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首页> 外文期刊>Military operations research >Effect of average beam power on microstructure and mechanical properties of Nd: YAG laser welding of 304L and st37 steel
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Effect of average beam power on microstructure and mechanical properties of Nd: YAG laser welding of 304L and st37 steel

机译:平均束功率对304L和st37钢Nd:YAG激光焊接组织和力学性能的影响

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Purpose-The present research work aims to study the effect of average beam power (laser process parameters) on the overlapping factor, depth of penetration (DOP), weld bead width, fusion zone and heat affected zone (HAZ) in laser welding of 304L and st37 steel. Back side and top surface morphology of the welded joints have also been studied for varying average beam power.Design/methodology/approach-Laser welding of austenitic stainless steel (304L) and carbon steel (st37) was carried out using Nd:YAG laser integrated with ABB IRB 1410 robot in pulse mode. The selection of laser process parameters was based on the specification of available laser welding machine. Dissimilar laser welding of 304L and st37 carbon steel for full depth of penetration have been performed, with varying average beam power (225-510W) and constant welding speed (5mm/s) and pulse width (5ms).Findings-Recrystallized coarse grains were observed adjacent to the fusion zone and nucleated grains were seen away from the fusion zone towards carbon steel. Overlapping factor and HAZ width st37 side increases with increase in average beam power whereas top weld bead width increases first, attains maximum value and then subsequently decreases. Bottom weld bead width increases with increase in average beam power. The mechanical properties namely microhardness and tensile strength of the welded joints have been investigated with varying average beam power.Originality/value-In the recent development of the automobile, power generation and petrochemical industries the application of dissimilar laser welding of austenitic stainless steel (304L) and carbon steel (st37) are gaining importance. Very limited work have been reported in pulsed Nd:YAG dissimilar laser welding of austenitic stainless steel (304L) and carbon steel (st37) for investigating the effect of laser process parameters on weld bead geometry, microstructural characterization and mechanical properties of the welded joint.
机译:目的-本研究工作旨在研究304L激光焊接中平均光束功率(激光工艺参数)对重叠因子,熔深(DOP),焊缝宽度,熔合区和热影响区(HAZ)的影响和st37钢。还研究了焊接接头的背面和顶面形态,以改变平均束功率。奥氏体不锈钢(304L)和碳素钢(st37)的设计/方法/方法激光焊接使用Nd:YAG激光集成在脉冲模式下使用ABB IRB 1410机器人。激光加工参数的选择基于现有激光焊接机的规格。对304L和st37碳钢进行了不同的激光焊接,以实现全熔深,平均光束功率(225-510W)和恒定的焊接速度(5mm / s)和脉冲宽度(5ms)有所变化。在熔合区附近观察到有核晶粒,从熔合区向碳钢方向观察到有核晶粒。重叠因子和HAZ宽度st37随平均束功率的增加而增加,而顶部焊缝宽度首先增加,达到最大值,然后减小。底部焊缝宽度随着平均光束功率的增加而增加。在变化的平均束功率的情况下研究了焊接接头的机械性能,即显微硬度和抗拉强度。原始值/值-在汽车,发电和石化行业的最新发展中,奥氏体不锈钢(304L )和碳钢(st37)越来越重要。在奥氏体不锈钢(304L)和碳素钢(st37)的脉冲Nd:YAG异种激光焊接中,研究激光工艺参数对焊缝几何形状,微结构特征和焊接接头力学性能的影响的工作报道非常有限。

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