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CFD modelling of friction stir welding (FSW) process of AZ31 magnesium alloy using volume of fluid method

机译:流体体积法对AZ31镁合金搅拌摩擦焊(FSW)过程的CFD建模

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In this work, a validate couple-thermo flow model of the FSW process is generated using the CFD software FLUENT, with this model, then being developed to model the flash formation phenomena that occur during the FSW process using the volume of fluid method. From both models, pressure distribution on the tool surface was predicted at different radial positions. A comparison was made between single and multiple phase flow models. A significant reduction of the pressure values was seen when using a two-phase flow model. Volume fraction contour showed the changing in the metal phase when increased the welding time steps. A modelling procedure of this work is presented in details to utilize it in the further numerical investigation as a guide. This work could be used to afford more understanding of surface flash formation phenomena. Moreover, the outcome of this study can be a useful technique to aid the tool failure and increase the tool life during the FSW process.
机译:在这项工作中,使用CFD软件FLUENT生成了FSW过程的有效偶热流模型,并使用该模型进行了开发,以使用流体量法对FSW过程中发生的溢料形成现象进行建模。根据这两种模型,可以预测工具表面上的压力分布在不同的径向位置。在单相和多相流模型之间进行了比较。使用两相流模型时,可以看到压力值显着降低。当增加焊接时间步长时,体积分数轮廓显示出金属相的变化。详细介绍了这项工作的建模过程,以将其用于进一步的数值研究中作为指导。这项工作可用于提供更多有关表面飞边形成现象的理解。此外,这项研究的结果可能是有助于FSW加工过程中工具故障并延长工具寿命的有用技术。

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