Zobrazeno 1 - 10
of 20
pro vyhledávání: '"Pascal Pinter"'
Publikováno v:
Journal of Composites Science, Vol 1, Iss 2, p 18 (2017)
Sheet molding compounds (SMC) are discontinuously fiber-reinforced thermosets, attractive to the automotive industry due to their outstanding specific strength and stiffness, combined with a cost efficient manufacturing process. Increasingly importan
Externí odkaz:
https://doaj.org/article/d5d6f2cfb5884c338f63d735f6de80ca
Publikováno v:
Rapid Prototyping Journal. 26:1603-1614
Purpose The purpose of this paper is to understand the relationship between defect properties and the tool path used for generating additively manufactured parts. The correlation between processing strategy and porosity architecture is one of the key
Autor:
Kay André Weidenmann, Johannes Görthofer, Pascal Pinter, Andrew N. Hrymak, Luise Kärger, Ludwig Schöttl, Anna Trauth, Frank Henning, Thomas Böhlke, Nils Meyer, Malte Schemmann, Martin Hohberg, Peter Elsner, Thomas Seelig, Tarkes Dora Pallicity
Publikováno v:
Composites Part B: Engineering. 169:133-147
A virtual process chain for sheet molding compound (SMC) composites is established and validated by means of experimental investigations on a demonstrator structure. The flow in the compression molding step is simulated via a Coupled-Eulerian-Lagrang
Publikováno v:
Composites Part C: Open Access, Vol 4, Iss, Pp 100089-(2021)
Composites / C: Open Access, 4, Art.Nr. 100089
Composites / C: Open Access, 4, Art.Nr. 100089
Fiber reinforced polymers, for example sheet molding compounds (SMC), have gained significant importance as lightweight materials. In this work, a SMC composite based on unsaturated polyester-polyurethane hybrid resin (UPPH) reinforced with discontin
Autor:
Mirko Sinico, Tomáš Zikmund, André Beerlink, Jess Waller, Jean-François Métayer, Nils Achilles, Gabriel Probst, Philip Sperling, Stephan G. le Roux, Stefan Dietrich, Florian Bittner, Oliver Fitzek, Marian Willner, Ágota Drégelyi-Kiss, Pascal Pinter, Hans-Josef Endres, Jakub Laznovsky, Porebski Konrad, Jozef Kaiser, Elena López, Wim Dewulf, Anton du Plessis
Publikováno v:
Additive Manufacturing
This paper reports on the results of a round robin test conducted by ten X-ray micro computed tomography (micro-CT) laboratories with the same three selected titanium alloy (Ti6Al4V) laser powder bed fusion (L-PBF) test parts. These parts were a 10-m
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::508507ac1bacda9e44dec8025dfb1960
https://lirias.kuleuven.be/handle/123456789/641621
https://lirias.kuleuven.be/handle/123456789/641621
Publikováno v:
Key Engineering Materials. 742:482-489
Additive manufacturing provides the ability to produce structural components featuring complex shapes in one step, compared to traditional methods of production. Therefore, additive manufacturing has recently gained attention for the direct productio
Publikováno v:
Key Engineering Materials. 742:644-651
Failure of fiber reinforced polymers is a complex interaction of different microstructural mechanisms. In order to assign those mechanisms to the macroscopic material response, in-situ methods as acoustic emission can be applied. This allows for the
Autor:
Anna Trauth, Andrew N. Hrymak, Malte Schemmann, Martin Hohberg, Peter Elsner, Thomas Böhlke, Ludwig Schöttl, Johannes Görthofer, Tarkes Dora Pallicity, Thomas Seelig, Pascal Pinter, Kay André Weidenmann, Luise Kärger, Nils Meyer, Frank Henning
Publikováno v:
PAMM. 19
Autor:
Thomas Böhlke, Sergej Ilinzeer, Johannes Görthofer, Benedikt Fengler, Kay André Weidenmann, Peter Elsner, Frank Henning, Anna Trauth, Luise Kärger, Nils Meyer, Malte Schemmann, Martin Hohberg, Andrew N. Hrymak, Ludwig Schöttl, Pascal Pinter, Tarkes Dora Pallicity
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::5d6ce8dad0fcab69cdb86e478e4e861b
https://opus.bibliothek.uni-augsburg.de/opus4/frontdoor/index/index/docId/74866
https://opus.bibliothek.uni-augsburg.de/opus4/frontdoor/index/index/docId/74866
Publikováno v:
Composite Structures. 246:112377
A micromechanics model that utilizes microstructural characteristics for predicting the bending stress-strain response of a SMC composite is presented. The model integrates matrix, interphase and fibre damage models to form a framework that is able t