首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Low-Temperature Sensitization on the Corrosion Behavior of AISI Type 304L SS Weld Metal in Simulated Groundwater
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Effect of Low-Temperature Sensitization on the Corrosion Behavior of AISI Type 304L SS Weld Metal in Simulated Groundwater

机译:低温致敏对模拟地下水中AISI型304LS焊缝金属腐蚀行为的影响

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The manuscript presents the investigations carried out on the effect of low-temperature sensitization (LTS) of 304L SS weld metal on its corrosion behavior in simulated groundwater, for its application as a canister material for long-term storage of nuclear vitrified high-level waste in geological repositories. AISI type 304L SS weld pad was fabricated by multipass gas tungsten arc welding process using 308L SS filler wire. The as-welded specimens were subsequently subjected to carbide nucleation and further to LTS at 500 A degrees C for 11 days to simulate a temperature of 300 A degrees C for 100-year life of the canister in geological repositories. Delta ferrite (delta-ferrite) content of the 304L SS weld metal substantially decreased on carbide nucleation treatment and further only a marginal decrease occurred on LTS treatment. The microstructure of the as-welded consisted of delta-ferrite as a minor phase distributed in austenite matrix. The delta-ferrite appeared fragmented in the carbide-nucleated and LTS-treated weld metal. The degree of sensitization measured by double-loop electrochemical potentokinetic reactivation method indicated an increase in carbide nucleation treatment when compared to the as-welded specimens, and further increase occurred on LTS treatment. Potentiodynamic anodic polarization investigations in simulated groundwater indicated a substantial decrease in the localized corrosion resistance of the carbide-nucleated and LTS 304L SS weld metals, when compared to the as-welded specimens. Post-experimental micrographs indicated pitting as the primary mode of attack in the as-welded, while pitting and intergranular corrosion (IGC) occurred in the carbide-nucleated weld metal. LTS-treated weld metal predominantly underwent IGC attack. The decrease in the localized corrosion resistance of the weld metal after LTS treatment was found to have a direct correlation with the degree of sensitization and the weld microstructure. The results are detailed in the manuscript.
机译:该稿件提出了对304LS焊接金属的低温敏化(LTS)对模拟地下水中腐蚀行为进行的研究进行的调查,其应用作为罐材料的应用,用于核玻璃化的高水平废物的长期储存在地质存储库中。 AISI型304L SS焊盘采用多溴气钨电弧焊接工艺制造,采用308L SS填充丝制造。随后将焊接样品进行碳化物成核,并在500℃下进一步为LTS 11天,以模拟地质储存库中的100年度100℃的温度。 Delta铁氧体(Delta-铁氧体)304L SS焊接金属的含量显着降低对碳化物成核治疗,并且在LTS处理中进一步发生了边际降低。用作奥氏体基质中分布的δ-铁素体的微观结构由Delta-铁素体组成。 δ-铁素体在碳化物核和LTS处理的焊接金属中出现碎裂。通过双回路电化学型液滴再激活方法测量的致敏程度表明与用作焊接标本相比,碳化物成核处理的增加,并在LTS处理上进一步增加。模拟地下水中的电位动力学阳极偏振化研究表明,与用作焊接标本相比,碳化物核和LTS 304L SS焊接金属的局部耐腐蚀性的显着降低。实验后的显微照片表明点焊的主要攻击方式,而在碳化物 - 核焊接金属中发生点蚀和晶间腐蚀(IGC)。 LTS处理的焊接金属主要接受IGC攻击。发现LTS处理后焊接金属的局部耐腐蚀性的降低与敏化程度和焊接微观结构的直接相关。结果在稿件中详述。

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