DOI of the published article https://doi.org/10.1016/j.compositesa.2014.01.003
Mechanical behavior and failure micromechanisms of hybrid 3D woven composites in tension
DOI:
https://doi.org/10.31224/3160Keywords:
Polymer-matrix Composites (PMCs), 3D woven composite, Hybrid laminates, experimental characterization, X-ray computed tomographyAbstract
The deformation and failure micromechanisms of a hybrid 3D woven composite were studied in tension. Plain and open-hole composite coupons were tested in tension until failure in the fill and warp directions, as well as fiber tows extracted from the dry fabric and impregnated with the matrix. The macroscopic evolution of damage in the composite coupons was assessed by means of periodic unloading-reloading (to obtain the elastic modulus and the residual strain), whereas the microscopic mechanism were established by means of X-ray computed microtomography. To this end, specimens were periodically removed from the mechanical testing machine and infiltrated with ZnI-containing liquid to assess the main damage modes as a function of the applied strain. The experimental observations and the predictions of an isostrain model were used to understand the key factors controlling the elastic modulus, strength and notch sensitivity of hybrid 3D woven composites in tension.
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Copyright (c) 2023 Raul Munoz, Carlos González, Javier Llorca

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