首页> 外文期刊>Archives of Metallurgy and Materials >NUMERICAL SIMULATION OF THERMAL PHENOMENA AND PHASE TRANSFORMATIONS IN LASER-ARC HYBRID WELDED JOINTS
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NUMERICAL SIMULATION OF THERMAL PHENOMENA AND PHASE TRANSFORMATIONS IN LASER-ARC HYBRID WELDED JOINTS

机译:激光-电弧混合焊接接头热现象和相变的数值模拟

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摘要

The paper concerns mathematical and numerical modelling of temperature field with convective motion of liquid metal in the melted zone taken into account and numerical estimation of structure composition of a plate made of S355 steel, butt-welded by laser-arc hybrid welding technique. Coupled transport phenomena, including heat transfer and fluid flow in the melted zone, were described respectively by transient heat transfer equation with convective term and Navier-Stokes equation. Latent heat associated with the material’s state changes and latent heat of phase transformations in solid state were taken into consideration in the solution algorithm. The kinetics of phase transformations and volumetric fractions of arising phases were calculated on the basis of the Johnson–Mehl-Avrami (JMA) and Koistinen-Marburger (KM) classic mathematical models. In modelling of phase transformations during heating continuous heating transformation (CHT) diagram was used, whereas continuous cooling transformation (CCT) diagram was used in modelling of phase transformations during cooling of welded steel. Transient heat transfer equation was solved using finite element method in Petrov-Galerkin formulation and Navier-Stokes equation was solved in Chorin’s projection method. The solution algorithms were implemented in ObjectPascal programming language.
机译:本文涉及考虑了熔融区域中液态金属对流运动的温度场的数学和数值模拟,以及通过激光电弧混合焊接技术对接的S355钢制成的板的结构组成的数值估算。用带对流项的瞬态传热方程和Navier-Stokes方程分别描述了耦合传输现象,包括在熔融区的传热和流体流动。解决方案算法考虑了与材料状态变化相关的潜热以及固态相变的潜热。根据Johnson-Mehl-Avrami(JMA)和Koistinen-Marburger(KM)经典数学模型,计算了相变动力学和出现相的体积分数。在加热过程中的相变建模中,使用了连续加热转变(CHT)图,而在焊接钢冷却过程中,则使用了连续冷却转变(CCT)图来建模相变。在Petrov-Galerkin公式中使用有限元法求解瞬态传热方程,在Chorin投影法中求解Navier-Stokes方程。解决方案算法以ObjectPascal编程语言实现。

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