NASA-CR-1316-1969 A theoretical analysis of the free vibration of discretely stiffened cylindrical shells with arbitrary end conditions《带有任意终端条件的离散加强柱状壳体的自由振动理论分析》.pdf
《NASA-CR-1316-1969 A theoretical analysis of the free vibration of discretely stiffened cylindrical shells with arbitrary end conditions《带有任意终端条件的离散加强柱状壳体的自由振动理论分析》.pdf》由会员分享,可在线阅读,更多相关《NASA-CR-1316-1969 A theoretical analysis of the free vibration of discretely stiffened cylindrical shells with arbitrary end conditions《带有任意终端条件的离散加强柱状壳体的自由振动理论分析》.pdf(86页珍藏版)》请在麦多课文档分享上搜索。
1、c I cy U U cn U LOAN COPY: RETURN TO KIRTLAND AFB, N MEX AFWL MIL-2) A THEORETICAL ANALYSIS OF THE FREE VIBRATION OF DISCRETELY STIFFENED CYLINDRICAL SHELLS WITH ARBITRARY END CONDITIONS NATIONAL AERONAUTICS AND SPACE ADMINISTRATION WASHINGTON, D. C. JUNE 1969 . . . . . . I-“. . - Provided by IHSNot
2、 for ResaleNo reproduction or networking permitted without license from IHS-,-,-TECH LIBRARY KAFB. NR9 0069446 - NASA CR-1316 A THEORETICAL ANALYSIS OF THE FREE VIBRATION OF DISCRETELY STIFFENED CYLINDRICAL SHELLS WITH ARBITRARY END CONDITIONS By D. M. Egle and K. E. Soder, Jr. Distribution of this
3、report is provided in the interest of information exchange. Responsibility for the contents resides in the author or organization that prepared it. Prepared under Grant No. NGR 37-003-035 by UNIVERSITY OF OKLAHOMA Norman, Okla. for Langley Research Center NATIONAL AERONAUTICS AND SPACE ADMINISTRATIO
4、N For sale by the Clearinghouse for Federal Scientific and Technical Information Springfield, Virginia 22151 - CFSTI price $3.00 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-ACKNOWLEDGEMENT The work reported herein was sponsored by NASA grant NGR
5、37-003-035, under the technical direction of the Dynamic Loads Division, Langley Research Center, with Mr. John L. Sewall acting as grant monitor, The authors are indebted to the University of Oklahoma Computation Center for financial support of a portion of this project. iv Provided by IHSNot for R
6、esaleNo reproduction or networking permitted without license from IHS-,-,-LIST OF FIGURES LIST OF TABLES NCMENCLATURE INTRODUCTION METHOD OF ANALYSIS NUMERICAL RESULTS CONCLUDING REMARKS REFERENCES APPENDIX I APPENDIX I1 APPENDIX I11 TABLE OF CONTENTS Page vi viii ix 1 3 27 55 57 62 65 72 V Provided
7、 by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-LIST OF FIGURES Figure 1 Geometry of Discretely Stiffened Cylinder 2 Geometric Detail of Eccentric Stiffeners 3 Circumferential and Longitudinal Radial Mode Shapes (w) of a Cylinder 4 Theoretical and Experiment
8、al Frequencies of an 5 Theoretical and Experimental Frequencies of an Unstiffened Clamped-Free Cylindrical Shell Unstiffened Freely-Supported Cylindrical Shell 6 Minimum Frequency of a Cylindrical Shell as a Function of the Number of Stringers with the Total Stringer Area and Torsional Stiffness Con
9、stant 7 Theoretical and Experimental Frequencies of a Freely-Supported Cylindrical Shell with Thirteen Equally Spaced Rings 8 Theoretical Axial Modes of a Freely-Supported Cylinder with Thirteen Equally Spaced Symmetric Rings (N=2) 9 Theoretical Axial Modes of a Freely-Supported Cylinder with Thirte
10、en Equally Spaced External Rings (N=2) 10 Theoretical Axial Modes of a Freely-Supported Cylinder with Thirteen Equally Spaced Symmetric Rings (N=lO) 11 Theoretical Axial Modes of a Freely-Supported Cylinder with Thirteen Equally Spaced External Rings (N=lO) 12 Theoretical and Experimental Frequencie
11、s of a Clamped-Free Cylindrical Shell with Three Rings and Sixteen Stringers 13 Theoretical Axial Modes of a Clamped-Free Cylinder with Three Rings and Sixteen Stringers (N=2)- 14 Theoretical Axial Modes of a Clamped-Free Cylinder with Three Rings and Sixteen Stringers (N=9) Page 6 -9 18 29 32 36 38
12、 42 43 44 45 49 52 53 vi Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Figure ,. Page 15 Theoretical Axial Modes of a Clamped-Free Cylinder with Three Rings and Sixteen Stringers (N=ll) 54 vi i Provided by IHSNot for ResaleNo reproduction or networ
13、king permitted without license from IHS-,-,-Table I I1 I11 IV V VI VI I LIST OF TABLES Shell Configurations used in Numerical Calculations Theoretical and Experimental Frequencies of an Unstiffened Clamped-Free Cylinder Theoretical and Experimental Frequencies of an Unstiffened Freely-Supported Cyli
14、nder Natural Frequencies of a Freely-Supported Cylindrical Shell with Four Internal Stringers Theoretical Frequencies of a Freely-Supported Cylinder with Thirteen Equally Spaced Rings Natural Frequencies of a Cylinder with Seven External Rings Theoretical and Expermental Frequencies of a Clamped-Fre
15、e Cylinder with Three Rings and Sixteen Stringers Page I 28 30 33 34 39 47 50 viii Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-a Ark7 D e IyzsE xzrk yysE xxrk cssE csrk K L m m* length of cylindrical shell. cross-sectional area of the kth ring ,
16、R stringer . th isotropic late flexural stiffness, t3/12 (l-v g 1 . strains. shell elastic modulus. elastic modulus of the kth ring, tth stringer. torsional stiffness of the kth ring, R stringer . th integers. moment of inertia of the kth stringer, kth ring cross-sectional area about an axis passing
17、 through the line of attachment and parallel to the z-axis. See Figure 2. product of inertia of the gth stringer, kth ring cross-sectional area about the yz, xz axes passing through the line of attachment. See Figure 2. moment of inertia of the kth stringer, kth ring cross-sectional area about the y
18、, x axis passing through the line of attachment. See Figure 2. cross stiffening parameters for the stringer, kth ring. See Appendix I. “ total number of rings. total number of stringers. axial wave number. maximum number of terms used in the axial dis- placement series. n number of circumferential f
19、ull waves. ix Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-n* R t T v u, v, w X Z rk rk A V w T Subscripts maximum number of terms used in the circumferential displacement series. radius of shell middle surface. shell thickness kinetic energy ; R+
20、t/2 In (-1 potential energy. shell middle surface displacements in the x, e, z directions. Bernoulli-Euler beam eigenfunctions. axial mode functions representing displacements in the x, 8, z directions. coordinates of kth stringer. kth ring centroidal axis referred to line 0f“atfachment. See Figure
21、2. coordinates of kth stringer, kth ring elastic axis referred to line of attachment. See Figure 2. v Kronecker delta function. frequency parameter, (1-v2) pC2w2/C. Poissons ratio of shell material. shell density. density of kth ring, kth stringer. angle of twist of a ring, stringer cross section ab
22、out its elastic axis. circular frequency. time refers to cylinder refers to the kth ring refers to the gth stringer X Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-r S refers to rings. refers to stringers. A coma before a subscript denotes partial
23、differentation with res ect to that subscript; e.g., v, denotes av/ay and w, denotes a2w/ax B . xi Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-INTRODUCTION The vibration analysis of stiffened cylindrical shells has been and continues to be of con
24、siderable interest to structural analysts because of the wide spread use of this or similar type structures in air, space, and water craft. The degree of interest and the complexity of the problem are reflected in the number of publications in the literature devoted to this topic. The investigative
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