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A Study on Microstructure Residual Stresses and Stress Corrosion Cracking of Repair Welding on 304 Stainless Steel: Part I-Effects of Heat Input

机译:304不锈钢补焊组织残余应力和应力腐蚀开裂的研究:第一部分-热输入的影响

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摘要

In this paper, the effect of repair welding heat input on microstructure, residual stresses, and stress corrosion cracking (SCC) sensitivity were investigated by simulation and experiment. The results show that heat input influences the microstructure, residual stresses, and SCC behavior. With the increase of heat input, both the -ferrite in weld and the average grain width decrease slightly, while the austenite grain size in the heat affected zone (HAZ) is slightly increased. The predicted repair welding residual stresses by simulation have good agreement with that by X-ray diffraction (XRD). The transverse residual stresses in the weld and HAZ are gradually decreased as the increases of heat input. The higher heat input can enhance the tensile strength and elongation of repaired joint. When the heat input was increased by 33%, the SCC sensitivity index was decreased by more than 60%. The macroscopic cracks are easily generated in HAZ for the smaller heat input, leading to the smaller tensile strength and elongation. The larger heat input is recommended in the repair welding in 304 stainless steel.
机译:通过模拟和实验研究了补焊热输入对组织,残余应力和应力腐蚀开裂(SCC)敏感性的影响。结果表明,热量输入会影响组织,残余应力和SCC行为。随着热量输入的增加,焊缝中的铁素体和平均晶粒宽度均略有减小,而热影响区(HAZ)中的奥氏体晶粒尺寸则略有增加。通过模拟预测的修复焊接残余应力与通过X射线衍射(XRD)预测的残余应力具有良好的一致性。随着热量输入的增加,焊缝和热影响区的横向残余应力逐渐减小。更高的热量输入可以提高修复接头的抗拉强度和伸长率。当热量输入增加33%时,SCC灵敏度指数下降超过60%。对于较小的热量输入,在热影响区中容易产生宏观裂纹,从而导致较小的拉伸强度和伸长率。建议在304不锈钢的补焊中使用较大的热量输入。

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