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470                                振     动     工     程     学     报                     第 39 卷

                  delaminated  angle-ply  composite  conical  shells-A  finite  哈尔滨:哈尔滨工程大学,2021.
                  element  approach[J].  Composite  Structures, 2012, 94( 7) :  WANG Tianyu. Dynamic analysis of composite conical-cylin-
                  2188-2196.                                        drical shell moving in high speed[D]. Harbin:Harbin Engi-
              [4]  VISWANATHAN K K,LEE J H,AZIZ Z A,et al. Vibra-   neering University,2021.
                  tion  analysis  of  cross-ply  laminated  truncated  conical  shells  [16]  谢祖东. 水下复合壳体结构声振特性分析  [D]. 哈尔滨:哈
                  using  a  spline  method[J].  Journal  of  Engineering  Mathemat-  尔滨工程大学,2021.
                  ics,2012,76(1):139-156.                           XIE  Zudong.  Analysis  of  vibration  and  acoustic  characteris-
              [5]  QU Y G,LONG X H,WU S H,et al. A unified formula-  tics  of  underwater  composite  shell  structure[D].  Harbin:
                  tion  for  vibration  analysis  of  composite  laminated  shells  of  Harbin Engineering University,2021.
                  revolution  including  shear  deformation  and  rotary  inertia[J].  [17]  SHAHABAD P K,ANAMAGH M R,BEDIZ B. Design of
                  Composite Structures,2013,98:169-191.             laminated conical shells using spectral Chebyshev method and
              [6]  CIVALEK Ö. Vibration analysis of laminated composite coni-  lamination  parameters[J].  Composite  Structures, 2022,
                  cal shells by the method of discrete singular convolution based  281:114969.
                  on the shear deformation theory[J]. Composites Part B:Engi-  [18]  郑博文,赵锐,于开平. 碳纤维双马树脂基圆锥壳的热振
                  neering,2013,45(1):1001-1009.                     动特性研究    [J]. 力学与实践,2022,44(1):36-44.
              [7]  瞿叶高,华宏星,谌勇,等. 复合材料旋转壳自由振动分                       ZHENG  Bowen, ZHAO  Rui, YU  Kaiping.  Research  on
                  析的新方法    [J]. 力学学报,2013,45(1):139-143.            thermal vibration characteristics of carbon fiber bismaleimide
                  QU  Yegao, HUA  Hongxing, CHEN  Yong, et  al.  A  new  resin  conical  shell[J].  Mechanics  in  Engineering, 2022,
                  method  for  free  vibration  analysis  of  composite  laminated
                                                                    44(1):36-44.
                  shelles  of  revolution[J].  Chinese  Journal  of  Theoretical  and
                                                                [19]  SONG  X  Y, WANG  C  G, WANG  S, et  al.  Vibration
                  Applied Mechanics,2013,45(1):139-143.
                                                                    evolution of laminated composite conical shell with arbitrary
              [8]  JIN G Y,YE T G,JIA X Z,et al. A general Fourier solu-
                                                                    foundation  in  hygrothermal  environment: experimental  and
                  tion  for  the  vibration  analysis  of  composite  laminated  struc-
                                                                    theoretical  investigation[J].  Mechanical  Systems  and  Signal
                  ture  elements  of  revolution  with  general  elastic  restraints[J].
                                                                    Processing,2023,200:110565.
                  Composite Structures,2014,109:150-168.
                                                                [20]  LI Z,WANG Q S,ZHONG R,et al. Vibro-acoustic analy-
              [9]  XIE X,JIN G Y,LI W Y,et al. A numerical solution for
                                                                    sis of laminated composite cylindrical and conical shells using
                  vibration analysis of composite laminated conical,cylindrical
                                                                    meshfree  method[J].  Engineering  Analysis  with  Boundary
                  shell  and  annular  plate  structures[J].  Composite  Structures,
                                                                    Elements,2023,152:789-807.
                  2014,111:20-30.
                                                                [21]  许卓,许沛尧,初晨,等. 基于多层次迭代修正的纤维增
              [10]  YE T G,JIN G Y,SU Z,et al. A unified Chebyshev-Ritz
                                                                    强复合薄壁截顶圆锥壳振动响应分析            [J]. 复合材料学报,
                  formulation for vibration analysis of composite laminated deep
                                                                    2024,41(3):1601-1610.
                  open shells with arbitrary boundary conditions[J]. Archive of
                                                                    XU  Zhuo, XU  Peiyao, CHU  Chen, et  al.  Vibration
                  Applied Mechanics,2014,84(4):441-471.
                                                                    response  analysis  of  fiber  reinforced  composite  thin-walled
              [11]  SHAKOURI M,KOUCHAKZADEH M A. Analytical solu-
                                                                    truncated  conical  shell  based  on  multilevel  iterative
                  tion for vibration of generally laminated conical and cylindri-
                                                                    correction[J].  Acta  Materiae  Compositae  Sinica, 2024,
                  cal  shells[J].  International  Journal  of  Mechanical  Sciences,
                                                                    41(3):1601-1610.
                  2017,131-132:414-425.
                                                                [22]  WANG M,ZENG L L,ZHAO C Y,et al. Aerothermoelas-
              [12]  HE  D  Z, SHI  D  Y, WANG  Q  S, et  al.  A  unified  power
                                                                    tic  analysis  of  conical  shell  in  supersonic  flow[J].  Applied
                  series  method  for  vibration  analysis  of  composite  laminate
                                                                    Sciences,2023,13(8):4850.
                  conical, cylindrical  shell  and  annular  plate[J].  Structures,
                                                                [23]  LI  W  L.  Free  vibrations  of  beams  with  general  boundary
                  2021,29:305-327.
                                                                    conditions[J].  Journal  of  Sound  and  Vibration, 2000,
              [13]  王远达. 弹性边界条件下复合材料回转类层合板壳结构振
                                                                    237(4):709-725.
                  动特性分析    [D]. 哈尔滨:哈尔滨工程大学,2020.
                                                                [24]  AMABILI M,PELLICANO F. Nonlinear supersonic flutter
                  WANG  Yuanda.  Analysis  of  vibration  characteristics  of
                                                                    of  circular  cylindrical  shells[J].  AIAA  Journal, 2001,
                  composite  rotating  plate  and  shell  structures  under  elastic
                                                                    39(4):564-573.
                  boundary conditions[D]. Harbin:Harbin Engineering Univer-
                                                                [25]  RAHMANIAN  M, JAVADI  M.  A  unified  algorithm  for
                  sity,2020.
                                                                    fully-coupled aeroelastic stability analysis of conical shells in
              [14]  李海超. 复合材料回转结构振动声辐射雅克比-里兹方法及
                  应用  [D]. 哈尔滨:哈尔滨工程大学,2021.                        yawed  supersonic  flow  to  identify  the  effect  of  boundary
                                                                    conditions[J]. Thin-Walled Structures,2020,155:106910.
                  LI Haichao. Jacobi-Ritz method and application for vibration
                  and  sound  radiation  of  composite  shells  of  revolution[D].
                  Harbin:Harbin Engineering University,2021.    通信作者:石先杰(1985—),男,博士,高级工程师。
              [15]  王天宇. 高速运动复合材料锥-柱组合壳体动力学分析             [D].          E-mail:411shixj@caep.cn
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