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Titlebook: Evolutionary Structural Optimization; Y. M. Xie,G. P. Steven Book 1997 Springer-Verlag London 1997 Fundament.Kette.beam.design.design proc

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Mechelle Chestnut MA, MT-BC, LCATng. Optimum structural design against buckling may be achieved by shifting material from the strongest locations to the weakest so that the fmal design may have a much higher buckling load than that of the initial design of the same weight. This chapter describes the evolutionary procedure for the o
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Marcello Allegretti,Silvano Colettiresent in a given structure. This maximum provided the basis of a design limit despite the obvious fact that, often, the bulk of the surface of the structure was at a much lower stress. This chapter demonstrates how the ESO technique can be used to provide structural shapes where the boundary is evo
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Kristian Steiner,Andreas Önnerforsce for a structure, be it a bridge or a space vehicle or a spectacle frame. All aspects of the environment the structure lives in must be accommodated even undesirable ones, crash worthiness of cars being an example.
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ESO for Multiple Load Cases and Multiple Support Environments,es. The former is referred to as structures with ., and the later .. The ESO procedures for the optimal design of structures with multiple load cases and multiple support environments are the topics of this chapter. Original research on these topics was first reported by Xie and Steven (1994) and Steven . (1995).
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https://doi.org/10.1007/978-1-4471-0985-3Fundament; Kette; beam; design; design process; engineering design; environment; finite element method; opti
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