LDP-UPM / Product Development Lab, Universidad Politécnica de Madrid GENERAL PRESENTATION

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1 GENERAL PRESENTATION Complete denomination: Product Development Lab, Mechanical Engineering Department, Location (city, country): Madrid, Spain Director: Prof. Pilar Lafont Morgado Contact person in NEWGEN: Prof. Andrés Díaz Lantada Working Group involvment: WG1 Staff: Prof. Lafont Morgado, Prof. Díaz Lantada, Tech. Pedro Ortego Research topics: Advanced scaffolds, mechanical metamaterials, controlled porosity of materials and implants, teaching / learning activities Researchers expertises: Design and manufacturing with polymers, development of medical devices, biomechanics & bioengineering, computeraided design, engineering and manufacturing LDP-UPM Univ. Politécnica de Madrid c/ Jose Gutiérrez Abascal n , Madrid - SPAIN

2 ACTIVITIES LINKED TO MODELLING -Multi-physical & multi-domain -Quantum tunnelling composites -Piezo & pyro-polymers -Shape memory polymers -Hydropolymers -Peltier based devices -Mc Kibben muscles -IPMCs Modelling (bulk) smart materials -Devices based on fractal geometry -Lattice and porous materials -Auxetic metamaterials -CAD libraries for designers Modelling mechanical metamaterials -Behavior modelling (FEM and more) Modelling of complete devices based on smart materials -Implants with sensing ability -Implants with actuation ability -Other thermo-electro-mechanical sensors & actuators and self-sensing devices

3 Bending degree (º) Voltaje (V) Voltaje (V) ACTIVITIES LINKED TO MODELLING -Modelling smart materials (prior to integration into complex devices) QTC Electrical Resistance as a Function of Pressure and Temperature During Trials Characterization of IPMC: Relationship between bending degree and voltage Resistance (W) Time (s) Pressure (kpa) Temperature (ºC) Response after extracting from water Response after 1 hour drying Voltage applied -Modelling mechanical metamaterials -Modelling of complete devices based on smart materials , ,5 1 bar 2 bar 3 bar 4 bar Tiempo (ms) 0, Tiempo (s)

4 ACTIVITIES LINKED TO BIOMATERIALS -Controlled textures from design -Microsystems for guiding cells -Rapid prototypes (AMT) -CVD/PVD coatings -Lattice structures from design -Auxetics and metamaterials -Porous polymers (PDMS) -Vacuum casted materials Biodevices for interacting at a cellular level Scaffolds for tissue engineering Biodevices based on functional materials -Piezo&pyro-polymers -Shape memory polymers -Conductive polymer-metal composites (quantum tunnelling composites)

5 ACTIVITIES LINKED TO BIOMATERIALS -Biodevices with controlled surfaces for interacting at cellular level -Scaffolds for tissue engineering and related microstructured implants -Biodevices based on functional materials (smart and metamaterials)

6 FACILITIES Design and simulation: CAD-CAE-CAM software CATIA, Solid Edge, NX-8 Multiple formats 20 computers in design room Advanced manufacture: Laser stereolithography 3D printing Vacuum casting Microfusion Silicone and ceramic molds Microfabrication: Mask-less photolithography Spin coating Chemical deposition Accesories for cleaning, curing

7 UPM SUMMARY Technical University of Madrid UPM Some figures: students 3500 teachers 20 faculties 3+ campuses 10 research institutes Research oriented university with historical background of collaboration with industry

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