170
Literature
[Foo08]
Foo, C.C.; Chai, G.B.; Seah, L.K.: „A model to predict low-velocity impact
response and damage in sandwich composites“, in: Composites Science
and Technology, 2008, 68; S. 1348–1356.
[Gha15]
Ghavami, P.: „Mechanics of materials - An introduction to engineering
technology“. Springer, Cham, 2015.
[Gib10]
Gibson, L. J.; Ashby, M. F.: „Cellular solids - Structure and properties“.
Cambridge Univ. Press, Cambridge [u.a.], 2010.
[Gie05]
Gielen, A.W.J.; Trouwborst, W.: „Experimental Failure Mode Determination of GRP/PVC-Foam Sandwich T-Joints“, in: Thomsen O.,
Bozhevolnaya E., Lyckegaard A. (eds) Sandwich Structures 7: Advancing
with Sandwich Structures and Materials, 2005; S. 477–486.
[Gig12]
Giglio, M.; Gilioli, A.; Manes, A.: „Numerical investigation of a three
point bending test on sandwich panels with aluminum skins and
Nomex™ honeycomb core“, in: Computational Materials Science, 2012,
56; S. 69–78.
[Gig12]
Giglio, M.; Manes, A.; Gilioli, A.: „Investigations on sandwich core properties through an experimental–numerical approach“, in: Composites
Part B: Engineering, 2012, 43; S. 361–374.
[Gon07]
González, C.; LLorca, J.: „Virtual fracture testing of composites - A computational micromechanics approach“. A computational micromechanics approach, in: Engineering Fracture Mechanics, 2007, 74; S. 1126–
1138.
[Gur09]
Gurit AG: „PHG600-44-50 - Data Sheet“, Zullwil, CH, 2009.
[Gur09]
Gurit AG: „PHG600-68-50 - Data Sheet“, Zullwil, CH, 2009.
[Hei06]
Heimbs, S.; Middendorf, P.; Maier, M.: „Honeycomb Sandwich Material
Modeling for Dynamic Simulations of Aircraft Interior Components“, in:
9th International LS-DYNA Users Conference, 2006, Dearborn, MI, USA.
[Hei07]
Heimbs, S.; Middendorf, P. et al.: „Experimental and Numerical Analysis
of Composite Folded Sandwich Core Structures Under Compression“, in:
Applied Composite Materials, 2007, 14; S. 363–377.
[Hei08]
Heimbs, S.: „Virtual testing of sandwich core structures using dynamic
finite element simulations“, in: Computational Materials Science, 2008,
45; S. 205–216.
Literature
[Foo08]
Foo, C.C.; Chai, G.B.; Seah, L.K.: „A model to predict low-velocity impact
response and damage in sandwich composites“, in: Composites Science
and Technology, 2008, 68; S. 1348–1356.
[Gha15]
Ghavami, P.: „Mechanics of materials - An introduction to engineering
technology“. Springer, Cham, 2015.
[Gib10]
Gibson, L. J.; Ashby, M. F.: „Cellular solids - Structure and properties“.
Cambridge Univ. Press, Cambridge [u.a.], 2010.
[Gie05]
Gielen, A.W.J.; Trouwborst, W.: „Experimental Failure Mode Determination of GRP/PVC-Foam Sandwich T-Joints“, in: Thomsen O.,
Bozhevolnaya E., Lyckegaard A. (eds) Sandwich Structures 7: Advancing
with Sandwich Structures and Materials, 2005; S. 477–486.
[Gig12]
Giglio, M.; Gilioli, A.; Manes, A.: „Numerical investigation of a three
point bending test on sandwich panels with aluminum skins and
Nomex™ honeycomb core“, in: Computational Materials Science, 2012,
56; S. 69–78.
[Gig12]
Giglio, M.; Manes, A.; Gilioli, A.: „Investigations on sandwich core properties through an experimental–numerical approach“, in: Composites
Part B: Engineering, 2012, 43; S. 361–374.
[Gon07]
González, C.; LLorca, J.: „Virtual fracture testing of composites - A computational micromechanics approach“. A computational micromechanics approach, in: Engineering Fracture Mechanics, 2007, 74; S. 1126–
1138.
[Gur09]
Gurit AG: „PHG600-44-50 - Data Sheet“, Zullwil, CH, 2009.
[Gur09]
Gurit AG: „PHG600-68-50 - Data Sheet“, Zullwil, CH, 2009.
[Hei06]
Heimbs, S.; Middendorf, P.; Maier, M.: „Honeycomb Sandwich Material
Modeling for Dynamic Simulations of Aircraft Interior Components“, in:
9th International LS-DYNA Users Conference, 2006, Dearborn, MI, USA.
[Hei07]
Heimbs, S.; Middendorf, P. et al.: „Experimental and Numerical Analysis
of Composite Folded Sandwich Core Structures Under Compression“, in:
Applied Composite Materials, 2007, 14; S. 363–377.
[Hei08]
Heimbs, S.: „Virtual testing of sandwich core structures using dynamic
finite element simulations“, in: Computational Materials Science, 2008,
45; S. 205–216.
