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Effect of welding speed on friction stir welds of GL E36 shipbuilding steel

机译:焊接速度对GL E36造船用钢搅拌摩擦焊的影响

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The aim of this study was to characterize mechanical and microstructural characteristics of friction-stir-welded GL E36 shipbuilding steel. The tool rotational speed was kept constant at 500rpm and different welding speeds were used (1, 2 and 3mm/s) to achieve different heat inputs. Thermal cycles were monitored by thermocouples placed near the weld face. The welded joints showed a very good esthetics and homogeneous surface quality that indicate a stability of the considered process parameters. The welded joints properties were analyzed by metallography and mechanical tests such as microhardness, tensile and bending. Macrostructural observations were done at the beginning, middle and ending of the welded length. In addition, radiographic inspection was carried out. The pcBN tool exhibited good wear behavior even after welding around 8.5m where no apparent loss in dimensions and geometrical features of the probe and shoulder were found. The macrographs displayed different microstructural features and material flow pattern among the heat inputs achieved. A large microstructure gradient was observed, especially within the stirred zone. All the tensile samples broke at the base material showing that the joints achieved higher strength. Microhardness peaks of about 400HV were also encountered in all the joints. Finally, for welding speeds of 2–3mm/s the thermocouples presented the most uniform thermal profiles.
机译:这项研究的目的是表征搅拌摩擦焊接的GL E36造船钢的力学和微观结构特征。模具转速保持恒定在500rpm,并且使用不同的焊接速度(1、2和3mm / s)来获得不同的热量输入。通过放置在焊接面附近的热电偶监控热循环。焊接接头显示出非常好的美学效果和均匀的表面质量,表明所考虑的工艺参数具有稳定性。焊接接头的性能通过金相和力学测试进行分析,例如显微硬度,拉伸和弯曲。在焊接长度的开始,中间和结束时进行了宏观结构观察。另外,进行了射线照相检查。即使在大约8.5m焊接后,pcBN工具也表现出良好的磨损性能,在焊接过程中,没有发现探头和肩部的尺寸和几何特征明显损失。宏观图显示了在获得的热量输入中不同的微观结构特征和材料流动模式。观察到较大的微观结构梯度,尤其是在搅拌区内。所有拉伸样品都在基材上断裂,表明接头达到了更高的强度。在所有接头处也都遇到了约400HV的显微硬度峰。最后,对于2–3mm / s的焊接速度,热电偶呈现出最均匀的热曲线。

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