首页> 外文期刊>Metallurgical and Materials Transactions A >Stress Corrosion Cracking Behavior of Multipass TIG-Welded AA2219 Aluminum Alloy in 3.5 wt pct NaCl Solution
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Stress Corrosion Cracking Behavior of Multipass TIG-Welded AA2219 Aluminum Alloy in 3.5 wt pct NaCl Solution

机译:TIG焊接AA2219铝合金在3.5 wt%NaCl溶液中的应力腐蚀开裂行为

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摘要

The stress corrosion cracking (SCC) behavior of the AA2219 aluminum alloy in the single-pass (SP) and multipass (MP) welded conditions was examined and compared with that of the base metal (BM) in 3.5 wt pct NaCl solution using a slow-strain-rate technique (SSRT). The reduction in ductility was used as a parameter to evaluate the SCC susceptibility of both the BM and welded joints. The results showed that the ductility ratio (ε NaCl/(ε air) was 0.97 and 0.96, respectively, for the BM and MP welded joint, and the same was marginally reduced to 0.9 for the SP welded joint. The fractographic examination of the failed samples revealed a typical ductile cracking morphology for all the base and welded joints, indicating the good environmental cracking resistance of this alloy under all welded conditions. To understand the decrease in the ductility of the SP welded joint, preexposure SSRT followed by microstructural observations were made, which showed that the decrease in ductility ratio of the SP welded joint was caused by the electrochemical pitting that assisted the nucleation of cracks in the form of corrosion induced mechanical cracking rather than true SCC failure of the alloy. The microstructural examination and polarization tests demonstrated a clear grain boundary (GB) sensitization of the PMZ, resulting in severe galvanic corrosion of the SP weld joint, which initiated the necessary conditions for the localized corrosion and cracking along the PMZ. The absence of PMZ and a refined fusion zone (FZ) structure because of the lesser heat input and postweld heating effect improved the galvanic corrosion resistance of the MP welded joint greatly, and thus, failure occurred along the FZ.
机译:检查了AA2219铝合金在单道(SP)和多道(MP)焊接条件下的应力腐蚀开裂(SCC)行为,并将其与3.5 wt%NaCl溶液中的贱金属(BM)进行了慢速比较-应变率技术(SSRT)。延展性的降低被用作评估BM和焊接接头的SCC敏感性的参数。结果表明,BM和MP焊接接头的延展性比(εNaCl /(εair )分别为0.97和0.96,而SP焊接接头的延展性比略有降低至0.9。断裂样品的分形检查​​显示,所有基础和焊接接头都有典型的延性开裂形态,表明该合金在所有焊接条件下均具有良好的耐环境开裂性。要了解SP焊接接头的延展性下降,进行了预暴露SSRT,然后进行了显微组织观察,结果表明SP焊接接头的延展性比降低是由电化学点蚀引起的,该点蚀以腐蚀诱导的机械开裂的形式帮助裂纹成核,而不是合金的真实SCC破坏。 。显微组织检查和极化测试表明,PMZ具有清晰的晶界(GB)敏化作用,从而导致SP焊缝受到严重的电偶腐蚀接头,为沿PMZ局部腐蚀和开裂创造了必要条件。由于较少的热量输入和焊后加热效果,不存在PMZ和精细的熔合区(FZ)结构大大改善了MP焊接接头的耐电偶腐蚀性能,因此沿FZ发生了故障。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2012年第9期|p.3135-3148|共14页
  • 作者单位

    Material Characterization Division, Materials and Metallurgy Group, Vikram Sarabhai Space Centre, Thiruvananthapuram, 695 022, India;

    Material Characterization Division, Materials and Metallurgy Group, Vikram Sarabhai Space Centre, Thiruvananthapuram, 695 022, India;

    Department of Metallurgical Engineering and Materials Science, Indian Institute of Technology—Bombay, Powai, Mumbai, 400 076, India;

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