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Enhancements of Tow-Steering Design Techniques: Design of Rectangular Panel Under Combined LoadsAn extension to existing design tools that utilize tow-steering is presented which is used to investigate the use of elastic tailoring for a flat panel with a central hole under combined loads of compression and shear. The elastic tailoring is characterized by tow-steering within individual lamina as well as a novel approach based on selective reinforcement, which attempts to minimize compliance through the use of Cellular Automata design concepts. The selective reinforcement designs lack any consideration of manufacturing constraints, so a new tow-steered path definition was developed to translate the prototype selective reinforcement designs into manufacturable plies. The minimum weight design of a flat panel under combined loading was based on a model provided by NASA-Langley personnel and analyzed by STAGS within the OLGA design environment. Baseline designs using traditional straight fiber plies were generated, as well as tow-steered designs which incorporated parallel, tow-drop, and overlap plies within the laminate. These results indicated that the overlap method provided the best improvement with regards to weight and performance as compared to traditional constant stiffness monocoque panels, though the laminates did not measure up to similar designs from the literature using sandwich and isogrid constructions. Further design studies were conducted using various numbers of the selective reinforcement plies at the core and outer surface of the laminate. None of these configurations exhibited notable advantages with regard to weight or buckling performance. This was due to the fact that the minimization of the compliance tended to direct the major stresses toward the center of the panel, which decreased the ability of the structure to withstand loads leading to instability.
Document ID
20050217093
Acquisition Source
Langley Research Center
Document Type
Contractor Report (CR)
Authors
Tatting, Brian F.
(Adoptech, Inc. Blacksburg, VA, United States)
Setoodeh, Shahriar
(Adoptech, Inc. Blacksburg, VA, United States)
Gurdal, Zafer
(Virginia Polytechnic Inst. and State Univ. Blacksburg, VA, United States)
Date Acquired
September 7, 2013
Publication Date
September 1, 2005
Subject Category
Structural Mechanics
Report/Patent Number
NASA/CR-2005-213911
Report Number: NASA/CR-2005-213911
Funding Number(s)
CONTRACT_GRANT: NAS1-00135
WBS: WBS 23-064-30-34
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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