Literature
167
[AST95]
ASTM International: „ASTM F606-95b Standard Test Methods for Determining the Mechanical Properties of Externally and Internally Threaded
Fasteners, Washers, Direct Tension Indicators, and Rivets“, West Conshohocken, PA, USA, 1995.
[AST97]
ASTM International: „D828-97 Standard Test Method for Tensile Properties of Paper and Paperboard Using Constant-Rate-of-Elongation Apparatus“, West Conshohocken, PA, USA, 1997.
[AST99]
ASTM International: „D5528 - 13 - Standard Test Method for Mode I Interlaminar Fracture Toughness of Unidirectional Fiber-Reinforced Polymer Matrix Composites“, West Conshohocken, PA, 1999.
[AST99]
ASTM International: „C364 - 99 Standard Test Method for Edgewise
Compressive Strength of Sandwich Constructions“, West Conshohocken, PA, USA, 1999.
[Bar11]
Baranger, E.; Cluzel, C.; Guidault, P.-A.: „Modelling of the Behaviour of
Aramid Folded Cores Up to Global Crushing“, in: Strain, 2011, 47; S.
170–178.
[Bel09]
Belouettar, S.; Abbadi, A. et al.: „Experimental investigation of static
and fatigue behaviour of composites honeycomb materials using four
point bending tests“, in: Composite Structures, 2009, 87; S. 265–273.
[Bia11]
Bianchi, G.; Aglietti, G. S.; Richardson, G.: „Static Performance of Hot
Bonded and Cold Bonded Inserts in Honeycomb Panels“, in: Journal of
Sandwich Structures and Materials, 2011, 13; S. 59–82.
[Bit97]
Bitzer, T.: „Honeycomb technology - Materials, design, manufacturing,
applications and testing“. Chapman & Hall, London, New York, 1997.
[Bla06]
Black, S.: „Advanced materials for aircraft interiors“, in: High-Performance Composites, 2006.
[Blo05]
Block, J.; Brander, T. et al.: „Carbon fibre tube inserts - a light fastening
concept with high load carrying capacity“, in: Proceedings of the European Conference on Spacecraft Structures, Materials and Mechanical
Testing 2005 (ESA SP-581), 2005, 10-12 May 2005, Noordwijk, NL.
[Bou14]
Boudjemai, A.; Mankour, A. et al.: „Inserts thermal coupling analysis in
hexagonal honeycomb plates used for satellite structural design“, in:
Applied Thermal Engineering, 2014, 67; S. 352–361.
Précédent

- 177/210

Suivant