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Comments Within the project, a life cycle costs optimization of industrial system is performed, combining it with life cycle environmental impacts and building a multi-objective optimization Supply chain and
 Domain 3: Digital, virtual and resource-efficient factories Taxon description cycle.
 RP 3.10 Design and management of Production Machinery and Processes Taxon description cycle.
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Description Targeting to showcase 40% reduction in resource consumption, 30% improvement in process robustness and accuracy, and 30% increase in productivity by reduced cycle times under more reliable and efficient
Comments characteristics Economic sustainability Circular economy Manufacturing performance characteristics Environmental sustainability Innovative re-use of equipment Manufacturing performance characteristics Product life
 Domain 3: Digital, virtual and resource-efficient factories Taxon description cycle.
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Description aluminium and steel components in terms of speed, costs, material use and reliability, also using a LCA/LCC approach, whilst producing work pieces with controlled and significantly increased fatigue life
 Life Cycle Thinking in decision-making for sustainability: from public policies to private businesses Evaluation of environmental sustainability in additive manufacturing processes for orthopaedic devic Result title Life Cycle Thinking in decision-making for sustainability: from public policies to private businesses Evaluation of environmental sustainability in additive manufacturing processes for orthopaedic devic
 Goal and Scope LCA and end of life scenarios Result description General and public introduction to the aim of LCA and end of life scenarios. A process/product preliminary environmental evaluation will be done.
 Domain 3: Digital, virtual and resource-efficient factories Taxon description cycle.
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Comments and evaluation of the overall impact and sustainability indicators of the developed complete manufacturing path against current State of the Art baseline (benchmarks), with throughful collection of the Life
 RP 1.12 Novel supply chain approaches for innovative products Taxon description The production of highly customised products with short life cycles addressing volatile markets will require new structures and operation strategies of their supply chains, comprehending the management
 Environmental sustainability Comments and evaluation of the overall impact and sustainability indicators of the developed complete manufacturing path against current State of the Art baseline (benchmarks), with throughful collection of the Life
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Comments in %) Additional KPIs Contribution to the reduction of energy use and CO2 emissions use of wood panels deriving from controlled production that enables to reach negative impacts of CO2 during product life
 RP 6.9 On-demand manufacturing of customer-centric products Taxon description Research must aim to a more coordinated and fast interaction between different tools and technologies serving product life cycle in order to go beyond common “one-stage” acceleration and by reducing their
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Comments characteristics Economic sustainability Circular economy Manufacturing performance characteristics Environmental sustainability Innovative re-use of equipment Manufacturing performance characteristics Product life
 Production System Opportunistic Maintenance Planning Result description Manufacturing system model: this module integrates the developed resource degradation models into a production system model (including finite capacity buffers, part routings, cycle times).
 RP 2.10 Adaptive Process Automation and Control for a sensing shop floor Taxon description cycle.
 Domain 3: Digital, virtual and resource-efficient factories Taxon description cycle.
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 Success Factor list for stimulating industrial exploitation as early as possible in the process of setting up a collaborative project Result description One of the main challenges is that industrial exploitation of project results needs to be addressed as soon as possible in the life-cycle of the project.
 Domain 3: Digital, virtual and resource-efficient factories Taxon description cycle.
 Domain 6: Customer-focused manufacturing Taxon description cycle.
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 Additive Manufacturing and PSS: a Solution Life-Cycle Perspective Result title Additive Manufacturing and PSS: a Solution Life-Cycle Perspective
 RP 6.12 Implementation of creativity and user-driven innovation through flexible design and manufacturing processes Taxon description Such technologies can decrease the time-to-market for new creative products as well as their life cycle costs by realizing finished parts directly from digital inputs.
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Comments characteristics Occupational safety and health Manufacturing performance characteristics Social sustainability Social sustainability could be integrated through knowledge sentiments throughout the product life-cycle
 Through-life Engineering in Product-service Systems – Tussles for Design and Implementation Result title Through-life Engineering in Product-service Systems – Tussles for Design and Implementation
 Psymbiosis case - tools industry Result description The final objective is related to the improvement of the sustainability across the entire product- service lifecycle through zero defect manufacturing and extension of the cutting tool life time.
 RP 6.1 Manufacturing Intelligence for informed Product Design Taxon description In order to cope with global competition, companies are increasing the number of new products introductions (NPI) in the market and consequently shortening the life cycle of the product itself.
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Description ., by providing services to optimise cycle time, cost, flexibility or resource usage. In addition to the supply chain improvements, the processes inside the company can be addressed and optimised.
Comments   R&I Objective 3.3: Transparency, trust and data integrity along the product and manufacturing life-cycle MIE Consultation 2020 (Closed) Specific Objective 3: New integrated business, product-service
 Periodic Reporting for period 2 - COMPOSITION (Ecosystem for Collaborative Manufacturing Processes – Intra- and Interfactory Integration and Automation) Result description Requirements of modern production processes stress the need of greater agility and flexibility leading to faster production cycles, increased productivity, less waste and more sustainable production.
 RP 2.10 Adaptive Process Automation and Control for a sensing shop floor Taxon description cycle.
 Domain 3: Digital, virtual and resource-efficient factories Taxon description cycle.
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Description In this way, it will optimize in-service efficiency through reduced failure rates and downtime due to repair, unplanned plant/production system outages and extension of component life.
Comments cycle.
 MAILLIS use case: Cold Rolling Mill Result description cycle.
 Manufacturing the products of the future Comments cycle.
 Novel materials Comments cycle.
 Autonomous Smart Factories Pathway Comments cycle.
 Specific Objective 1: Excellent, responsive and smart factories & supply chains Comments cycle.
 R&I Objective 2.4: Virtual end-to-end life-cycle engineering and manufacturing from product to production lines, factories, and networks Comments cycle.
 R&I Objective 4.4: Manufacturing Innovation and change management Comments cycle.
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Comments Consultation 2020 (Closed) Specific Objective 1: Excellent, responsive and smart factories & supply chains R&I Objective 2.5: Digital platforms and data management for circular product and production-systems life-cycles
 Energy-Based Prognosis of the Remaining Useful Life of the Coating Segments in Hot Rolling Mill Result title Energy-Based Prognosis of the Remaining Useful Life of the Coating Segments in Hot Rolling Mill
 Robotics Use Case Result description Prediction task triggered by a new robot cycle and generating a prediction label along with a RUL value.
 RP 3.2 Intelligent maintenance systems for increased reliability of production systems Taxon description Intelligent maintenance systems based on condition prediction mechanisms, RUL (Remaining Useful Life) estimation, and analysis of machines’ behaviour, operational parameters, and self-learning capabilities
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Description detection of current or emerging failure (Z-DIAGNOSE), the prevention of failure occurrence, building up, or even propagation in the production system (Z-PREVENT), the estimation of the remaining useful life
Comments Validation is executed at the industrial environment of 3 pilots and going towards the TRL7 R&I Objective 2.5: Digital platforms and data management for circular product and production-systems life-cycles
 Predictive Maintenance Platform Based on Integrated Strategies for Increased Operating Life of Factories Result title Predictive Maintenance Platform Based on Integrated Strategies for Increased Operating Life of Factories
 Z-Bre4k strategies and policies Result description Report on strategies and policies to improve maintainability and operating life of production systems.
 Domain 3: Digital, virtual and resource-efficient factories Taxon description cycle.
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Comments c) Developing and integrating a Life Cycle Analysis (LCA) and Parametric Life Cost Calculation Analysis (LCCA) models to support transparent analysis of ingredients
 R&I Objective 1.4: Artificial intelligence for productive, excellent, robust and agile manufacturing chains - Predictive manufacturing capabilities & logistics of the future Comments c) Developing and integrating a Life Cycle Analysis (LCA) and Parametric Life Cost Calculation Analysis (LCCA) models to support transparent analysis of ingredients