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Dive into the research topics where Sebastian Kilchert is active.

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Featured researches published by Sebastian Kilchert.


Structural Integrity and Durability of Advanced Composites#R##N#Innovative Modelling Methods and Intelligent Design | 2015

Design and performance of novel aircraft structures with folded composite cores

Alastair Johnson; Sebastian Kilchert; Sebastian Fischer; Nathalie Toso-Pentecote

This chapter focuses on novel sandwich structures with open cellular composite cores manufactured by folding thin sheet base materials into a three-dimensional structure. Folded composite cores or ‘foldcore’ manufactured from resin impregnated aramid paper have similar densities and mechanical properties to Nomex honeycomb. Furthermore, they allow ventilation to prevent moisture build-up due to their open cell design and can be manufactured cost-efficiently in a continuous process. In aircraft fuselages, a sandwich design concept could yield significant weight savings compared to an aluminium reference fuselage, through increasing frame spacing and elimination of stringers. The foldcore concept is described with typical base sheet materials, core geometries, and fabrication technology suitable for continuous manufacturing processes. Folded core properties and design are discussed with test methods used for measuring thin base sheet properties and determining core through-thickness compression and shear failure modes and strength properties. Core design is based on micromechanics cell models used in FE methods for simulating progressive damage and collapse mechanisms to provide core properties for use in sandwich structural analysis and design of sandwich structures. Finally, the damage tolerance of sandwich panels with carbon fibre/ epoxy skins and aramid fibre/phenolic folded core is discussed, based on experimental investigations by drop tower and gas gun impact tests. Comparison between observed and computed failure behaviour for a range of impact load cases shows good agreement, indicating that the FE methods could provide the basis for design and certification of these advanced aircraft sandwich structures.


Composite Structures | 2010

Sandwich structures with textile-reinforced composite foldcores under impact loads

Sebastian Heimbs; J. Cichosz; M. Klaus; Sebastian Kilchert; Alastair Johnson


Composites Part A-applied Science and Manufacturing | 2009

Mechanical tests for foldcore base material properties

Sebastian Fischer; Klaus Drechsler; Sebastian Kilchert; Alastair Johnson


Applied Composite Materials | 2007

Experimental and Numerical Analysis of Composite Folded Sandwich Core Structures Under Compression

Sebastian Heimbs; Peter Middendorf; Sebastian Kilchert; Alastair Johnson; Martin Maier


Composites Part A-applied Science and Manufacturing | 2014

Modelling the impact behaviour of sandwich structures with folded composite cores

Sebastian Kilchert; Alastair Johnson; Heinz Voggenreiter


CEAS Aeronautical Journal | 2013

Validation of damage modelling in composite fuselage structures under high velocity impact

Alastair Johnson; Nathalie Toso-Pentecote; Sebastian Kilchert


Archive | 2007

Numerical simulation of advanced folded core materials for structural sandwich applications

Sebastian Heimbs; Peter Middendorf; Sebastian Kilchert; Alastair Johnson; Martin Maier


Archive | 2010

Modelling Impact Damage in Sandwich Structures with Folded Composite Cores

Alastair Johnson; Sebastian Kilchert


Archive | 2008

FE modelling of phenolic resin impregnated aramid paper adopted in foldcore sandwich cores

Sebastian Kilchert; Alastair Johnson; Heinz Voggenreiter


Archive | 2008

CELPACT D31-2: Baseline composite and CHC core properties

Emmanuel Baranger; Sebastian Kilchert; Alastair Johnson

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Martin Maier

Kaiserslautern University of Technology

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M. Klaus

RWTH Aachen University

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