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| موضوع: بحث بعنوان A Four-node Facet Shell Element for Laminated Shells Based on the Third Order Zigzag Theory الإثنين 12 أبريل 2021, 5:44 pm | |
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أخوانى فى الله أحضرت لكم بحث بعنوان A Four-node Facet Shell Element for Laminated Shells Based on the Third Order Zigzag Theory Adnan Ahmed a, Santosh Kapuria a,b,⇑ a Department of Applied Mechanics, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India b CSIR-Structural Engineering Research Centre, CSIR Campus, Taramani, Chennai 600113, India
و المحتوى كما يلي :
a b s t r a c t In this work, we develop a facet shell element for deep laminated shells, by extending a successful fournode quadrilateral element for laminated plates based on the efficient third order zigzag theory. The obstacle course test comprising of three standard problems is undertaken to examine its performance for various modes of shell behavior. The absence of shear and membrane locking problems is established through the analysis of ultra thin shells. The accuracy of the element is assessed for the static and free vibration responses of composite and sandwich shells in comparison with the three dimensional elasticity solutions. In terms of accuracy, computational efficiency and robustness, the present element is shown to give better performance than various classical and recent finite elements considered in this study. In the case of sandwich shells, for which the equivalent single layer theories showed a high level of error, the present element is shown to yield more accurate results than even the higher-order sandwich shell theories that have been developed specifically for the three-layer sandwich shells. a r t i c l e i n f o Article history: Received 3 July 2016 Revised 31 August 2016 Accepted 2 September 2016 Available online 7 September 2016 Keywords: Finite element Shell Laminate Composite Sandwich Zigzag theory Conclusion A four-node facet shell element has been developed for the analysis of general laminated shell structures using the computationally efficient and accurate third order zigzag theory. The FE for the smeared third order theory having the same number of DOFs is also developed as a special case. The element has been tested against the three-problem standard obstacle course that was compiled by Belytschko et al. [56] to examine the performance of shell elements in various modes of shell behavior for isotropic shells. The comparison with the similar test results of other classical and recent shell elements shows that the present element is among the best performers of all major available shell elements for isotropic shells. Further, the results obtained for ultra-thin cases of the obstacle course problems show that the present element is free from shear and membrane locking problems. The accuracy of the present element has been examined for singly- and doubly-curved composite and sandwich deep shells in comparison with the 3D elasticity solutions, and other available 2D theory based analytical and FE solutions. The comparison shows that the present ZIGT FE results are in excellent agreement with the 3D elasticity solutions as well as the analytical solutions of the ZIGT. For sandwich shells, the ZIGT FE results are even more accurate than the HSAST’s which were specially developed for three-layer sandwich shells [79,80]. On the other hand, the ESL theories yield unacceptably high level of error (38–294%) even for the fundamental natural frequency of moderately thick sandwich shells. The detailed numerical study reveals that the present ZIGT based element is superior to all other available elements for deep laminated shells in terms of accuracy, computational efficiency and robustness and has been shown to perform well for all boundary conditions, shell geometries and laminate configurations considered here for both stress and free vibration analysis.
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