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Dive into the research topics where Ali Moussawi is active.

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Featured researches published by Ali Moussawi.


Journal of Materials Chemistry C | 2015

Semi-metallic, strong and stretchable wet-spun conjugated polymer microfibers

Jian Zhou; Er Qiang Li; Ruipeng Li; Xuezhu Xu; Isaac Aguilar Ventura; Ali Moussawi; Dalaver H. Anjum; Mohamed N. Hedhili; Detlef-M. Smilgies; Gilles Lubineau; Sigurdur T. Thoroddsen

A dramatic improvement in electrical conductivity is necessary to make conductive polymer fibers viable candidates in applications such as flexible electrodes, conductive textiles, and fast-response sensors and actuators. In this study, high-performance poly(3,4-ethylenedioxythiophene)/poly(styrenesulfonate) (PEDOT/PSS) conjugated polymer microfibers were fabricated via wet-spinning followed by hot-drawing. Due to the combined effects of the vertical hot-drawing process and doping/de-doping the microfibers with ethylene glycol (EG), we achieved a record electrical conductivity of 2804 S cm−1. This is, to the best of our knowledge, a six-fold improvement over the best previously reported value for PEDOT/PSS fibers (467 S cm−1) and a two-fold improvement over the best values for conductive polymer films treated by EG de-doping (1418 S cm−1). Moreover, we found that these highly conductive fibers experience a semiconductor–metal transition at 313 K. They also have superior mechanical properties with a Youngs modulus up to 8.3 GPa, a tensile strength reaching 409.8 MPa and a large elongation before failure (21%). The most conductive fiber also demonstrates an extraordinary electrical performance during stretching/unstretching: the conductivity increased by 25% before the fiber rupture point with a maximum strain up to 21%. Simple fabrication of the semi-metallic, strong and stretchable wet-spun PEDOT/PSS microfibers described here could make them available for conductive smart electronics.


Conference Proceedings of the Society for Experimental Mechanics Series | 2016

Field Strain Measurement on the Fiber-Epoxy Scale in CFRPs

Ran Tao; Ali Moussawi; Jian Zhou; Gilles Lubineau; Bing Pan

Laminated composites are materials with complex architecture made of continuous fibers (usually glass or carbon) embedded within a polymeric resin. The properties of the raw materials can vary from one point to another due to different local processing conditions or complex geometrical features for example. A first step towards the identification of these spatially varying material parameters is to image with precision the displacement fields in this complex microstructure when subjected to mechanical loading. Secondary electron images obtained by scanning electron microscopy (SEM) and then numerically deformed are post-processed by either local subset-based digital image correlation (DIC) or global finite-element based DIC to measure the displacement and strain fields at the fiber-matrix scale in a cross-ply composite. It is shown that when global DIC is applied with a conformal mesh, it can capture more accurate local variations in the strain fields as it takes into account the underlying microstructure. In comparison to subset DIC, global DIC is better suited for capturing gradients across the fiber-matrix interfaces.


Computer Methods in Applied Mechanics and Engineering | 2013

The constitutive compatibility method for identification of material parameters based on full-field measurements

Ali Moussawi; Gilles Lubineau; Eric Florentin; Benoît Blaysat


International Journal for Numerical Methods in Engineering | 2012

A Dissipation Gap Method for full‐field measurement‐based identification of elasto‐plastic material parameters

B. Blaysat; Eric Florentin; Gilles Lubineau; Ali Moussawi


Experimental Mechanics | 2015

Comparison of Subset-Based Local and Finite Element-Based Global Digital Image Correlation

Bing Pan; Bo Wang; Gilles Lubineau; Ali Moussawi


Composite Structures | 2015

Response of fiber Bragg gratings bonded on a glass/epoxy laminate subjected to static loadings

Matthieu Mulle; Ali Moussawi; Gilles Lubineau; Samuel Durand; Didier Falandry; Philippe Olivier


Experimental Mechanics | 2015

Using Image Gradients to Improve Robustness of Digital Image Correlation to Non-uniform Illumination: Effects of Weighting and Normalization Choices

Jiangping Xu; Ali Moussawi; Renaud Gras; Gilles Lubineau


Innovative Food Science and Emerging Technologies | 2014

Volume digital image correlation to assess displacement field in compression loaded bread crumb under X-ray microtomography

Ali Moussawi; Jiangping Xu; Hedi Nouri; Sofiane Guessasma; Gilles Lubineau


International Journal of Solids and Structures | 2015

A domain decomposition approach for full-field measurements based identification of local elastic parameters

Gilles Lubineau; Ali Moussawi; Jiangping Xu; Renaud Gras


Optics and Lasers in Engineering | 2016

Accurate kinematic measurement at interfaces between dissimilar materials using conforming finite-element-based digital image correlation

Ran Tao; Ali Moussawi; Gilles Lubineau; Bing Pan

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Gilles Lubineau

King Abdullah University of Science and Technology

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Jiangping Xu

King Abdullah University of Science and Technology

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Jian Zhou

King Abdullah University of Science and Technology

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Ran Tao

King Abdullah University of Science and Technology

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Renaud Gras

King Abdullah University of Science and Technology

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Dalaver H. Anjum

King Abdullah University of Science and Technology

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Er Qiang Li

King Abdullah University of Science and Technology

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Hedi Nouri

King Abdullah University of Science and Technology

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Isaac Aguilar Ventura

King Abdullah University of Science and Technology

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