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Effect of Travel Speed and Beam Focus on Porosity in Alloy 690 Laser Welds

机译:传播速度和光束聚焦对690合金激光焊接中孔隙率的影响

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摘要

Advances in laser welding technology, including fiber optic delivery and high power density, are increasing the applicability of this joining technique. The inherent benefits of laser welding include small heat-affected zones, minimal distortion, and limited susceptibility to cracking. These advantages are of special interest to next-generation nuclear power systems where welding solute-rich alloys is expected to increase. Alloy 690 (A690) is an advanced corrosion-resistant structural material used in many replacement components and in construction of new commercial power plants. However, the application of A690 is hindered by its difficult weldability using conventional arc welding, and laser welding is a promising alternate. This work studies the effects of travel speed and beam focus on porosity formation in partial penetration, autogenous A690 laser welds. Porosity has been characterized by light optical microscopy and x-ray computed tomography to quantify its percent volume in the welds. This work describes the tradeoff between weld penetration and defect density as a function of beam defocus and travel speed. Additionally, the role of shield gas in porosity formation is discussed to provide a mitigation strategy for A690 laser welding. A process map is provided that shows the optimal combinations of travel speed and beam defocus to minimize porosity and maximize weld penetration at a laser power of 4 kW.
机译:激光焊接技术的进步,包括光纤传输和高功率密度,正在提高这种连接技术的适用性。激光焊接的固有优点包括较小的热影响区,最小的变形和有限的裂纹敏感性。这些优点对下一代核动力系统特别感兴趣,在下一代核动力系统中,预计将增加富含溶质的合金的焊接。 690合金(A690)是一种先进的耐腐蚀结构材料,用于许多替代组件和新的商业电厂的建设中。但是,A690的应用由于使用常规电弧焊的难焊接性而受到阻碍,激光焊接是一种有希望的替代方法。这项工作研究了行进速度和光束聚焦对部分穿透的自生A690激光焊接中孔隙形成的影响。孔隙率已通过光学显微镜和X射线计算机断层扫描进行了表征,以量化其在焊缝中的体积百分比。这项工作描述了焊缝熔深和缺陷密度之间的权衡,它是光束散焦和行进速度的函数。此外,还讨论了保护气体在孔隙形成中的作用,以为A690激光焊接提供缓解策略。提供了一个过程图,该过程图显示了行进速度和光束散焦的最佳组合,以最小化孔隙率并在4 kW的激光功率下实现最大的焊缝熔深。

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  • 来源
    《JOM 》 |2012年第12期| p.1409-1417| 共9页
  • 作者单位

    Knolls Atomic Power Laboratory, Bechtel Marine Propulsion Corporation, Schenectady, NY, 12301-1072, USA;

    Knolls Atomic Power Laboratory, Bechtel Marine Propulsion Corporation, Schenectady, NY, 12301-1072, USA;

    Knolls Atomic Power Laboratory, Bechtel Marine Propulsion Corporation, Schenectady, NY, 12301-1072, USA;

    Knolls Atomic Power Laboratory, Bechtel Marine Propulsion Corporation, Schenectady, NY, 12301-1072, USA;

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