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NUMERICAL SIMULATION OF ELECTROMAGNETICALLY DRIVEN FLOW IN THE WELD POOL DURING ARC WELDING

机译:电弧焊接过程中电磁驱动流动的数值模拟

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摘要

The electromagnetic force results from the interaction between the current flow and the induced magnetic field in the weldment. Comprehensive three-dimensional calculations of current flow and induced magnetic field are needed for accurate determination of the electromagnetic force. In the literature, several simplifying analytical expressions for the electromagnetic force have been suggested and widely used without any critical evaluation of their intrinsic merit, since accurate numerical calculations were difficult in the past because of lack of fast computers. With the advances in computational hardware and software, it is now possible to do relatively complex calculations that were much more difficult to perform just a few decades ago. The objective of the present investigation is to propose a mathematical model to numerically solve the electromagnetic force field in the weldment and determine the effect of commonly used simplifications on the accuracy of the calculated electromagnetic force field and weld pool temperature and velocity fields. A numerical model has been developed to accurately calculate the current density and magnetic flux fields and the resulting electromagnetic force field in three dimensions in the entire weldment. The computed electromagnetic force field was used in a 3-D heat transfer and fluid flow model to calculate the temperature and velocity distributions in the weld pool. The fusion zone geometry was experimentally measured for different current, voltage and arc power distribution. The agreements between the calculated and experimental FZ geometries indicate that the proposed numerical model gives accurate electromagnetic force distribution inside the workpiece.
机译:电磁力来自焊件中电流与感应磁场之间的相互作用。为了准确确定电磁力,需要对电流和感应磁场进行全面的三维计算。在文献中,已经提出了几种简化的电磁力解析表达式,并在没有对其内在价值进行任何严格评估的情况下被广泛使用,因为过去由于缺乏快速计算机而难以进行精确的数值计算。随着计算硬件和软件的进步,现在有可能进行相对复杂的计算,而这些计算在几十年前就很难执行。本研究的目的是提出一个数学模型,以数值方式求解焊件中的电磁力场,并确定常用简化方法对计算出的电磁力场以及焊池温度和速度场的准确性的影响。已经开发了一个数值模型,可以在整个焊件的三个维度上准确计算电流密度和磁通量场以及由此产生的电磁力场。计算出的电磁力场用于3-D传热和流体流动模型中,以计算焊缝池中的温度和速度分布。对于不同的电流,电压和电弧功率分布,对熔合区的几何形状进行了实验测量。计算出的FZ几何形状和实验FZ几何形状之间的一致性表明,所提出的数值模型可在工件内部提供精确的电磁力分布。

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