Volume 2B: 43rd Design Automation Conference 2017
DOI: 10.1115/detc2017-67570
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A Goal-Oriented, Inverse Decision-Based Design Method to Achieve the Vertical and Horizontal Integration of Models in a Hot Rod Rolling Process Chain

Abstract: Reducing the manufacturing and marketing time of products by means of integrated simulation-based design and development of the material, product, and the associated manufacturing processes is the need of the hour for industry. This requires the design of materials to targeted performance goals through bottom-up and top-down modeling and simulation practices that enables handshakes between modelers and designers along the entire product realization process. Manufacturing a product involves a host of unit opera… Show more

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Cited by 24 publications
(2 citation statements)
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“…This project is a part of the collaborative project with the Systems Realization Laboratory at the University of Oklahoma in which the collaborators are focused on developing a methodology for predicting mechanical properties of the product via the vertical and horizontal integrations in a multi-stage hot rod rolling system as shown in Figure 5 (red box) [8]. Figure 5.…”
Section: Cellular Automata Simulation Projectmentioning
confidence: 99%
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“…This project is a part of the collaborative project with the Systems Realization Laboratory at the University of Oklahoma in which the collaborators are focused on developing a methodology for predicting mechanical properties of the product via the vertical and horizontal integrations in a multi-stage hot rod rolling system as shown in Figure 5 (red box) [8]. Figure 5.…”
Section: Cellular Automata Simulation Projectmentioning
confidence: 99%
“…Figure 5. Vertical and horizontal integration of models and information flow [8] In gear manufacturing, rolling is used to break casting structures and reduce casting defects. The hot rolling process involves increasing the metal temperature above its recrystallization temperature.…”
Section: Cellular Automata Simulation Projectmentioning
confidence: 99%