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Wael Ballout

Researcher at Université catholique de Louvain

Publications -  18
Citations -  218

Wael Ballout is an academic researcher from Université catholique de Louvain. The author has contributed to research in topics: Epoxy & Curing (chemistry). The author has an hindex of 7, co-authored 15 publications receiving 171 citations. Previous affiliations of Wael Ballout include Université Paul Cézanne Aix-Marseille III & University of Franche-Comté.

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Journal Article

Influence of thermoplastic diffusion on morphology gradient and on delamination toughness of RTM-manufactured composites Part A Applied science and manufacturing

TL;DR: In this paper, the influence of the interdiffusion of two thermoplastic tougheners and RTM6 epoxy resin precursors on the resulting morphologies after curing and the consequences on delamination toughness of the corresponding carbon fiber reinforced composites was explored.
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Influence of thermoplastic diffusion on morphology gradient and on delamination toughness of RTM-manufactured composites

TL;DR: In this article, the influence of the interdiffusion of two thermoplastic tougheners and RTM6 epoxy resin precursors on the resulting morphologies after curing and the consequences on delamination toughness of the corresponding carbon fiber reinforced composites was explored.
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Electrokinetic characterization of hollow fibers by streaming current, streaming potential and electric conductance

TL;DR: In this paper, the electrokinetic properties of hollow fiber polymer membranes were investigated from tangential streaming current/streaming potential and electric conductance measurements, and it was shown that a non negligible part of the total streaming current is likely to flow through the macroporous body of fibers.
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Synergistic local toughening of high performance epoxy-matrix composites using blended block copolymer-thermoplastic thin films

TL;DR: In this paper, a new block copolymer-thermoplastic dual toughening concept for high performance RTM6 epoxy matrix composites is elaborated through a comprehensive microstructural study of well-defined model systems.
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Morphology and fracture properties of toughened highly crosslinked epoxy composites: A comparative study between high and low Tg tougheners

TL;DR: In this article, the mechanical properties of an unmodified reference composite panel based on a highly crosslinked epoxy resin are compared with several corresponding toughened versions, all containing the same amount of representative hard or soft tougheners.