Machine tools and production systems are traditionally designed in two separate stages, thus severely penalize the possibility to match customer production requirements. This work introduces the concept of dematerialization for machine tools and systems whose design principles answer to energy savings and cutting edge performance requirements across their lifecycles. The proposed approach consists of four main steps: new business total-life cycle services, design of dematerialized machine tools, process planning and configuration of production system solutions. The benefits coming from the adoption of machine and system dematerialization strategy have been addressed with reference to an industrial case study.

Holistic Approach for Jointly Designing Dematerialized Machine Tools and Production Systems Enabling Flexibility-Oriented Business Models

Copani;Giacomo;Leonesio;Marco;Lorenzo;Pellegrinelli;Stefania;Valente;Anna;
2012

Abstract

Machine tools and production systems are traditionally designed in two separate stages, thus severely penalize the possibility to match customer production requirements. This work introduces the concept of dematerialization for machine tools and systems whose design principles answer to energy savings and cutting edge performance requirements across their lifecycles. The proposed approach consists of four main steps: new business total-life cycle services, design of dematerialized machine tools, process planning and configuration of production system solutions. The benefits coming from the adoption of machine and system dematerialization strategy have been addressed with reference to an industrial case study.
2012
Istituto di Sistemi e Tecnologie Industriali Intelligenti per il Manifatturiero Avanzato - STIIMA (ex ITIA)
978-3-642-29068-8
Machine and System joint design
Dematerialization
Machine and System lifecycles
Energy conscious design
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/196873
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