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Low temperature impact toughness of structural steel welds with different welding processes

机译:不同焊接工艺的结构钢焊缝的低温冲击韧性

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Influence of welding process and welding consumable on the impact toughness at low temperatures of the Heat Affected Zone (HAZ) and the weld metal in a structural steel weldment was investigated. A comparison of the low temperature impact toughness was made between the welded joints fabricated by Shielded Metal Arc Welding (SMAW) and Flux Cored Arc Welding (FCAW) processes, respectively. The Charpy impact tests along with the microstructural observations and the hardness measurements were carried out to derive the effective welding method to guarantee the higher impact toughness of the HAZ and the weld metal at low temperatures. Standard V-notch Charpy impact specimens were prepared and tested under dynamic loading condition. Variation of the Charpy impact energy with respect to the test temperature and that of the hardness across the welds were presented and correlated with the microstructure and the welding process. Analysis of the results unveiled that the weld metal of the FCAW joint has a little higher low temperature impact toughness owing to the higher nickel content, whilst the HAZ of the SMAW joint has much superior impact toughness at low temperatures attributed to the lower heat input; thus the efficient welding method to ensure higher low temperature impact toughness of the HAZ and the weld metal is to employ a low heat input welding process using a welding consumable with high nickel content.
机译:研究了焊接工艺和焊接材料对结构钢焊缝中热影响区(HAZ)和焊缝金属在低温下的冲击韧性的影响。分别比较了采用屏蔽金属电弧焊(SMAW)和药芯焊丝电弧焊(FCAW)工艺制造的焊接接头的低温冲击韧性。进行了夏比冲击试验以及显微组织观察和硬度测量,以得出有效的焊接方法,以确保在低温下HAZ和焊缝金属具有更高的冲击韧性。制备标准的V型缺口夏比冲击试样并在动态载荷条件下进行测试。提出了夏比冲击能相对于测试温度的变化以及整个焊缝的硬度的变化,并且与显微组织和焊接工艺相关。结果分析表明,由于镍含量较高,FCAW接头的焊接金属具有较低的低温冲击韧性,而SMAW接头的热影响区在低温下归因于较低的热输入而具有优异的冲击韧性;因此,确保HAZ和焊接金属具有更高的低温冲击韧性的有效焊接方法是采用低热量输入焊接工艺,该焊接工艺使用的镍含量高。

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