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首页> 外文期刊>International Journal of Heat and Mass Transfer >Electron beam welding of CrMnNi-steels: CFD-modeling with temperature sensitive thermophysical properties
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Electron beam welding of CrMnNi-steels: CFD-modeling with temperature sensitive thermophysical properties

机译:CrMnNi钢的电子束焊接:具有热敏热物理特性的CFD建模

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Applying and improving electron beam welded (EBW) joints to newly developed high-alloy TRIP/TWIP steels requires in-depth knowledge of the underlying physical phenomena. In an effort to further understand such phenomena, a CFD model is developed in the free, open source CFD software OpenFOAM. Its goal is to provide a basis for gaining deeper insight into the thermofluid-dynamical processes, which includes heating, melting, weld pool fluid dynamics, vaporization, solidification and cooling. For this purpose, a combined double-ellipsoid conical heat source (HS) is implemented into an existing finite volume solver to model the heat input of the electron beam (EB) into the weldment. As the HS is accompanied by a variety of free parameters, those parameters are adjusted to reproduce the shape of experimentally welded joints. Complete sets of parameters are presented accordingly. Furthermore, the thermophysical properties are implemented temperature-sensitive in order to account for the strong temperature gradients affecting heat transport.Since the solidified material is saved as an extra field in order to distinguish it from the parent metal, the seam geometry can be evaluated following the simulation. The resulting simulated weld cross section shows noteworthy good agreement compared to the experimentally obtained full penetration seam. Moreover, the typical teardrop shape of the weld pool is obtained in the simulations, so the usual approach of elongating the HS in its rear part is not necessary. Since the developed model is capable of reproducing the seam development during EBW, it could eventually be used to implement and investigate additional physical effects. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在新开发的高合金TRIP / TWIP钢上应用和改进电子束焊接(EBW)接头需要深入了解潜在的物理现象。为了进一步了解这种现象,在免费的开源CFD软件OpenFOAM中开发了CFD模型。其目标是为深入了解热流体动力学过程提供基础,其中包括加热,熔化,焊池流体动力学,汽化,凝固和冷却。为此,将组合的双椭圆形圆锥形热源(HS)实现到现有的有限体积求解器中,以模拟电子束(EB)进入焊件的热输入。由于HS带有各种自由参数,因此对这些参数进行了调整,以重现实验焊接接头的形状。相应地提供了完整的参数集。此外,热物理性质对温度敏感,以解决影响传热的强烈温度梯度。由于固化材料被保存为额外的字段以与母金属区分开来,因此可以按照以下方式评估接缝的几何形状模拟。与实验获得的全熔透焊缝相比,所得的模拟焊缝横截面显示出值得注意的良好一致性。而且,在模拟中可以获得焊缝池的典型泪滴形状,因此不需要延长后部HS的常规方法。由于开发的模型能够再现EBW期间的煤层发育,因此最终可以用于实施和研究其他物理效果。 (C)2019 Elsevier Ltd.保留所有权利。

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