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Effects of Pulsed Nd:YAG Laser Welding Parameters on Penetration and Microstructure Characterization of a DP1000 Steel Butt Joint

机译:脉冲Nd:YAG激光焊接参数对DP1000钢对接接头熔透性和组织表征的影响

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摘要

Of particular importance and interest are the effects of pulsed Nd:YAG laser beam welding parameters on penetration and microstructure characterization of DP1000 butt joint, which is widely used in the automotive industry nowadays. Some key experimental technologies including pre-welding sample preparation and optimization design of sample fixture for a sufficient shielding gas flow are performed to ensure consistent and stable testing. The weld quality can be influenced by several process factors, such as laser beam power, pulse duration, overlap, spot diameter, pulse type, and welding velocity. The results indicate that these key process parameters have a significant effect on the weld penetration. Meanwhile, the fusion zone of butt joints exhibits obviously greater hardness than the base metal and heat affected zone of butt joints. Additionally, the volume fraction of martensite of dual-phase steel plays a considerable effect on the hardness and the change of microstructure characterization of the weld joint.
机译:脉冲Nd:YAG激光束焊接参数对DP1000对接焊缝熔深和微观结构表征的影响尤为重要和令人关注,该技术已在当今的汽车工业中广泛使用。进行了一些关键的实验技术,包括预焊接样品制备和样品夹具的优化设计,以确保足够的保护气流,以确保测试的一致性和稳定性。焊接质量可能受几个工艺因素的影响,例如激光束功率,脉冲持续时间,重叠,光斑直径,脉冲类型和焊接速度。结果表明,这些关键工艺参数对焊缝熔深有显着影响。同时,对接接头的熔合区的硬度明显高于对接接头的母材和热影响区。另外,双相钢的马氏体体积分数对焊接接头的硬度和显微组织表征的变化具有相当大的影响。

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