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Material properties characterization of low carbon steel using TBW and PWHT techniques in smooth-contoured and U-shaped geometries

机译:使用TBW和PWHT技术在低轮廓和U形几何形状中表征低碳钢的材料性能

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This paper investigates the effects of the temper bead welding (TBW) technique and post weld heat treatment (PWHT) on mechanical properties of multi-layer welding on low carbon steel specimens using Charpy V-notch impact testing and tensile testing. Several samples of two different weld geometries, viz. (i) smooth-contoured, and (ii) U-shaped were made with multiple bead layers using both TBW and PWHT techniques. Impact testing showed that at room temperature and below, TBW gave an impact toughness in the Heat Affected Zone (HAZ) better than both PWHT and the parent material. At temperatures higher than the room temperature but below 60℃, PWHT gave better impact toughness in the HAZ. Above 60℃, both TBW and PWHT showed impact toughness lower than that of the parent material. In tensile testing, both TBW and PWHT weld metal specimens produced acceptable results; however, TBW gave yield and tensile strengths closer to that of the actual material than PWHT.
机译:本文利用夏比V型缺口冲击试验和拉伸试验研究了回火焊缝焊(TBW)技术和焊后热处理(PWHT)对低碳钢试样多层焊接机械性能的影响。两种不同焊接几何形状的几个样本,即。 (i)使用TBW和PWHT技术将多层胎圈制成U形轮廓,以及(ii)U形。冲击试验表明,在室温及以下温度下,TBW在热影响区(HAZ)的冲击韧性优于PWHT和母体材料。在高于室温但低于60℃的温度下,PWHT在热影响区具有更好的冲击韧性。在60℃以上,TBW和PWHT的冲击韧性均低于母材。在拉伸试验中,TBW和PWHT焊缝金属试样均产生可接受的结果。但是,TBW的屈服强度和拉伸强度比PWHT接近实际材料。

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