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Numerical Simulation of the Processes of Formation of a Welded Joint with a Pulsed ND:YAG Laser Welding of ZR-1%NB Alloy

机译:用脉冲Nd形成焊接接头的过程的数值模拟:Zr-1%Nb合金的YAG激光焊接

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摘要

In recent years use of Zr-Nb alloys has increased in nuclear and chemical industry due to its corrosion resistance and enhanced strength compared to tin based ones. Welding of zirconium alloys is one of the most critical manufacturing processes for nuclear assembly production. To select suitable welding parameters to achieve quality weld, understanding of temperature and velocity fields during process in fusion zone and heat affected zone are essential. In the present study the Nd:YAG pulsed laser welding of zirconium alloy E110 was simulated using three-dimensional heat and fluid flow model. The convection mode of heat transfer and Marangoni stresses in fusion zone are two important mechanisms in controlling the heat transfer weld bead size. The calculated heating and cooling rates are of typical in laser welding and useful in microstructure study of fusion and heat affected zones. Experiments were carried with varying peak power, pulse frequency and duration using Nd:YAG pulsed laser on 0.5 mm thick sheets of E110 to form butt joints. The comparison of the results shows that the weld geometry is well matched with the numerical model.
机译:由于其耐腐蚀性和增强的强度与基于锡的耐腐蚀性和增强的强度,近年来使用ZR-NB合金的使用增加。锆合金的焊接是核组件生产最关键的制造工艺之一。为了选择合适的焊接参数来实现质量焊接,在融合区和热影响区域过程中对温度和速度场的理解是必不可少的。在本研究中,使用三维热和流体流动模型模拟锆合金E110的Nd:YAG脉冲激光焊接。融合区中传热和Marangoni应力的对流模式是控制传热焊缝尺寸的两个重要机制。计算出的加热和冷却速率在激光焊接中是典型的,可用于融合和热影响区域的微观结构研究。使用ND:YAG脉冲激光器的不同峰值功率,脉冲频率和持续时间具有不同的峰值功率,脉冲频率和持续时间进行实验,以形成对接接头。结果的比较表明,焊接几何形状与数值模型相匹配。

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