Matches in SemOpenAlex for { <https://semopenalex.org/work/W4313147628> ?p ?o ?g. }
Showing items 1 to 54 of
54
with 100 items per page.
- W4313147628 abstract "3D printing is a promising additive manufacturing technology capable of producing functional parts of continuous fibre reinforced thermoplastic composites (CFRTPCs). Thus recyclable parts having complex geometries are obtained in a simple manner [1]. In addition, the use of thermoplastic polymers significantly reduces the manufacturing costs because, unlike thermoset polymers, autoclave is not required for curing purposes. This is one of the greatest opportunities for 3D printing as an alternative to conventional manufacturing processes [2, 3]. Pieces obtained from both, conventional manufacturing methods and 3D printing technology, consists on a sequence of stacked sheets. Although greater automation and the possibility to optimize the design of each sheet are advantages of 3D printing, the adhesion between the matrix and the reinforcement fibres is insufficient and consequently, parts with inferior mechanical properties are obtained. Some studies have been interested in the effect of different process parameters on the mechanical performance of the printed parts, however, further research is required. A fundamental challenge is to get good consolidation between the fibres and the polymer matrix, with control of the fibre orientation and low cost [4, 5]. The aim of this work was to evaluate the mechanical properties of multidirectional 3D printed continuous carbon, glass and Kevlar fibre reinforced nylon composites, manufactured by FDM technique. Special attention was paid to the impact damage resistance and tolerance. [1] L. Nickels, Strengthening the 3D printing composites field, Reinforced Plastics, 62 (2018) 298-301 [2] L.G. Blok, M. L. Longana, H. Yu and B. K. S. Woods, An investigation into 3D printing of fibre reinforced Thermoplastic composites, Additive Manufacturing, 22 (2018) 176-186 [3] T. Liu, X. Tian, M. Zhang, D. Abliz, D. Li and G. Ziegmann, Interfacial performance and fracture patterns of 3D printed continuous carbon fibre with sizing reinforced PA6 composites, Composites Part A: Applied Science and Manufacturing, 114 (2018) 368-376 [4] R. Velu, F. Raspall and S. Singamneni, 3D printing technologies and composite materials for structural applications, Green Composites for Automotive Applications, chapter 8 (2019) 171-196 [5] Q. Hu, Y. Duan, H. Zhang, D. Liu, B. Yan and F. Peng, Manufacturing and 3D printing of continuous carbon fiber prepreg filament, 53 (2018) 1887-1989" @default.
- W4313147628 created "2023-01-06" @default.
- W4313147628 creator A5017330611 @default.
- W4313147628 creator A5024184984 @default.
- W4313147628 creator A5025342633 @default.
- W4313147628 creator A5026216624 @default.
- W4313147628 creator A5065826128 @default.
- W4313147628 creator A5074977969 @default.
- W4313147628 date "2022-01-01" @default.
- W4313147628 modified "2023-10-18" @default.
- W4313147628 title "3D printing of multidirectional composite materials reinforced with continuous fibres: impact damage behaviour" @default.
- W4313147628 doi "https://doi.org/10.23967/r.matcomp.2021.01.002" @default.
- W4313147628 hasPublicationYear "2022" @default.
- W4313147628 type Work @default.
- W4313147628 citedByCount "0" @default.
- W4313147628 crossrefType "journal-article" @default.
- W4313147628 hasAuthorship W4313147628A5017330611 @default.
- W4313147628 hasAuthorship W4313147628A5024184984 @default.
- W4313147628 hasAuthorship W4313147628A5025342633 @default.
- W4313147628 hasAuthorship W4313147628A5026216624 @default.
- W4313147628 hasAuthorship W4313147628A5065826128 @default.
- W4313147628 hasAuthorship W4313147628A5074977969 @default.
- W4313147628 hasConcept C104779481 @default.
- W4313147628 hasConcept C132976073 @default.
- W4313147628 hasConcept C159985019 @default.
- W4313147628 hasConcept C171359207 @default.
- W4313147628 hasConcept C192562407 @default.
- W4313147628 hasConcept C2781247691 @default.
- W4313147628 hasConcept C521977710 @default.
- W4313147628 hasConcept C524769229 @default.
- W4313147628 hasConceptScore W4313147628C104779481 @default.
- W4313147628 hasConceptScore W4313147628C132976073 @default.
- W4313147628 hasConceptScore W4313147628C159985019 @default.
- W4313147628 hasConceptScore W4313147628C171359207 @default.
- W4313147628 hasConceptScore W4313147628C192562407 @default.
- W4313147628 hasConceptScore W4313147628C2781247691 @default.
- W4313147628 hasConceptScore W4313147628C521977710 @default.
- W4313147628 hasConceptScore W4313147628C524769229 @default.
- W4313147628 hasLocation W43131476281 @default.
- W4313147628 hasOpenAccess W4313147628 @default.
- W4313147628 hasPrimaryLocation W43131476281 @default.
- W4313147628 hasRelatedWork W1993029543 @default.
- W4313147628 hasRelatedWork W2005366662 @default.
- W4313147628 hasRelatedWork W2076906407 @default.
- W4313147628 hasRelatedWork W2130688392 @default.
- W4313147628 hasRelatedWork W2339998525 @default.
- W4313147628 hasRelatedWork W2392898302 @default.
- W4313147628 hasRelatedWork W2789484483 @default.
- W4313147628 hasRelatedWork W2991685631 @default.
- W4313147628 hasRelatedWork W3043268847 @default.
- W4313147628 hasRelatedWork W3048672776 @default.
- W4313147628 isParatext "false" @default.
- W4313147628 isRetracted "false" @default.
- W4313147628 workType "article" @default.