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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Dissimilar welding between conventional and high strength low alloy naval steels with the use of robotic metal cored arc welding
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Dissimilar welding between conventional and high strength low alloy naval steels with the use of robotic metal cored arc welding

机译:常规和高强度低合金海军钢材的不同焊接利用机器人金属芯焊接焊接

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摘要

The increasing trend of high strength low alloy steel application in the shipbuilding industry dictates the necessity for an investigation of their welds with conventional high strength steels. In this study, conventional and high strength low alloy naval steel plates 12 mm thick, were joined together in a butt joint configuration, using the metal cored arc welding technique and low heat input (1.0 kJ/mm). The weld was examined in terms of microhardness, microstructure, and tensile performance. The effect of multiple thermal cycles on the formation of primary and secondary microstructures was also discussed. The results revealed a smooth distribution of the microhardness across the different weld regions. Inside the heat affected zones (HAZs) and the weld metal various constituents were revealed, with ferrite in various forms (lath-like, acicular, semi-equiaxed, polygonal) appearing as the predominant phase, alongside martensite and austenite grains, and pearlite (lamellar and degenerated). The tensile testing indicated the base metal of the conventional high strength steel to be the weakest link of the weld, which was mainly attributed to its ferritic-pearlitic microstructure and the coarse grain size. The overall tensile performance of the weld remained at high levels, with a simultaneous reduction in the elongation after fracture in comparison to the base metals.
机译:高强度低合金钢在造船业中的应用日益增长,这就要求对其与常规高强度钢的焊接进行研究。在本研究中,采用金属芯电弧焊技术和低热量输入(1.0 kJ/mm)将厚度为12 mm的常规和高强度低合金船用钢板对接连接在一起。从显微硬度、微观结构和拉伸性能方面对焊缝进行了检查。还讨论了多次热循环对一次和二次显微组织形成的影响。结果表明,不同焊接区域的显微硬度分布均匀。在热影响区(HAZ)和焊缝金属内部,发现了各种成分,以各种形式的铁素体(板条状、针状、半等轴、多边形)为主要相,马氏体和奥氏体晶粒以及珠光体(层状和退化)。拉伸试验表明,常规高强度钢的母材是焊缝最薄弱的环节,这主要是由于其铁素体-珠光体组织和粗晶粒尺寸。焊缝的整体拉伸性能保持在较高水平,与母材相比,断裂后伸长率同时降低。

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