Abilio Silva

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Associate Professor

Universidade da Beira Interior
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Portugal

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Recent Grants

Grant: Close

COMP4UAVs – produção de componentes para veículos aéreos não tripulados (UAVs) por manufatura aditiva

Open Date: 2019-01-01

Close Date: 2022-07-25

Grant: Close

EMaDeS – Energia, Materiais e Desenvolvimento Sustentável

Open Date: 2017-01-01

Close Date:

Grant: Close

AeroMaS (Aerospace Materials and Structures)

Open Date: 2016-12-05

Close Date:

Grant: Close

Prestação de serviços à empresa PROCIFISC no âmbito do projeto SMW System

Open Date: 2016-03-01

Close Date: 2016-11-01

Grant: Close

New structural heterogeneous ceramic materials for severe conditions of service

Open Date: 2016-01-01

Close Date: 2016-12-01

Articles (20)

Impact of the Curing Temperature on the Manufacturing Process of Multi-Nanoparticle-Reinforced Epoxy Matrix Composites

This study aims to analyze the effect of the curing temperature of nano-reinforcements during the manufacturing process on the mechanical properties of composites involving graphene (GNP), carbon nanofibers (CNFs), and a hybrid mixture of these two nanoparticles. In this context, the type of nanoparticles, their content, their type of resin, and their hybridization were considered. The results showed that both nanoparticles increased the viscosity of the resin suspension, with an increase of between 16.3% and 38.2% for GNP nanoparticles and 45.4% and 74% for CNFs depending on the type of resin. Shrinkage was also affected by the addition of nanoparticles, as the highest results were obtained with GNP nanoparticles, with a 91% increase compared with the neat resin, and the lowest results were obtained with CNFs, with a decrease of 77% compared with the neat resin. A curing temperature of 5 °C promoted the best bending and hardness performance for all composites regardless of the type of resin and reinforcement used, with improvements of up to 24.8% for GNP nanoparticles and 13.52% for CNFs compared with the neat resin at 20 °C. Hybridization led to further improvements in bending properties and hardness compared with single-reinforcement composites due to a synergistic effect. However, the effectiveness of hybridization depends on the type of resin.

Year:

2024

Collaborators (10)

Mariana B. Oliveira

-

PORTUGAL

Paulo N. B. Reis

University of Coimbra

PORTUGAL

João Nunes-Pereira

Universidade da Beira Interior

PORTUGAL

Rogerio Simoes

Associate Professor

Universidade da Beira Interior

PORTUGAL

José Carlos Páscoa

-

PORTUGAL

Tadeusz Szymczak

-

POLAND

Thiago Assis Dutra

Assistant Professor

-

PORTUGAL

F. Rodrigues

Universidade da Beira Interior

PORTUGAL

senentxu lanceros-mendez

University of Minho

PORTUGAL

Kateryna O. Shvydyuk

Universidade da Beira Interior

PORTUGAL
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