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Description For this reason the FlexHyJoin project combines laser joining (LJ) for complex, smaller geometries and induction joining (IJ) for larger geometries in a single prototype production cell.
Comments structures, geometries and scale Manufacturing future products Manufacturing the products of the future Customised products Manufacturing future products Manufacturing the products of the future Resource
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 RP 1.2 Advanced joining technologies for advanced and multi-materials Taxon description and modular structures (including actuation, sensing).
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Comments Manufacturing the products of the future Manufacturing future products Complex structures, geometries and scale Manufacturing future products Manufacturing the products of the future Customised products
 Efficient validation of many measurement processes/validation of complex measurement processes Result title Efficient validation of many measurement processes/validation of complex measurement processes
 GKN DEMO Result description Once those geometries are measured, data is analysed and optimal combinations of components for the assembly are suggested.
 Development of two guidelines for the efficient proof of capability of (1) many and (2) complex measurement processes Result acronym Guidelines proof of capability / complex measurement
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments Manufacturing the products of the future Manufacturing future products Complex structures, geometries and scale Manufacturing future products Manufacturing the products of the future MANUWORK Augmentede
 Volvo use case: AR visualization of industrial simulation Result description Industrial simulation can be very complex, making engineers’ collaboration even more difficult. Furthermore, in large scale models, the perception of the actual model is not a one-man job.
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
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Description However, high temperature microwave heating has not been implemented as a full-scale industrial-processing.
Comments Sub-Domain 1.2 Complex structures, geometries and scale Domain 1: Advanced manufacturing processes Domain 2: Adaptive and smart manufacturing systems FoF Partnership SRIA Research priorities Sub-Domain
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description A multi scale simulation strategy will be developed for determination of acting loads, deformation, impacting conditions, joint formation, and load capacity of the joint.
Comments priorities Domain 1: Advanced manufacturing processes RP 1.6 Material efficient Manufacturing processes FoF Partnership SRIA Research priorities Sub-Domain 1.2 Complex structures, geometries and scale
 Report on numerical lifetime prediction method for EMW equipment Result description This task is complex by definition since the modelling of the multi-materials must be considered.
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments SRIA Research priorities Sub-Domain 1.1 Processing novel materials and structures (into products) Domain 1: Advanced manufacturing processes Sub-Domain 1.2 Complex structures, geometries and scale FoF
 Report on pilot scale production stability Result title Report on pilot scale production stability
 Improved Global model Result description The Global Model will have been improved by use of the results of the validation experiments, and will have been extended by allowing for more generic laser power distributions and more complex geometries
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing

EUROC | European Robotics Challenges

01-01-2014

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31-12-2017

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Comments (into products) FoF Partnership SRIA Research priorities Domain 1: Advanced manufacturing processes Sub-Domain 1.2 Complex structures, geometries and scale FoF Partnership SRIA Research priorities Domain
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description Industry has to face manufacturing targets that are even more challenging when they have to deal with new complex products of bigger/smaller size or made of new materials and with more severe quality requirements
Comments RP 1.7 High Volume Manufacturing at the micro- and nano-scale FoF Partnership SRIA Research priorities Sub-Domain 1.2 Complex structures, geometries and scale Domain 1: Advanced manufacturing processes
 Multi-scale modelling from multi-sensor data fusion for visualization, design, analysis and additive manufacturing Result title Multi-scale modelling from multi-sensor data fusion for visualization, design, analysis and additive manufacturing Result description - Integrating multi-scale, multi-resolution data provided by different sensors - Reconstructing of multi-scale scanned data.
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 RP 1.2 Advanced joining technologies for advanced and multi-materials Taxon description and modular structures (including actuation, sensing).
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Comments Research priorities Sub-Domain 1.2 Complex structures, geometries and scale Domain 1: Advanced manufacturing processes Domain 2: Adaptive and smart manufacturing systems FoF Partnership SRIA Research
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments 1.1 Processing novel materials and structures (into products) Domain 1: Advanced manufacturing processes Sub-Domain 1.2 Complex structures, geometries and scale FoF Partnership SRIA Research priorities
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description the ECOMISE approach will be evaluated and demonstrated by pilot implementations for industrial use-cases, considering particularities for volume part (automotive), large part (aeronautic) and thick complex
Comments Complex structures, geometries and scale Domain 1: Advanced manufacturing processes RP 1.9 Integrated manufacturing processes FoF Partnership SRIA Research priorities Sub-Domain 1.2 Complex structures
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 RP 1.5 Delivery of new functionalities through (mass production) surface manufacturing processes Taxon description Novel technologies and approaches are needed to embed true smartness into structures and scale-up of all processes is of equal importance.
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Description Thus the SCAIL-UP consortium will work on the design, development and validation of an industrial scale pilot plant that will be able to electroplate Al on current 3D polymeric (ABS) and metal (nickel
Comments Manufacturing the products of the future Manufacturing future products Novel materials Manufacturing future products Manufacturing the products of the future Complex structures, geometries and scale
 Process to produce coatings for automotive sector by electrodeposition of Aluminium from ionic liquids Result description of aluminium will be extended to 3d and complex –shaped objects that are not currently available in the automotive market.
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments manufacturing processes RP 1.7 High Volume Manufacturing at the micro- and nano-scale FoF Partnership SRIA Research priorities Sub-Domain 1.2 Complex structures, geometries and scale Domain 1: Advanced
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description It is first kind of the machine developed specifically for the manufacture of miniature to micro-sized bulk components with controlled micro-structures, using a wide range of powder materials.
Comments Complex structures, geometries and scale Manufacturing future products Manufacturing the products of the future The parts to be manufactured in the project are miniaturised components with complex geometries
 Multiscale modelling methods and the software for the analysis of the Micro-FAST process Result description ICL is developing modelling methods and a system for multi-scale analysis and integrated process-simulation, predictions of microstructure/pore and of the component-forms at the macro-scale for the components
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description The primary goal of HiPr is to develop and integrate all necessary base technologies which create the basis to control and monitor the condition of micro-tooling for complex high-precision 3D parts.
Comments Domain 1: Advanced manufacturing processes RP 1.7 High Volume Manufacturing at the micro- and nano-scale FoF Partnership SRIA Research priorities Sub-Domain 1.2 Complex structures, geometries and scale
 Final Report Summary - HIPR (High-Precision micro-forming of complex 3D parts) Result title Final Report Summary - HIPR (High-Precision micro-forming of complex 3D parts)
  15t Press micro-manufacturing pilot line Result description Thanks to these sensors (temperature, strain, force...) the stamping process is monitored, at the scale of every single punch.
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description However, due to the extreme properties of this group of materials, efficient and precise generation of complex 3D freeform geometries and structures to meet the needs for a further development of high-performance
Comments Complex structures, geometries and scale Manufacturing future products Manufacturing the products of the future The laser processes developed in DIPLAT enable the machining of compex geometries on different
 Tangential laser finishing Result description By using two optical and five mechanical axes and appropriate tangential strategies, its ability to process complex 3D tool geometries at high precision in ultrahard materials is demonstrated.
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments Manufacturing the products of the future Manufacturing future products Novel materials Manufacturing future products Manufacturing the products of the future Complex structures, geometries and scale
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description Multi-scale metal/CFRP modelling, self-adaptive process control, and quality diagnosis based on multimodal active imaging.
Comments 1.1 Processing novel materials and structures (into products) Domain 1: Advanced manufacturing processes Sub-Domain 1.2 Complex structures, geometries and scale FoF Partnership SRIA Research priorities
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description The patterns produced are used to form integrated optics components or three-dimensional structures such as fluidic channels and micro-mechanical components.
Comments RP 1.7 High Volume Manufacturing at the micro- and nano-scale FoF Partnership SRIA Research priorities Sub-Domain 1.2 Complex structures, geometries and scale Domain 1: Advanced manufacturing processes
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 RP 1.5 Delivery of new functionalities through (mass production) surface manufacturing processes Taxon description Novel technologies and approaches are needed to embed true smartness into structures and scale-up of all processes is of equal importance.
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Description Setting up the draping process for a complex part takes up to 50 preforms for trial-and-error improvements.
Comments novel materials and structures (into products) Domain 1: Advanced manufacturing processes Sub-Domain 1.2 Complex structures, geometries and scale FoF Partnership SRIA Research priorities Domain 1: Advanced
 Robot for Measuring Fibre Angles on complex 3D pre-form parts Result title Robot for Measuring Fibre Angles on complex 3D pre-form parts
 Draping Simulation Software with automatic optimization of model parameters Result description Draping simulation software, that is used to predict fibre orientation during the drpaing process, uses complex material models to perform the simulation.
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description But often manual polishing is the only option because the tasks are too complex to be automated.
Comments (into products) Domain 1: Advanced manufacturing processes Sub-Domain 1.2 Complex structures, geometries and scale FoF Partnership SRIA Research priorities Domain 1: Advanced manufacturing processes
 Periodic Reporting for period 3 - SYMPLEXITY (Symbiotic Human-Robot Solutions for Complex Surface Finishing Operations) Result title Periodic Reporting for period 3 - SYMPLEXITY (Symbiotic Human-Robot Solutions for Complex Surface Finishing Operations)
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 RP 1.5 Delivery of new functionalities through (mass production) surface manufacturing processes Taxon description Novel technologies and approaches are needed to embed true smartness into structures and scale-up of all processes is of equal importance.
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Comments Sub-Domain 1.2 Complex structures, geometries and scale Domain 1: Advanced manufacturing processes Domain 3: Digital, virtual and resource-efficient factories FoF Partnership SRIA Research priorities
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments Manufacturing the products of the future Manufacturing future products Novel materials Manufacturing future products Manufacturing the products of the future Complex structures, geometries and scale
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments Manufacturing the products of the future Manufacturing future products Complex structures, geometries and scale Manufacturing future products Manufacturing the products of the future Customised products
 The Plug and Play Virtual Factory Result description ADVENTURE combines the power of individual factories to achieve complex manufacturing processes.
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description . • Two photon polymerisation (2PP), which will be used to create high-resolution structures which have features in the range of 100-200nm.
Comments 1.1 Processing novel materials and structures (into products) Domain 1: Advanced manufacturing processes Sub-Domain 1.2 Complex structures, geometries and scale FoF Partnership SRIA Research priorities
 Software for supply chain management Result description The manufacturer chosen by the customer can automatically create support structures and DLP process specific slicing jobfile directly usable for printing.
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description Volume production at industrial scale of miniaturised multi-material 3D (polymer-polymer, metal-polymer, metal-metal, polymer-ceramics,...) still face important challenges to be affordable by SMEs.
Comments Manufacturing the products of the future Manufacturing future products Novel materials Manufacturing future products Manufacturing the products of the future Complex structures, geometries and scale
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments Manufacturing the products of the future Manufacturing future products Novel materials Manufacturing future products Manufacturing the products of the future Complex structures, geometries and scale
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 RP 1.2 Advanced joining technologies for advanced and multi-materials Taxon description and modular structures (including actuation, sensing).
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Description It has to be investigated how the isogeometric concepts can actually be introduced on a large scale, starting from the interoperability of typical CAD-models and new isogeometric CAD-models all the way
Comments Complex structures, geometries and scale Manufacturing future products Manufacturing the products of the future IGA allows exact description of complex geometries for Finite Element based analysis Customised
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Description validating the operability for a large variety of products: (i) oral sensors, requiring a one-piece-at a time customisation, (ii) microsensor chips for oxygen monitoring in closed compartments, and (iii) complex
Comments manufacturing processes FoF Partnership SRIA Research priorities Sub-Domain 1.2 Complex structures, geometries and scale Domain 1: Advanced manufacturing processes Sub-Domain 1.3: Business models and
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Sub-Domain 1.2 Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing
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Comments 1.1 Processing novel materials and structures (into products) Domain 1: Advanced manufacturing processes Sub-Domain 1.2 Complex structures, geometries and scale FoF Partnership SRIA Research priorities
 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Sub-Domain 1.2 Complex structures, geometries and scale Taxon title Complex structures, geometries and scale
 Domain 1: Advanced manufacturing processes Taxon description Products of the future are expected to be more complex (3D, nano-micro-meso-macro-scale, smart), so processes need to handle complexity and enhanced functionality whilst not adding or at least minimizing