NASA-CR-742-1967 Damping of structural composites with viscoelastic shear-damping mechanisms《具有粘弹性剪切阻尼机构的结构性复合材料阻尼》.pdf
《NASA-CR-742-1967 Damping of structural composites with viscoelastic shear-damping mechanisms《具有粘弹性剪切阻尼机构的结构性复合材料阻尼》.pdf》由会员分享,可在线阅读,更多相关《NASA-CR-742-1967 Damping of structural composites with viscoelastic shear-damping mechanisms《具有粘弹性剪切阻尼机构的结构性复合材料阻尼》.pdf(183页珍藏版)》请在麦多课文档分享上搜索。
1、NASA CONTRACTOR REPORT DAMPING OF STRUCTURAL COMPOSITES WITH VISCOELASTIC SHEAR-DAMPING MECHANISMS by Jerome E. Rnzickd, T15omus F. Derby, D Prepared by BARRY WRIGHT CORPORATION Watertown, Mass. ;= for Lazzgley Research Center NATIONAL AERONAUTICS AND SPACE ADMINISTRATION . WASHINGTON, D. C. . MARCH
2、 1967 f Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-TECH LIBRARY KAFB, NM IlObOLOB NASA Cl-t-14X DAMPING OF STRUCTURAL COMPOSITES WITH VISCOELASTIC SHEAR-DAMPING MECHANISMS By Jerome E. Ruzicka, Thomas F. Derby, Dale W. Schubert, and Jerome S. Pe
3、pi Distribution of this report is provided in the interest of information exchange. Responsibility for the contents resides in the author or organization that prepared it. Prepared under Contract No. NAS l-5640 by BARRY WRIGHT CORPORATION Watertown, Mass. for Langley Research Center NATIONAL AERONAU
4、TICS AND SPACE ADMINISTRATION For sale by the Clearinghouse for Federal Scientific and Tcchnicol Information Springfield, Virginia 22151 - CFSTI price $3.00 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Provided by IHSNot for ResaleNo reproduction
5、or networking permitted without license from IHS-,-,-DAMPING OF STRUCTURAL COMPOSITES WITH VISCOELASTIC SHEAR-DAMPING MECHANISMS By Jerome E. Ruzicka, Thomas F. Derby, Dale W. Schubert and Jerome S. Pepi ABSTRACT An investigation is conducted to evaluate the so-called geometrical parameter of struct
6、ural composites with viscoelastic shear-damping mechanisms. Design equations and graphs are developed for the geometrical parameter of a wide range of viscoelastic shear-damped structural composite designs. Using existing theory, manual and automated procedures are develo,ped for the prediction of t
7、he structure loss factor of structuralcomposites comprised of two elastic elements separated by a thin viscoelastic damping layer. Laboratory experiments are performed to verify the basic theory and design procedures developed. A comparison of theoretical predictions and experimental measurements of
8、 the structure loss factor is made for two- elastic-element structural composites fabricated from various combinations of structural materials including aluminum, steel and fibre-glass. iii Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Provided by
9、IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-CONTENTS Page SUMMARY SECTION 1: INTRODUCTION SECTION 2: ANALYSIS AND DESIGN DATA FOR GEOMETRICAL PARAMETER Geometrical Parameter Analyses Two-elastic-element structural composites Three-elastic-element structural
10、composites Cell-insert structural composites Orthogonally symmetric cross-sections Effect of symmetrica 1 shea thing addition Formulation of Design Parameters Effect of viscoelastic damping layer thickness Equivalent modulus concept Geometrica 1 Parameter Design Data Laminated structural sheets Cons
11、trained honeycomb sheets Laminated honeycomb sheets Box-beam and I-beam constructions Structural bar designs Structural tube designs Structural shape beams Dumbbell model Geometrical Parameter Design Considerations SECTION 3: DESIGN OF TWO-ELASTIC-ELEMENT STRUCTURAL COMPOSITES Fundamellta 1 Equation
12、s for Damping Parameters Basic assumptions of theory Typical structural composite designs Development of Design Equations and Graphs Coupling parameter Z Resonant frequency ratio f/f0 Shear parameter X Generalized shear parameter equation Optimum shear parameter Xop Maximum structure loss factor qma
13、x Loss factor ratio r,/rlrnax Optimum frequency parameter 51 op Manual Design Procedure Automa ted Design Procedure Temperature Effects Other Design Considerations Static stiffness Weight Static load distribution 1 2 7 a 9 10 11 12 13 14 15 la 22 22 24 25 25 26 28 30 31 31 34 34 36 36 37 38 39 40 41
14、 41 .42 42 43 44 48 49 50 50 51 52 V Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-,., . -. - . _ -_-_ . _ - -,. . -._,- -,. _ . _ - ._ . .-. - _ Page SECTION 4: EXPERIMENTAL VERIFICATION OF DESIGN PROCEDURE FOR TWO-ELASTIC-ELEMENT STRUCTURAL COMPO
15、SITES 53 Design Procedure Application Example 53 Measurement of Structure Loss Factor 58 Theoretical and Experimental Structure Loss Factor Data 61 Sources of errors 62 Statistical analysis of experimental data 64 CONCLUSIONS 66 REFERENCES 68 FIGURES 70-176 vi Provided by IHSNot for ResaleNo reprodu
16、ction or networking permitted without license from IHS-,-,-DAMPING OF STRUCTURAL COMPOSITES WITH VISCOELASTIC SHEAR-DAMPING MECHANISMS By Jerome E. Ruzicka, Thomas F. Derby, Dale W. Schubert and Jerome S. Pepi Barry Controls Division of Barry Wright Corporation Watertown, Massachusetts SUMMARY An in
17、vestigation of parameters important in the design of structural composites with viscoelastic shear-damping mechanisms has been conducted. Design equations and graphs are developed for the so-calied geometrical parameter of a wide range of viscoelastic shear-damped structural composites, which includ
18、e: laminated beams and plates (comprised of solid and/or honeycomb structural sheets), box-beam constructions, bars of various cross-sections, square and circular tubes, structural shape beams including angle, channel, T- and I-sections, and a dumbbell model (which frequently provides a simplified r
19、epresentation of a more complex structural assembly). Using existing theory, manual and automated design procedures for the prediction of structure loss factor are developed for viscoelastic shear-damped structural composites comprised of two elastic elements separated by a thin viscoelastic damping
20、 layer. The design procedures which apply for any cross- section geometry and arbitrary structural and viscoelastic material properties, are used to predict the damping characteristics of a wide range of two-elastic- element structural composite beams employed in an experimental verification program
21、, As a design example, the details of the numerical calculations for a typical structural composite beam are presented. Laboratory experiments have been performed to verify the theoretical predictions and to provide insight into practical design considerations. A comparison of theoretical prediction
22、s and experimental measurements of the structure loss factor is made for two-elastic-element structural composites fabricated from various combinations of structural materials including aluminum, steel and fibre-glass. Structural specimens include laminated beams comprised of solid sheets, solid and
23、 honeycomb sheets, honeycomb sheets, and structural channels. A total of 118 loss factor measurements were made for various free-free bending modes of 27 different beam specimens. A statistical analysis of this data compared to the theoretical values of loss factor indicated that the difference had
24、a mean value of 0.6 per cent and a standard deviation of approximately 30 per cent. Consequently, it is concluded that the existing theory and the procedures developed for the prediction of the loss factor of two-elastic element viscoelastic shear-damped structural composites is satisfactory within
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