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首页> 外文期刊>Journal of Laser Applications >Effect of welding parameters and the heat input on weld bead profile of laser welded T-joint in structural steel
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Effect of welding parameters and the heat input on weld bead profile of laser welded T-joint in structural steel

机译:焊接参数与热输入对结构钢激光焊接T关节焊珠曲线的影响

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摘要

The high power fiber laser has become one of the most efficient energy sources for deep penetration welding processes used in heavy manufacturing and marine industries. Combinations of cost-efficient, easily automatable process together with fairly mobile and flexible welding equipment have raised high expectations for improved quality and economic feasibility. In this study, the fillet welding of a low alloyed structural steel was studied using a 10 kW fiber laser. Plates of 8 mm thick AH36 were welded as a T-joint configuration in flat (1F) and horizontal (2F) positions using either an autogenous laser welding or a hybrid laser arc welding process. The effect of heat input on the weld bead geometry was investigated using one variable at a time approach. The impact of single process parameter such as laser power of 4.5-6kW, welding speed of 0.5-2.5 m/min, beam inclination angle of 6 degrees-15 degrees, focal point position of -2 to +2 mm, and welding positions of 1F and 2F were studied. All welds were visually evaluated for weld imperfections described in EN ISO 13919-1 standard. Penetration depth, geometries of the fusion and heat affected zones, and hardness profiles were measured. Produced joints have a high depth to width ratio and a small heat affected zone; full penetration welds with acceptable weld quality on both sides of the joint were produced. The parameter configurations for optimizing the welding processes are proposed. (C) 2015 Laser Institute of America.
机译:高功率光纤激光器已成为重型制造和海洋工业中使用的深层穿透焊接过程中最有效的能源之一。具有成本效益,轻松自动化的过程的组合与相当移动和柔性的焊接设备一起提高了提高质量和经济可行性的高期望。在该研究中,使用10 kW光纤激光研究了低合金结构钢的圆角焊接。使用自动激光焊接或混合激光激光焊接工艺,将8mm厚的AH36的板作为T连杆构造焊接为平面(1F)和水平(2F)位置。一次使用一个变量对焊接珠几何进行热输入对焊珠几何的影响。单工艺参数的影响,如激光功率为4.5-6kW,焊接速度为0.5-2.5米/分钟,光束倾斜角度为6摄氏度-15度,焦点位置为-2至+2 mm,焊接位置研究了1F和2F。目视评估所有焊缝,用于ZH ISO 13919-1标准中描述的焊接缺陷。渗透深度,测量融合和热影响的区域的几何形状,以及硬度剖面。产生的接头具有高深度到宽度比和小型热影响区域;产生了接头两侧具有可接受的焊接质量的完全渗透焊缝。提出了用于优化焊接工艺的参数配置。 (c)2015年激光研究所。

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