Author Masania, K.
Kinloch, A. J.
Taylor, A. C.
Egan, D.
Sprenger, S.
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  organization: Nanoresins AG
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  surname: Egan
  fullname: Egan, D.
  organization: Emerald Performance Materials Inc
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10.1016/j.polymer.2006.11.038
10.1007/s10853-006-0130-8
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Sun Oct 22 16:06:52 EDT 2023
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IsDoiOpenAccess false
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Issue 3
Keywords Unmodified Epoxy
Silica Nanoparticles
Fracture Energy
Epoxy Equivalent Weight
Epoxy Polymer
Nanoparticle
Telechelic polymer
Fiber reinforced material
Mechanical properties
Liquid rubber
Epoxy resin
Dispersion reinforced material
Nitrile rubber
Experimental study
Silica
Hybrid composite
Composite material
Carboxyl group
Glass fiber
Fracture energy
Comparative study
Modified material
Language English
License CC BY 4.0
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References KinlochAJYuenMLJenkinsSDJ Mater Sci199429378110.1007/BF003573491:CAS:528:DyaK2cXlsFyksLw%3D
BucknallCBGilbertAHPolymer19893021310.1016/0032-3861(89)90107-91:CAS:528:DyaL1MXksVSnu7g%3D
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BB Johnsen (2390_CR10) 2007; 48
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SubjectTerms Applied sciences
Characterization and Evaluation of Materials
Chemistry and Materials Science
Classical Mechanics
Composites
Crystallography and Scattering Methods
Exact sciences and technology
Fiber composites
Fiber reinforced polymers
Forms of application and semi-finished materials
Glass fiber reinforced plastics
Glass-epoxy composites
Letter
Materials Science
Nanoparticles
Polymer industry, paints, wood
Polymer Sciences
Solid Mechanics
Technology of polymers
Title The fracture of glass-fibre-reinforced epoxy composites using nanoparticle-modified matrices
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