPa at the surface to 200 MPa at mid-thickness. LPB placed the weld region in high compression on the order of -400 MPa. Fatigue testing was performed in four-point bending at R=0.1 under constant stress. The corrosion fatigue performance after 100 hours in 3.5% salt fog improved from 175 MPa for a milled surface to 225 MPa after LPB processing. LPB provided nearly complete mitigation of the pitting corrosion damage, with comparable fatigue performance regardless of salt fog exposure. Theoretical predictions of the fatigue life improvement from LPB are also shown and compared to the empirical fatigue data. LPB appears to provide a practical weld post-treatment for improved corrosion fatigue performance of aluminum alloy FSW's.
机译:低塑性磨光(LPB)已被研究作为-焊后表面处理,以提高摩擦搅拌的腐蚀疲劳性能焊接(FSW)AA2219板。焊缝进行从9.5毫米厚的AA2219-T8751板制成。通过焊接的厚度用X射线衍射映射残余应力分布表示在对焊缝搅拌区的进退两侧焊缝和母体金属的界面处的焊接线张力平行的区域。最大张力为100MPa范围在表面至200MPa在中间厚度。 LPB放置在焊接区域中的高压缩-400兆帕的数量级上。疲劳试验是在四点在R = 0.1恒定应力下的弯曲进行。在3.5%盐雾100小时后的腐蚀疲劳性能为175兆帕改善了LPB处理后的铣削表面至225兆帕。无论盐雾暴露的LPB提供的点蚀损坏的几乎完全的缓解,与可比的疲劳性能。从LPB疲劳寿命提高理论预测也被示出,并且与经验疲劳数据。 LPB似乎提供一种实用的焊后处理的铝合金FSW的改进的腐蚀疲劳性能。

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