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optimized design
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Image
Published: 09 June 2014
Fig. 56 Process simulation for optimized design of melting and holding furnaces. Source: Ref 47
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Published: 15 June 2020
Fig. 3 Nacelle hinge bracket for Airbus A320 (a) and topology-optimized design produced by additive manufacturing (b). Courtesy of EADS and Altair (Ref 2,3)
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Series: ASM Handbook
Volume: 4C
Publisher: ASM International
Published: 09 June 2014
DOI: 10.31399/asm.hb.v04c.a0005892
EISBN: 978-1-62708-167-2
... Abstract Optimization plays a key role in the design of any structure or system, and electromagnetic devices are no exception. This article provides a description of the formulation of a design problem, and provides a review of the Paretian optimality. It focuses on nondominating sorting...
Abstract
Optimization plays a key role in the design of any structure or system, and electromagnetic devices are no exception. This article provides a description of the formulation of a design problem, and provides a review of the Paretian optimality. It focuses on nondominating sorting algorithms and multiobjective evolutionary strategy algorithms associated with evolutionary computing. The article provides information on field-based optimization problems. It also discusses the design of the pancake inductor that implies the solution of coupled electromagnetic and thermal fields, along with the use of optimal design procedures, to identify the best possible device or process.
Image
Published: 01 January 1993
Fig. 47 Optimization of brazing design. (a) Initial design. (b) Optimal design of brazed titanium tubing to copper or stainless steel sleeve
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Series: ASM Handbook
Volume: 20
Publisher: ASM International
Published: 01 January 1997
DOI: 10.31399/asm.hb.v20.a0002446
EISBN: 978-1-62708-194-8
... Abstract This article discusses tools that are used for the systematic optimization of engineering designs. It focuses on the practical application of optimization technology in a computer-aided engineering environment. The article presents numerical optimization algorithms and provides some...
Abstract
This article discusses tools that are used for the systematic optimization of engineering designs. It focuses on the practical application of optimization technology in a computer-aided engineering environment. The article presents numerical optimization algorithms and provides some background on how these algorithms make decisions when searching for the optimal design. It also provides information on structural optimization, topology optimization, materials processing optimization, multidisciplinary optimization, and global optimization.
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in Additive Manufacturing in the Oil and Gas Industry
> Additive Manufacturing Design and Applications
Published: 30 June 2023
Fig. 11 Topology optimization design of valve body. CNC, computer numerical control. Courtesy of Baker Hughes
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Image
in Simulation-Driven Design and the Role of Optimization in Design for Additive Manufacturing
> Additive Manufacturing Design and Applications
Published: 30 June 2023
Fig. 18 Multimaterial topology optimization design on a cantilever beam case. (a) Design problem. (b) Deterministic solution. (c) Robust solution. Adapted from Ref 107
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Series: ASM Handbook
Volume: 22B
Publisher: ASM International
Published: 01 November 2010
DOI: 10.31399/asm.hb.v22b.a0005505
EISBN: 978-1-62708-197-9
... stochastic optimization problem OPTIMIZATION FINDS APPLICATION in every branch of engineering and science. The process of optimization involves choosing the best solution from a pool of potential candidate solutions such that the chosen solution exceeds the rest in certain aspects. Design optimization...
Abstract
The process of optimization involves choosing the best solution from a pool of potential candidate solutions. This article provides a description of some classes of problems and the optimization methods that solve them. These problems include the deterministic single-objective problem, the deterministic multiobjective problem, and the nondeterministic, stochastic optimization problem. The article presents several complementary approaches to solve a wide variety of single-objective and multiobjective mechanical engineering applications. Multiobjective optimization study and stochastic optimization studies are also discussed.
Series: ASM Handbook
Volume: 14A
Publisher: ASM International
Published: 01 January 2005
DOI: 10.31399/asm.hb.v14a.a0004022
EISBN: 978-1-62708-185-6
... procedures: defining the objective function, calculating the objective function, and searching an optimum design. It concludes with an example illustrating the optimization of conical-die extrusion. conical-die extrusion dies forming optimum design DIE AND PREFORM OPTIMIZATION is an activity...
Abstract
For forming processes, optimization goals range from tuning the process parameters while keeping geometry unchanged to finding optimal geometry for intermediate dies in a multistage forming operation. This article commences with a description on the three salient steps of optimization procedures: defining the objective function, calculating the objective function, and searching an optimum design. It concludes with an example illustrating the optimization of conical-die extrusion.
Series: ASM Handbook
Volume: 24A
Publisher: ASM International
Published: 30 June 2023
DOI: 10.31399/asm.hb.v24A.a0006950
EISBN: 978-1-62708-439-0
...-for-additive-manufacturing (DFAM) principles are design optimization (DO) and simulation-driven design (SDD). In line with the adoption of AM processes by industry and extensive research efforts in the research community, this article focuses on powder-bed fusion for metal AM and material extrusion for polymer...
Abstract
Additive manufacturing (AM) provides exceptional design flexibility, enabling the manufacture of parts with shapes and functions not viable with traditional manufacturing processes. The two paradigms aiming to leverage computational methods to design AM parts imbuing the design-for-additive-manufacturing (DFAM) principles are design optimization (DO) and simulation-driven design (SDD). In line with the adoption of AM processes by industry and extensive research efforts in the research community, this article focuses on powder-bed fusion for metal AM and material extrusion for polymer AM. It includes detailed sections on SDD and DO as well as three case studies on the adoption of SDD, DO, and artificial-intelligence-based DFAM in real-life engineering applications, highlighting the benefits of these methods for the wider adoption of AM in the manufacturing industry.
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Published: 01 January 1997
Fig. 7 Optimal riser design for metal casting. (a) Computed solidus isochrones on the symmetry plane for the initial infeasible design. Also shown are the elements specified to enforce directional solidification. (b) Casting regions with liquid after 1565 s for the original (infeasible
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in Simulation-Driven Design and the Role of Optimization in Design for Additive Manufacturing
> Additive Manufacturing Design and Applications
Published: 30 June 2023
Fig. 1 Role of design optimization (DO) and simulation-driven design (SDD) in the initial design stage. DFAM, design for additive manufacturing
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Image
Published: 01 January 2005
Fig. 75 An example of optimal preform design in two-dimensional application. (a) Final forging shape without preform die. (b) Initial preform and final forging shape. (c) Evolved preform die shapes during optimization iteration. (d) Optimal preform and final forging shape. (e) Effective
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Published: 01 December 2008
Fig. 13 Gating system designs for optimizing the effectiveness of ceramic filters in horizontally parted molds having sprue:filter:runner:ingate cross-sectional area ratios of (a) 1:3–6:1.1:1.2 and (b) 1.2:3–6:1.0:1.1
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Published: 01 December 2008
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Published: 01 October 2014
Fig. 21 Integrated framework for design optimization. FEA, finite-element analysis. Source: Ref 50
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Published: 01 January 1993
Fig. 22 Joint designs to optimize strength and tool life of brazed carbide tool assemblies. In each set, the right-most drawing represents an improved design.
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Published: 01 January 2001
Fig. 1 Example of a design trade-off study used to select optimal composite materials and processes
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Image
Published: 01 November 2010
Fig. 75 An example of optimal preform design in two-dimensional application. (a) Final forging shape without preform die. (b) Initial preform and final forging shape. (c) Evolved preform die shapes during optimization iteration. (d) Optimal preform and final forging shape. (e) Effective
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in Introduction to Design for Additive Manufacturing
> Additive Manufacturing Design and Applications
Published: 30 June 2023
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