A new thermoset material based on DGEBA with polyaminosiloxane curing agents is presented. The system shows reaction-induced compatibilization which prevents coalescence of polysiloxane and DGEBA rich domains, leading to gradient structured morphologies. The influence of curing temperature and/or chemical nature of the siloxane on the morphology and surface microhardness were examined. When siloxane is pre-reacted with epoxypropylphenylether (EPPE), a more homogeneous material is obtained. Microhardness profiles on the material are strongly influenced by the extension of the compositional gradients
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...
A new thermoset material based on DGEBA with polyaminosiloxane curing agents is presented. The syste...
A new thermoset material based on DGEBA with polyaminosiloxane curing agents is presented. The syste...
A new thermoset material based on DGEBA with polyaminosiloxane curing agents is presented. The syste...
The morphology of stoichiometric initially immiscible reactive blends of DGEBA epoxy resin and poly(...
(PAMS) containing pendant amino groups and diglycidyl ether of Bisphenol A (DGEBA). The initially im...
(PAMS) containing pendant amino groups and diglycidyl ether of Bisphenol A (DGEBA). The initially im...
The morphology of the diglycidyl ether of bisphenol-A / poly(3-aminopropylmethylsiloxane) (DGEBA/PAM...
The morphology of the diglycidyl ether of bisphenol-A / poly(3-aminopropylmethylsiloxane) (DGEBA/PAM...
The morphology of the diglycidyl ether of bisphenol-A / poly(3-aminopropylmethylsiloxane) (DGEBA/PAM...
(PAMS) containing pendant amino groups and diglycidyl ether of Bisphenol A (DGEBA). The initially im...
The fracture resistance of epoxy resins is significantly improved through a new molecular toughening...
(PAMS) containing pendant amino groups and diglycidyl ether of Bisphenol A (DGEBA). The initially im...
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...
A new thermoset material based on DGEBA with polyaminosiloxane curing agents is presented. The syste...
A new thermoset material based on DGEBA with polyaminosiloxane curing agents is presented. The syste...
A new thermoset material based on DGEBA with polyaminosiloxane curing agents is presented. The syste...
The morphology of stoichiometric initially immiscible reactive blends of DGEBA epoxy resin and poly(...
(PAMS) containing pendant amino groups and diglycidyl ether of Bisphenol A (DGEBA). The initially im...
(PAMS) containing pendant amino groups and diglycidyl ether of Bisphenol A (DGEBA). The initially im...
The morphology of the diglycidyl ether of bisphenol-A / poly(3-aminopropylmethylsiloxane) (DGEBA/PAM...
The morphology of the diglycidyl ether of bisphenol-A / poly(3-aminopropylmethylsiloxane) (DGEBA/PAM...
The morphology of the diglycidyl ether of bisphenol-A / poly(3-aminopropylmethylsiloxane) (DGEBA/PAM...
(PAMS) containing pendant amino groups and diglycidyl ether of Bisphenol A (DGEBA). The initially im...
The fracture resistance of epoxy resins is significantly improved through a new molecular toughening...
(PAMS) containing pendant amino groups and diglycidyl ether of Bisphenol A (DGEBA). The initially im...
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...
Telechelic glycidyl epoxide siloxanes substituted with either methyl, cyclopentyl, or cyclohexyl gro...