The page lists 10 deliverables related to the research project "DACOMAT".
title and desprition | type | last update |
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Characterization of fracture mechanisms, fibre bridging and correlation to AE activityReport on the correlation of AE signals with the modified fracture properties. Physical characteristics of the fracture mechanism relating to fracture resistance, such as the degree of fibre bridging in a particular fracture process zone, can be inferred via differing AE waveform characteristics from cracks with a high or low degree of fibre bridging. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Documents, reports | 2020-04-25 |
Interim LCA and LCCA report based upon technology selection and modelled processesInterim LCA and LCCA report based upon technology selection and modelled processes. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Documents, reports | 2020-04-25 |
Determining the governing factors for promotion of secondary delamination frontsReport describing the governing factors for promotion of secondary delamination fronts based on results obtained with numerical simulations with varying choices of R-curves, laminate layup and load scenario. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Documents, reports | 2020-04-25 |
Cohesive zone model for mode I and mode II delamination (plane stress)Numerical implementation of cohesive zone model for mode I and mode II delamination (plane stress) with detailed R-curves and demonstration of how individual R-curves for adjacent layers can promote parallel cracks and crack arrest. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Other | 2020-04-25 |
Advanced algorithms for damage detection from strain measurementsStarting with PCA as baseline algorithm for processing strain data, a review on the latest advances in data analysis methods will be done, and those more promising will be implemented. The deliverable will be a Report summarizing main algorithms, and a comparison of results. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Other | 2020-04-25 |
Fatigue model based on a cohesive lawA computational model to simulate fatigue driven crack growth with focus on reasonable computaional cost. The model will be calibrated and validated with experimental data from subtask 3.2.1. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Other | 2020-04-25 |
Micromechanical model for fibre peel-off and pull-outA micromechanical simulation model/method to predict the effect of fibre configuration and matrix properties on the cohesive traction - separation law. Based on a representative volume with one or a few fibres bridging two crack faces. Statistical treatment of results generated are used to predict the traction separation law for larger ensembles of fibres. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Other | 2020-04-25 |
Report on mode II interface cohesive law using an improved single fibre fragmentation testThe state-of-the-art single fibre fragmentation test method will be improved to extract additional information to be applied in recent advanced micromechanical models able to separate the interface fracture energy from the interface friction. Mode II fracture energy will be measured and be used in WP1. The delivery will be a memo describing the improved evaluation method and the results generated. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Documents, reports | 2020-01-27 |
LCA database of environmental impacts to inform material selection processLCA database of environmental impacts to inform material selection process. Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Other | 2020-01-27 |
DACOMAT project websiteThe website will be the main external communication tool developed in DACOMAT and will be implemented and updated all along the project duration. The website will publish on a regular basis the current status of the project and main results obtained, in a popularized format, in addition to newsletters that will also be published online. The website will also offer an agenda for coming events where DACOMAT partners will be present Programme: H2020-EU.2.1.3. - Topic(s): NMBP-06-2017 |
Websites, patent fillings, videos etc. | 2020-01-27 |