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航空发动机机匣电子束焊接变形模拟分析与优化

贺笃鹏 张占英 杨丽 邹伟龙 朱小武 陈源宏

贺笃鹏, 张占英, 杨丽, 邹伟龙, 朱小武, 陈源宏. 航空发动机机匣电子束焊接变形模拟分析与优化[J]. 航空动力学报, 2021, 36(6): 1263-1272. doi: 10.13224/j.cnki.jasp.2021.06.015
引用本文: 贺笃鹏, 张占英, 杨丽, 邹伟龙, 朱小武, 陈源宏. 航空发动机机匣电子束焊接变形模拟分析与优化[J]. 航空动力学报, 2021, 36(6): 1263-1272. doi: 10.13224/j.cnki.jasp.2021.06.015
HE Dupeng, ZHANG Zhanying, YANG Li, ZOU Weilong, ZHU Xiaowu, CHEN Yuanhong. Simulation analysis and optimization of electron beam welding deformation of aero-engine casing[J]. Journal of Aerospace Power, 2021, 36(6): 1263-1272. doi: 10.13224/j.cnki.jasp.2021.06.015
Citation: HE Dupeng, ZHANG Zhanying, YANG Li, ZOU Weilong, ZHU Xiaowu, CHEN Yuanhong. Simulation analysis and optimization of electron beam welding deformation of aero-engine casing[J]. Journal of Aerospace Power, 2021, 36(6): 1263-1272. doi: 10.13224/j.cnki.jasp.2021.06.015

航空发动机机匣电子束焊接变形模拟分析与优化

doi: 10.13224/j.cnki.jasp.2021.06.015
基金项目: 国家重点研发计划项目(2017YFB0701801)

Simulation analysis and optimization of electron beam welding deformation of aero-engine casing

  • 摘要: 为了对焊接变形进行预测与控制,建立了焊接接头的弹塑性有限元模型,并对电子束热源模型进行了校核,获得了接头焊接位置的塑性应变区域大小;建立了风扇叶片机匣3D壳单元有限元模型,并采用固有应变法对机匣焊接变形进行了模拟计算,获取了焊接过程的变形分布,通过实测机匣变形量并与仿真结果进行对标,验证了模型的准确性;通过对风扇叶片机匣焊接顺序以及焊接熔池宽度等工艺参数的优化,获得了控制风扇叶片机匣焊后变形的最优方案。结果表明:模拟与实测的平均变形误差仅10.3%,基于固有应变法的中心面3D壳单元有限元模型适用于大型复杂薄壁件的电子束焊接变形预测,该方法已得到应用;风扇叶片机匣焊接熔池宽度的优化能够有效控制焊后变形,焊缝上熔池宽度降低为2.7 mm,焊后平均径向变形量降低30%,能够明显降低机匣径向收缩变形,焊接顺序的优化对变形控制效果较差。

     

  • [1] 郝幼淮.罐式集装箱罐体的焊接技术探讨[J].焊接技术,2003,32(5):53-56. HAO Youhuai.Discussion on welding technology of tank container body[J].Welding Technology,2003,32(5):53-56.(in Chinese)
    [2] 李涛.焊接钢制罐体焊接应力及变形的控制应用[J].科技创新导报,2012(1):68. LI Tao.Control application of welding stress and deformation of welded steel tank[J].Science and Technology Innovation Herald,2012(1):68.(in Chinese)
    [3] 李晓东,李春广,朱志民,等.铝合金薄板 MIG 焊焊接变形仿真预测的工程应用[J].焊接学报,2014,35(2):104-108. LI Xiaodong,LI Chunguang,ZHU Zhimin,et al.Engineering application of simulation prediction of MIG welding deformation of aluminum alloy sheet[J].Transactions of the China Welding Institution,2014,35(2):104-108.(in Chinese)
    [4] 闫德俊,刘雪松,周广涛,等.大型底板结构焊接顺序控制变形数值分析[J].焊接学报,2009,30(6):55-58. YAN Dejun,LIU Xuesong,ZHOU Guangtao,et al.Numerical analysis of welding sequence control deformation of large-scale bottom plate[J].Transactions of the China Welding Institution,2009,30(6):55-58.(in Chinese)
    [5] UEDA Y,YAMAKAWA T.Analysis of thermal elastic-plastic stress and strain during welding by finite element method[J].Japan Welding Society Transactions,1971,2(2):135-142.
    [6] HIBBITT H D,MARCAL P V.A numerical,thermo-mechanical model for the welding and subsequent loading of a fabricated structure[J].Computers and Structures,1973,3(5):1145-1174.
    [7] FRIEDMAN E.Thermomechanical analysis of the welding process using the finite element method[J].Journal of Pressure Vessel Technology,1975,97(3):206-213.
    [8] LINDGREN L E,KARLSSON L.Deformations and stresses in welding of shell structures[J].International Journal for Numerical Methods in Engineering,1988,25(2):635-655.
    [9] 张建勋,刘川,张林杰.焊接非线性大梯度应力变形的高效计算技术[J].焊接学报,2009,30(6):107-111. ZHANG Jianxun,LIU Chuan,ZHANG Linjie.Efficient calculation technology for welding nonlinear large gradient stress and deformation[J].Transactions of the China Welding Institution,2009,30(6):107-111.(in Chinese)
    [10] DANIEWICZ S R,MCANINCH M D,MC-FARLAND B,et al.Application of distortion control technology during fabrication of large offshore structures[C]∥Proceedings of the International Conference on Modeling and Control of Joining Processes.Orlando,US:American Welding society,1993:156-160.
    [11] LUO Y,ISHIYAMA M,MURAKAWA H.Welding deformation of plates with longitudinal curvature (mechanics,strength and structure design)[J].Transactions of JWRI,1999,28(2):57-65.
    [12] 羅宇,村川英一,上田幸雄.固有ひずみを用いた弾性計算による溶接変形および残留応力の推定[J].日本造船学会論文集,1997,1997(182):783-793.(in Japanese)
    [13] 成田.固有ひずみを用いた薄肉閉断面部材の溶接変形予測[J].溶接構造シンポジウム 1997,1997:290-296.(in Japanese)
    [14] 蔡志鹏,赵海燕,吴甦,等.串热源模型及其在焊接数值模拟中的应用[J].机械工程学报,2001,37(4):25-29. CAI Zhipeng,ZHAO Haiyan,WU Su,et al.String heat source model and its application in numerical simulation of welding[J].Journal of Mechanical Engineering,2001,37(4):25-29.(in Chinese)
    [15] DENG D,KIYOSHIMA S,OGAWA K,et al.Predicting welding residual stresses in a dissimilar metal girth welded pipe using 3D finite element model with a simplified heat source[J].Nuclear Engineering and Design,2011,241(1):46-54.
    [16] 刘佳,杨玉东,石岩,等.基于 Visual-Environment 的复杂结构薄壁件激光焊接工艺优化[J].机械工程学报,2017,53(14):150-158. LIU Jia,YANG Yudong,SHI Yan,et al.Numerical simulation analysis on optimization of laser welding process for the complex structural thin-walled part based on visual-environment[J].Journal of Mechanical Engineering,2017,53(14):150-158.(in Chinese)
    [17] 王勖成,邵敏.有限单元法基本原理和数值方法[M].北京:清华大学出版社,1997.
    [18] 李飞.钢箱梁焊接固有应变的研究[D].天津:河北工业大学,2011. LI Fei.Research on welding inherent strain of steel box girder[D].Tianjin:Hebei University of Technology,2011.(in Chinese)
    [19] DONG Wenchao,LU Shanping,LU Hao,et al.Numerical simulation and control of welding distortion for double floor structure of high speed train[J].Acta Mechanica Sinica,2014,30(6):849-860.
    [20] 魏良武.固有应变法预测焊接变形的研究及其工程应用[D].上海:上海交通大学,2004. WEI Liangwu.Investigation on inherent strain method for welding deformation prediction and engineering application[D].Shanghai:Shanghai Jiao Tong University,2004.(in Chinese)
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出版历程
  • 收稿日期:  2021-01-12
  • 刊出日期:  2021-06-28

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