Buckling Knockdown Factors of Composite Cylinders under Both Compression and Internal Pressure

被引:8
|
作者
Kim, Do-Young [1 ]
Sim, Chang-Hoon [1 ]
Park, Jae-Sang [1 ]
Yoo, Joon-Tae [2 ]
Yoon, Young-Ha [2 ]
Lee, Keejoo [3 ]
机构
[1] Chungnam Natl Univ, Dept Aerosp Engn, 99 Daehak Ro, Daejeon 34134, South Korea
[2] Korea Aerosp Res Inst, Launcher Struct & Mat Team, 169-84 Gwahak Ro, Daejeon 34133, South Korea
[3] Korea Aerosp Res Inst, Future Launcher R&D Program Off, 169-84 Gwahak Ro, Daejeon 34133, South Korea
关键词
thin-walled composite cylinder; knockdown factor (KDF); internal pressure; shell thickness ratio; slenderness ratio; post-buckling analysis; CYLINDRICAL-SHELLS; STIFFENED SHELLS; AXIAL-COMPRESSION; ROBUST DESIGN; OPTIMIZATION; DERIVATIONS; SIMULATION; LOAD;
D O I
10.3390/aerospace8110346
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The internal pressure of a thin-walled cylindrical structure under axial compression may improve the buckling stability by relieving loads and reducing initial imperfections. In this study, the effect of internal pressure on the buckling knockdown factor is investigated for axially compressed thin-walled composite cylinders with different shell thickness ratios and slenderness ratios. Various shell thickness ratios and slenderness ratios are considered when the buckling knockdown factor is derived for the thin-walled composite cylinders under both axial compression and internal pressure. Nonlinear post-buckling analyses are conducted using the nonlinear finite element analysis program, ABAQUS. The single perturbation load approach is used to represent the geometric initial imperfection of thin-walled composite cylinders. For cases with the axial compressive force only, the buckling knockdown factor decreases as the shell thickness ratio increases or as the slenderness ratio increases. When the internal pressure is considered simultaneously with the axial compressive force, the buckling knockdown factor decreases as the slenderness ratio increases but increases as the shell thickness ratio increases. The buckling knockdown factors considering the internal pressure and axial compressions are higher by 2.67% to 38.98% compared with the knockdown factors considering the axial compressive force only. The results show the significant effect of the internal pressure, particularly for thinner composite cylinders, and that the buckling knockdown factors may be enhanced for all the shell thickness ratios and slenderness ratios considered in this study when the internal pressure is applied to the cylinder.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] BUCKLING AND POST-BUCKLING IN FILAMENT WOUND COMPOSITE TUBES UNDER TRANSVERSE COMPRESSION
    Almeida Jr, Jose Humberto S.
    Ribeiro, Marcelo L.
    Tita, Volnei
    Faria, Hugo
    Marques, Antonio T.
    Amico, Sandro C.
    20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS, 2015,
  • [42] Buckling behaviour of axially loaded steel cylinders on local supports - with and without internal pressure
    Greiner, R
    Guggenberger, W
    THIN-WALLED STRUCTURES, 1998, 31 (1-3) : 159 - 167
  • [43] Buckling of 120° stiffened composite cylindrical shell under axial compression - Experiment and simulation
    Li Chenghu
    Wu Zhe
    COMPOSITE STRUCTURES, 2015, 128 : 199 - 206
  • [44] BUCKLING OF CIRCULAR CYLINDRICAL COMPOSITE SHELLS UNDER AXIAL-COMPRESSION AND BENDING LOADS
    LOU, KA
    YANIV, G
    JOURNAL OF COMPOSITE MATERIALS, 1991, 25 (02) : 162 - 187
  • [45] BUCKLING AND POSTBUCKLING BEHAVIOR OF LAMINATED COMPOSITE STRINGER STIFFENED CURVED PANELS UNDER AXIAL COMPRESSION: EXPERIMENTS AND DESIGN GUIDELINES
    Abramovich, Haim
    Weller, Tanchum
    JOURNAL OF MECHANICS OF MATERIALS AND STRUCTURES, 2009, 4 (7-8) : 1187 - 1207
  • [46] Buckling analysis of short cylinders of uniform thickness under uniform external pressure
    Chen, Lei
    ADVANCES IN CIVIL STRUCTURES, PTS 1 AND 2, 2013, 351-352 : 501 - 504
  • [47] Constant single-buckle imperfection principle to determine a lower bound for the buckling load of unstiffened composite cylinders under axial compression
    Wagner, H. N. R.
    Huehne, C.
    Niemann, S.
    COMPOSITE STRUCTURES, 2016, 139 : 120 - 129
  • [48] Buckling of aboveground oil storage tanks under internal pressure
    Yoshida, Shoichi
    STEEL AND COMPOSITE STRUCTURES, 2001, 1 (01) : 131 - 144
  • [49] Buckling and post-buckling of filament wound composite tubes under axial compression: Linear, nonlinear, damage and experimental analyses
    Almeida, Jose Humberto S., Jr.
    Tonatto, Maikson L. P.
    Ribeiro, Marcelo L.
    Tita, Volnei
    Amico, Sandro C.
    COMPOSITES PART B-ENGINEERING, 2018, 149 : 227 - 239
  • [50] EFFECTS OF CFRP REINFORCEMENTS ON THE BUCKLING BEHAVIOR OF THIN-WALLED STEEL CYLINDERS UNDER COMPRESSION
    Bhetwal, Krishna Kumar
    Yamada, Seishi
    INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2012, 12 (01) : 131 - 151