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A study of laser welding modes with varying beam energy levels

机译:改变光束能量水平的激光焊接模式的研究

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The energy of a laser beam is generally calculated based on the laser power and its processing speed. In this work, the laser welding modes such as conduction, conduction-penetration, and keyhole welding of thickness 1.6, 2, and 2.5 mm AISI304 stainless steel sheets, respectively, are studied at different beam energy levels. A series of bead-on-plate trials are conducted using a 500W continuous wave Nd:YAG laser source to study the beam-material interaction and the influence of laser power and welding speed on the formation of weld pool. In addition to the experimental study, a three-dimensional finite-element model is developed to analyse the transient heat flow and to predict the formation of the weld pool. The correlation among the parameters including laser power, welding speed, beam incident angle, and the characteristic geometry of weld pool are established. Temperature-dependent thermal properties of AISI304 stainless steel, the effect of latent heat of fusion, and the convective and radiative aspects of boundary conditions are considered in the model. The heat input to the developed model is assumed to be a three-dimensional conical Gaussian heat source. Finite-element simulations are carried out by using finite-element code, SYSWELD, and FORTRAN subroutines available within the code are used to obtain the numerical results. The result of the numerical analysis provides the shape of the molten pool with different beam energy levels, which is then compared with the results obtained through experimentation. It is observed that the results obtained from finite-element simulation and the experimental trials are in good agreement. [PUBLICATION ABSTRACT]
机译:通常根据激光功率及其处理速度来计算激光束的能量。在这项工作中,研究了在不同的光束能量水平下,厚度分别为1.6、2和2.5 mm AISI304不锈钢薄板的激光焊接模式,例如传导,传导渗透和锁孔焊接。使用500W连续波Nd:YAG激光源进行了一系列的串焊试验,以研究束流材料之间的相互作用以及激光功率和焊接速度对焊缝形成的影响。除了实验研究之外,还建立了三维有限元模型来分析瞬态热流并预测焊缝的形成。建立了包括激光功率,焊接速度,光束入射角和焊缝特征几何形状在内的参数之间的相关性。该模型考虑了AISI304不锈钢随温度变化的热性能,熔化潜热的影响以及边界条件的对流和辐射方面。假设输入到已开发模型的热量是三维锥形高斯热源。通过使用有限元代码进行有限元模拟,SYSWELD和代码中可用的FORTRAN子例程用于获得数值结果。数值分析的结果提供了具有不同射束能量水平的熔池的形状,然后将其与通过实验获得的结果进行比较。可以看出,有限元模拟和试验结果相吻合。 [出版物摘要]

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