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Effects of post weld heat treatment on residual stress and mechanical properties of GTAW: The case of joining A537CL1 pressure vessel steel and A321 austenitic stainless steel

机译:焊接热处理对GTAW残余应力和力学性能的影响:加入A537CL1压力容器钢和A321奥氏体不锈钢的情况

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In this paper, the effect of different temperatures of post weld heat treatments on the residual stress and mechanical properties were investigated for dissimilar joint of ASTM A537CL1 pressure vessel steel to AISI A321 austenitic stainless steel. These joints are commonly used in high temperature services such as boilers, pressure vessels, heat exchangers in petrochemical, oil and gas industries, etc. For this purpose, gas-tungsten arc welding process with ER308L filler metal with diameter of 1.8 mm was used. Then, post weld heat treatment (PWHT) was carried out at 480, 560, 620 and 680 degrees C for 75 min on the samples. The optical microscope and scanning electron microscope (SEM) were used to study the microstructure and fracture surface of the welded samples. Also, the mechanical behavior of the joint was evaluated by tensile, impact and microhardness tests. The residual stresses of the samples were evaluated with ultrasonic technique. Results showed that the post weld heat treatment had not any significant effect on microstructure of different regions of the joint. Mechanical properties such as ultimate tensile strength and hardness were reduced after post weld heat treatment process. In addition, results of residual stress measurements of the joints showed that the welded sample (without being heat treated) had maximum residual stress, while the sample which was heat treated in 620 degrees C had minimum residual stress. Impact energy was reduced 52% at this temperature and it was found that 620 degrees C was the optimum temperature.
机译:本文研究了AISI A321奥氏体不锈钢对ASI A537CL1压力容器钢的不同温度对焊接后热处理对残留应力和力学性能的不同温度的影响。这些接头通常用于高温服务,如锅炉,压力容器,石化,石油和天然气行业的热交换器等,使用具有ER308L填充金属的Gas-Tungsten弧焊工艺,其直径为1.8mm。然后,在样品上以480,560,620和680℃进行焊接后热处理(pWht)75分钟。光学显微镜和扫描电子显微镜(SEM)用于研究焊接样品的微观结构和断裂表面。而且,通过拉伸,撞击和微硬度试验评估关节的力学行为。用超声波技术评价样品的残余应力。结果表明,焊接后热处理对关节不同区域的微观结构没有任何显着影响。在焊接后热处理过程后,减少了诸如最终拉伸强度和硬度的机械性能。另外,关节的残余应力测量结果表明,焊接样品(不热处理)具有最大的残余应力,而在620℃下热处理的样品具有最小的残余应力。在该温度下,冲击能量降低了52%,发现620℃是最佳温度。

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