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Enhanced Hybrid Cellular Automata Method for Crashworthiness Topology Optimization of Thin-walled Structures

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Release : 2019
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Kind : eBook
Book Rating : 361/5 ( reviews)

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Book Synopsis Enhanced Hybrid Cellular Automata Method for Crashworthiness Topology Optimization of Thin-walled Structures by : Duo Zeng

Download or read book Enhanced Hybrid Cellular Automata Method for Crashworthiness Topology Optimization of Thin-walled Structures written by Duo Zeng. This book was released on 2019. Available in PDF, EPUB and Kindle. Book excerpt:

Topology Optimisation in Crashworthiness Design Via Hybrid Cellular Automata for Thin Walled Structures

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Author :
Release : 2014
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Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Topology Optimisation in Crashworthiness Design Via Hybrid Cellular Automata for Thin Walled Structures by : Stephan Hunkeler

Download or read book Topology Optimisation in Crashworthiness Design Via Hybrid Cellular Automata for Thin Walled Structures written by Stephan Hunkeler. This book was released on 2014. Available in PDF, EPUB and Kindle. Book excerpt:

Advances in Structural and Multidisciplinary Optimization

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Release : 2017-12-04
Genre : Science
Kind : eBook
Book Rating : 880/5 ( reviews)

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Book Synopsis Advances in Structural and Multidisciplinary Optimization by : Axel Schumacher

Download or read book Advances in Structural and Multidisciplinary Optimization written by Axel Schumacher. This book was released on 2017-12-04. Available in PDF, EPUB and Kindle. Book excerpt: The volume includes papers from the WSCMO conference in Braunschweig 2017 presenting research of all aspects of the optimal design of structures as well as multidisciplinary design optimization where the involved disciplines deal with the analysis of solids, fluids or other field problems. Also presented are practical applications of optimization methods and the corresponding software development in all branches of technology.

Structural Topology Optimization Using Hybrid Cellular Automata

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Release : 2012-08-31
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Kind : eBook
Book Rating : 250/5 ( reviews)

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Book Synopsis Structural Topology Optimization Using Hybrid Cellular Automata by : Prof, Andres Tovar

Download or read book Structural Topology Optimization Using Hybrid Cellular Automata written by Prof, Andres Tovar. This book was released on 2012-08-31. Available in PDF, EPUB and Kindle. Book excerpt: Introduces and examines the Hybrid Cellular Automata (HCA) Methodology, a highly original & promising approach to topology optimization that allows engineers to design components to meet performance specifications with reduced materials and manufacturing costs. Structural Topology Optimization Using Hybrid Cellular Automata Methodology introduces and examines the Hybrid Cellular Automata (HCA) Methodology, a new computational approach to topology optimization. The HCA methodology combines finite-element based structural optimization with a cellular automaton framework, and allows engineers to design components to withstand extreme loading conditions, including crash and blast, that meet performance specifications at a reduced cost in terms of both material used and the required manufacturing process. The authors explore the relevance of the HCA method as a tool for the design of optimal structures, describing the background, development and applications of the technology and how it solves various problems. Through enabling the reader to understand how optimization has led varying species to be able to adapt themselves to their ever-changing environments and explaining the application of a technique that will give them a competitive advantage in industry, this book supplies the reader with a tool to become an efficient and effective designer. Describes a highly original & promising methodology that allows engineers to design components to withstand extreme loading conditions, including crash and blast, that meet performance specifications at a reduced cost in terms of both material used and the required manufacturing process. Explores the relevance of the HCA method as a tool for the design of optimal structures, describing the background, development and applications of the technology and how it solves various problems Summarises other topology optimization techniques and shows how the HCA methods improves on these and can be applied to quite complex engineering problems which are very difficult to solve using conventional topology optimization methods. Includes problems and solutions at the end of each chapter, and an accompanying website that hosts a computer programme for HCA.

Topology Optimization of Structures Using Hybrid Cellular Automata

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Release : 2009
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Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Topology Optimization of Structures Using Hybrid Cellular Automata by : Raghavender P. Cheerkapally

Download or read book Topology Optimization of Structures Using Hybrid Cellular Automata written by Raghavender P. Cheerkapally. This book was released on 2009. Available in PDF, EPUB and Kindle. Book excerpt: Topology optimization is a rapidly growing field and is extensively used in the product development cycle. The goal of topology optimization is to attain the best distribution of material for a given objective function with certain constraints. In this thesis, we use the hybrid cellular automata (HCA) methodology as a tool for topology optimization. The HCA paradigm integrates local design rules from the cellular automata framework with a grid-based computational method like finite element analysis. The updating process is achieved through local communication among the automata based on a set of pre-defined rules; this leads the structure to an equilibrium state at which point no further updating is required. In this work, we discuss the use of the HCA approach to solve two different problems: design of materials with prescribed constitutive properties, and design of structures with minimum mass and compliance. The problem of designing of periodic materials can be formulated as an inverse homogenization problem, where the goal is to design the base cell of structure such that the macroscopic properties of the material match the prescribed values. The second problem is formulated with an objective function considering the structure's mass and compliance. Several numerical experiments illustrating the HCA approach and its efficacy are discussed.

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