2018
DOI: 10.1177/0731684418754360
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Mechanical characterisation and modelling of randomly oriented strand architecture and their hybrids – A general review

Abstract: A comprehensive review of the mechanical characterisation and modelling of randomly oriented strand material architecture and their hybrids with laminates is presented. Randomly oriented strand composites are long discontinuous fibre systems that exhibit excellent formability characteristics and stiffness properties comparable to quasi-isotropic laminates, allowing their use in the manufacture of intricate geometric parts for automotive and aerospace industries. Randomly oriented strand architecture complement… Show more

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Cited by 65 publications
(43 citation statements)
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References 89 publications
(249 reference statements)
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“…Those failure mechanisms are secondary, and tensile strength of TBDCs is mainly matrix-dominated [1,2]. Compressive failure is mainly dominated by tow debonding/delamination, combined with tow breakage [1,2,8]. Note that randomoriented TBDCs have a compressive strength similar or higher than the tensile one.…”
Section: Introductionmentioning
confidence: 98%
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“…Those failure mechanisms are secondary, and tensile strength of TBDCs is mainly matrix-dominated [1,2]. Compressive failure is mainly dominated by tow debonding/delamination, combined with tow breakage [1,2,8]. Note that randomoriented TBDCs have a compressive strength similar or higher than the tensile one.…”
Section: Introductionmentioning
confidence: 98%
“…CF-SMCs are made of chopped carbon fibre tows dispersed in a partially cured thermoset resin; sheets of prepreg material are made in this way, and then compression moulded into the final desired shape. CF-SMCs offer an excellent compromise between the processability and formability of short fibre composites and high mechanical properties of laminated composites [1][2][3]. In these materials the reinforcement tows generally have a high aspect ratio; this allows their discontinuous nature to have limited effects on their stiffness [1,[4][5][6].…”
Section: Introductionmentioning
confidence: 99%
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