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Review on modelling of friction stir welding using finite element approach and significance of formulations in simulation

机译:利用有限元方法摩擦搅拌焊接建模综述及仿真制剂的意义

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摘要

Friction stir welding (FSW) is a solid-state joining process, which is gaining significance in many joining applications, by overcoming the limitations of other fusion welding processes. For successful incorporation of its potential during industrial applications, mechanism of joining needs to be properly comprehended. The solution lies in developing effective and reliable finite element (FE) model of the FSW process, which would help in getting an insight of the process phenomena (like material flow, heat generation, etc.) during the process. The overall result could be used to observe the effect of process parameters on weld quality. Several attempts have been made to develop an FE model for FSW using different techniques. However, building an efficient model that emulates reality is still to be realised. Here, a review is made to know the current state of various FE modelling techniques and identifying better techniques for simulating FSW and its variants. This review also highlights shortcomings (for ex: mesh distortion, simulation time, the capability of defect prediction) of previous models and discusses on grey areas which are still to be addressed in the broader perspective of FSW and its allied processes using FE approach. [Submitted 06 July 2017; Accepted 29 September 2018].
机译:摩擦搅拌焊接(FSW)是一种固态连接过程,其通过克服其他融合焊接过程的限制,在许多连接应用中取得了重要意义。为了成功纳入其在工业应用过程中的潜力,需要适当地理解加入机制。该解决方案在于开发FSW工艺的有效且可靠的有限元(FE)模型,这将有助于在该过程中获得过程现象(如材料流动,发热等)的洞察。整体结果可用于观察过程参数对焊接质量的影响。使用不同的技术,已经制定了几次尝试为FSW开发FE模型。然而,建立一个有效的模型,以实现现实的仍然可以实现。这里,审查以了解各种FE建模技术的当前状态,并识别用于模拟FSW的更好技术及其变体。该审查还突出了先前模型的缺点(例如:网格失真,仿真时间,缺陷预测能力),并讨论了在FSW的更广泛的视角下仍然要解决的灰色区域及其使用Fe方法的盟友。 [2017年7月6日提交;接受2018年9月29日]。

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