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Finite Element Modelling and Updating of Friction Stir Welding (FSW) Joint for Vibration Analysis

机译:用于振动分析的搅拌摩擦焊(FSW)接头的有限元建模和更新

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摘要

Friction stir welding of aluminium alloys widely used in automotive and aerospace application due to its advanced and lightweight properties. The behaviour of FSW joints plays a significant role in the dynamic characteristic of the structure due to its complexities and uncertainties therefore the representation of an accurate finite element model of these joints become a research issue. In this paper, various finite elements (FE) modelling technique for prediction of dynamic properties of sheet metal jointed by friction stir welding will be presented. Firstly, nine set of flat plate with different series of aluminium alloy; AA7075 and AA6061 joined by FSW are used. Nine set of specimen was fabricated using various types of welding parameters. In order to find the most optimum set of FSW plate, the finite element model using equivalence technique was developed and the model validated using experimental modal analysis (EMA) on nine set of specimen and finite element analysis (FEA). Three types of modelling were engaged in this study; rigid body element Type 2 (RBE2), bar element (CBAR) and spot weld element connector (CWELD). CBAR element was chosen to represent weld model for FSW joints due to its accurate prediction of mode shapes and contains an updating parameter for weld modelling compare to other weld modelling. Model updating was performed to improve correlation between EMA and FEA and before proceeds to updating, sensitivity analysis was done to select the most sensitive updating parameter. After perform model updating, total error of the natural frequencies for CBAR model is improved significantly.
机译:铝合金的摩擦搅拌焊接由于其先进且轻巧的特性而广泛用于汽车和航空航天应用。 FSW接头的行为由于其复杂性和不确定性而在结构的动力特性中起着重要作用,因此,这些接头的精确有限元模型的表示成为一个研究课题。在本文中,将介绍用于预测通过搅拌摩擦焊接的金属板的动态特性的各种有限元(FE)建模技术。首先,九套不同系列的铝合金平板;使用由FSW连接的AA7075和AA6061。使用各种类型的焊接参数制造了九套试样。为了找到最理想的FSW板组,开发了使用等效技术的有限元模型,并使用实验模态分析(EMA)对9组试样和有限元分析(FEA)进行了验证。这项研究涉及三种类型的建模。 2型刚体元件(RBE2),钢筋元件(CBAR)和点焊元件连接器(CWELD)。之所以选择CBAR元素来表示FSW接头的焊接模型,是因为它可以精确预测模态形状,并且与其他焊接模型相比,它包含一个更新的焊接模型参数。进行模型更新以改善EMA与FEA之间的相关性,并在进行更新之前,进行敏感性分析以选择最敏感的更新参数。进行模型更新后,CBAR模型固有频率的总误差得到了显着改善。

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