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Dive into the research topics where Per Hallander is active.

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Featured researches published by Per Hallander.


53rd AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference<BR>20th AIAA/ASME/AHS Adaptive Structures Conference<BR>14th AIAA | 2012

Aligned Carbon Nanotube Reinforcement of Aerospace Carbon Fiber Composites: Substructural Strength Evaluation for Aerostructure Applications

Roberto Guzman de Villoria; Lisa Ydrefors; Per Hallander; Kyoko Ishiguro; Pontus Nordin; Brian L. Wardle

Vertically aligned carbon nanotubes (VACNTs) are placed between all plies in an aerospace carbon fiber reinforced plastic laminate (unidirectional plies, [(0/90/±45)2]s) to reinforce the interlaminar region in the z-direction. Significant improvement in Mode I and II interlaminar toughness have been observed previously. In this work, several substructural in-plane strength tests relevant to aerostructures were undertaken: bolt/tension-bearing, open hole compression, and L-shape laminate bending. Improvements are observed for the nanostitched samples: critical bearing strength by 30%, open-hole compression ultimate strength by 10%, and L-shape laminate energy (via increased deflection) of 40%. The mechanism of reinforcement is not compliant interlayer creation, but rather is a fiberstitching mechanism, as no increase in interlayer thickness occurs with the nanostitches. Unlike traditional (large-fiber/tow/pin) stitching or z-pinning techniques that damage inplane fibers and reduce laminate in-plane strengths, the nano-scale CNT-based ‘stitches’ improve in-plane strength, demonstrating the potential of such an architecture for aerospace structural applications. The quality of VACNT transfer to the prepreg laminates has not been optimized and therefore the noted enhancement to strength may be considered conservative. Ongoing work has been undertaken to both improve VACNT transfer and expand the data set.


Composites Part A-applied Science and Manufacturing | 2013

An experimental study of mechanisms behind wrinkle development during forming of composite laminates

Per Hallander; Malin Åkermo; Christophe Mattei; M. Petersson; T Nyman


Composites Part A-applied Science and Manufacturing | 2016

Forming induced wrinkling of composite laminates: A numerical study on wrinkling mechanisms

Jens Sjölander; Per Hallander; Malin Åkermo


Composites Science and Technology | 2016

In-plane strength enhancement of laminated composites via aligned carbon nanotube interlaminar reinforcement

R. Guzmán de Villoria; Per Hallander; L. Ydrefors; Pontus Nordin; Brian L. Wardle


Archive | 2009

AIRCRAFT STRUCTURE WITH STRUCTURAL PARTS CONNECTED BY NANOSTRUCTURE AND A METHOD FOR MAKING SAID AIRCRAFT STRUCTURE

Per Hallander; Mikael Petersson; Björn Weidmann; Tommy Grankäll; Pontus Nordin


Composites Part A-applied Science and Manufacturing | 2015

Forming induced wrinkling of composite laminates with mixed ply material properties; an experimental study

Per Hallander; Jens Sjölander; Malin Åkermo


Archive | 2009

NANO-REINFORCED RADIUS FILLER FOR AN AIRCRAFT STRUCTURE AND A METHOD OF PRODUCING AN AIRCRAFT STRUCTURE COMPRISING SUCH FILLER

Per Hallander; Mikael Petersson; Björn Weidmann; Tommy Grankäll; Göte Strindberg; Pontus Nordin


Archive | 2008

Method of forming a composite structure

Mikael Petersson; Per Hallander; Björn Weidmann


Archive | 2010

Article with de-icing/anti-icing function

Per Hallander; Mikael Petersson; Björn Weidmann; Tommy Grankäll; Göte Strindberg; Pontus Nordin


Archive | 2011

COMPOSITE ARTICLE AND A METHOD OF FORMING A COMPOSITE ARTICLE

Tommy Grankaell; Per Hallander; Anders Lundberg; Tonny Nyman; Bjoern Weidmann; Mikael Petersson

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Malin Åkermo

Royal Institute of Technology

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Jens Sjölander

Royal Institute of Technology

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