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Feasibility study on laser microwelding and laser shock peening using femtosecond laser pulses.

机译:使用飞秒激光脉冲进行激光微焊接和激光冲击喷丸的可行性研究。

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摘要

Ultrafast lasers of sub-picosecond pulse duration have thus far been investigated for ablation, drilling and cutting processes. Ultrafast lasers also have the potential for laser welding of small components of the order of microns, and for laser shock peening to enhance the peening depth.;First, the two-temperature model is implemented in a general-purpose commercial FEM package, ABAQUS, to enable broad based application of the two-temperature model in practical engineering problems. The implementation is validated by comparison with linear solutions obtained using separation of variables. It is then used to investigate the potential for microwelding using an ultrafast laser pulse.;Next, the two-temperature model is analyzed using ABAQUS to study the feasibility of laser microwelding with ultrafast lasers. A material model is constructed using material properties and the subsurface boiling model for ablation. Laser processing parameters of repetition rate, pulse duration, and focal radius are then investigated, in terms of molten pool generated in the material, and requirements for those parameters are discussed to obtain feasible parameter ranges for laser microwelding using ultrafast lasers.;Then, the feasibility of laser shock peening using ultrafast laser pulses was experimentally investigated. A zinc coating was used for the thermo-protective effect, and a water confining layer was considered in the investigation. A high numerical aperture focusing lens was used to avoid optical breakdown of the water layer. Laser fluence and feed rate were selected as experimental parameters. Microhardness measurements were made on the top surface of the shock peened specimen and compared with the original material hardness. Improvement in microhardness obtained after laser shock peening with ultrafast laser pulses was slight, compared to results in the literature.;Finally, conditions to achieve feasible laser microwelding and laser shock peening using femtosecond laser pulses are discussed from the numerical and experimental observations.
机译:迄今为止,已经对亚皮秒脉冲持续时间的超快激光器进行了消融,钻孔和切割过程的研究。超快激光也有潜力用于激光焊接微米级的小部件,并有可能进行激光冲击喷丸,以提高喷丸深度。首先,双温度模型在通用商用FEM封装ABAQUS中实现,以便在实际工程问题中广泛应用双温模型。通过与使用变量分离获得的线性解决方案进行比较,验证了该实现。然后,它用于研究使用超快激光脉冲进行微焊接的潜力。接下来,使用ABAQUS分析两个温度模型,以研究用超快激光进行激光微焊接的可行性。使用材料属性和地下沸腾模型来构建材料模型以进行消融。然后,根据材料中产生的熔池,研究了重复率,脉冲持续时间和焦距的激光加工参数,并讨论了对这些参数的要求,以获得使用超快激光进行微焊接的可行参数范围。实验研究了使用超快激光脉冲进行激光冲击喷丸的可行性。镀锌层具有热保护作用,在研究中考虑了水限制层。高数值孔径聚焦透镜用于避免水层的光学击穿。选择激光能量密度和进给速率作为实验参数。在冲击硬化试样的顶表面上进行显微硬度测量,并将其与原始材料的硬度进行比较。与文献中的结果相比,在用超快激光脉冲进行激光冲击喷丸处理后,获得的显微硬度改善很小。最后,从数值和实验观察中讨论了使用飞秒激光脉冲实现可行的激光微焊接和激光冲击喷丸处理的条件。

著录项

  • 作者

    Lee, Dongkyun.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 95 p.
  • 总页数 95
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:39:20

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