FlexFlax Stool: Validation of Moldless Fabrication of Complex Spatial Forms of Natural Fiber-Reinforced Polymer (NFRP) Structures through an Integrative Approach of Tailored Fiber Placement and Coreless Filament Winding Techniques
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%0 Journal Article
%1 martins2020flexflax
%A Martins, Vanessa Costalonga
%A Cutajar, Sacha
%A van der Hoven, Christo
%A Baszyński, Piotr
%A Dahy, Hanaa
%D 2020
%I MDPI
%J Applied Sciences
%K
%N 9
%P 3278
%R 10.3390/app10093278
%T FlexFlax Stool: Validation of Moldless Fabrication of Complex Spatial Forms of Natural Fiber-Reinforced Polymer (NFRP) Structures through an Integrative Approach of Tailored Fiber Placement and Coreless Filament Winding Techniques
%V 10
@article{martins2020flexflax,
added-at = {2023-08-31T16:27:02.000+0200},
author = {Martins, Vanessa Costalonga and Cutajar, Sacha and van der Hoven, Christo and Baszyński, Piotr and Dahy, Hanaa},
biburl = {https://puma.ub.uni-stuttgart.de/bibtex/243a568dd8b6ec52b5e9ef71640a4dc8e/puma-wartung},
doi = {10.3390/app10093278},
interhash = {bc5ba4f94ac3b4f7737b39c85536917f},
intrahash = {43a568dd8b6ec52b5e9ef71640a4dc8e},
issn = {2076-3417},
journal = {Applied Sciences},
keywords = {},
language = {eng},
number = 9,
pages = 3278,
publisher = {MDPI},
timestamp = {2023-08-31T14:27:02.000+0200},
title = {FlexFlax Stool: Validation of Moldless Fabrication of Complex Spatial Forms of Natural Fiber-Reinforced Polymer (NFRP) Structures through an Integrative Approach of Tailored Fiber Placement and Coreless Filament Winding Techniques},
volume = 10,
year = 2020
}