RESHEALIENCE

Project Description

The main goal of the project ReSHEALience is to develop an Ultra High Durability Concrete (UHDC) and a Durability Assessment-based Design (DAD) methodology for structures, to improve durability and predict their long-term performance under Extremely Aggressive Exposures (EAE: XS-chloride induced corrosion, XA-chemical attack). The improvement will be supported upgrading Ultra High Performance Fiber Reinforced Concrete with new functionalities. Focus will be on marine structures and infrastructures for geothermal/biomass energy plants, whose severe conditions challenge the performance, lead to quick deterioration and shorten the lifespan, resulting in billions Euro spent each year in repairs.

RESHEALIENCE

Project Partners

POLITECNICO DI MILANO | IT (Coordinator)

CYES MARITIME WORKS SOCIEDAD LIMITADA | ES

ENEL GREEN POWER | IT

SVILUPPO TECNOLOGIE E RICERCA PER L'EDILIZIA SISMICAMENTE SICURA ED ECOSOSTENIBILE SCARL | IT

OSAUHING ANF DEVELOPMENT | EE

RESEARCH & DEVELOPMENT CONCRETES SL | ES

BANAGHER PRECAST CONCRETE LIMITED | IE

API EUROPE MONOPROSOPI ETAIREIA PERIORISMENIS EFTHINIS YPIRESION EREVNAS KAI MELETIS STIN VIOTECHNOLOGIA | GR

PENETRON ITALIA SRL | IT

UNIVERSITAT POLITECNICA DE VALENCIA | ES

TECHNISCHE UNIVERSITAET DRESDEN | DE

AGENCIA ESTATAL CONSEJO SUPERIOR DEINVESTIGACIONES CIENTIFICAS | ES

BEN-GURION UNIVERSITY OF THE NEGEV | IL

UNIVERSITA TA MALTA | MT

Status

Ongoing

Start date

January 2018

Duration

4 Years

Funding call

H2020-NMBP-2017-two-stage

Project ID

760824

Total budget M€

5.5

Project contact

Liberato Ferrara

Politecnico di Milano

+39-02-23994387

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The projects involved have received funding from the European Union’s FP7 and Horizon 2020 research and innovation programme. Reproduction is authorised provided the source is acknowledged. The information and views set out in this website are those of the author(s) and do not necessarily reflect the official opinion of the European Commission or other European Institutions.  

About AMANAC

The cluster brings together EU funded R&I projects focused on nanotechnologies and advanced materials covering different challenging construction aspects such as energy efficiency in buildings, building materials durability and on-shore and off-shore infrastructures durability

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