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Finite Element Modelling and updating of welded joint for dynamic study of exhaust structure

机译:有限元建模与焊接接头的动态研究 - 用于排气结构的研究

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An exhaust structure is experienced dynamic loads caused by engine operational and road surface condition that affected its durability and dynamic performance.Hence,the purpose of this study is to perform finite element(FE)modelling of exhaust structure and the used of updating approach to improve its dynamic behaviour.Due to its design,exhaust structure is built-up from several parts cornnected with welded joints.These welded joints significantly contribute to the dynamic behaviour of the structure.Four types of element connector that are RBE2,CBAR,CBEAM and CELAS have been used to replicate FE model of welded joint on the structure.Modal parameters(natural frequency and mode shape)of the FE model have been obtained from normal mode analysis using finite element analysis(FEA)software,MSG.Nastran/Patran.The precision of numerical predicted result from FEA is compared with its measured counterpart.The measured test data obtained through experimental modal analysis(EMA)using impact hammer and roving accelerometers under free-free boundary conditions.Under correlation process,CBAR element connector was chosen to model the welded joint due to its accurate prediction of natural frequency and contains updating parameters.FE model updating process was performed to improve the correlation between EMA and FEA.Ahead of updating process,sensitivity analysis was done to select the most sensitive updating parameter.As a result,total percentage error of natural frequency for updated CBAR model is reduced significantly from 8.74 % to 3.45 %.Consequentiy,CBAR element connector was chosen as the most reliable joint element in FE model to represent welded joint on exhaust structure.
机译:通过影响其耐用性和动态性能的发动机运行和道路表面条件引起的动态载荷发生了风力结构。该研究的目的是执行有限元(FE)的排气结构和使用更新方法来改进它的动态行为。到其设计,排气结构是从焊接接头玉米康切的几个部分建立的。这些焊接接头显着贡献了结构的动态行为。rbe2,cbar,cbeam和celas的元素连接器的类型。已被用来复制焊接接头的FE模型。使用有限元分析(FEA)软件,MSG.Nastran / Patran,从正常模式分析中获得Fe模型的焊接接头上的FE模型。将FEA的数值预测结果的精度与其测量的对应物进行比较。使用撞击哈米的实验模态分析(EMA)获得的测量测试数据R和粗糙的加速度计在无自由边界条件下。相关过程下,选择CBar元件连接器由于其精确的自然频率预测而绘制焊接接头,并包含更新参数。进行了模型更新过程以提高EMA之间的相关性以提高EMA之间的相关性。和FEAAHEAHEAD更新过程,完成了灵敏度分析以选择最敏感的更新参数。结果,更新CBAR模型的自然频率的总百分比误差从8.74%显着降至3.45%.consequentiy,cbar元件连接器是选择作为Fe模型中最可靠的关节元件,以表示排气结构上的焊接接头。

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