Novel oil-filled microcapsules were prepared by introducing a phase separation method using ethyl cellulose as a shell-forming containing rapeseed oil. The prepared oil-filled microcapsules were evaluated by optical microscopy, scanning electron microscopy and particle size analysis. Results showed that spherical microcapsules with a diameter of 10 to 45 μm and a rough porous shell were obtained. Carboxylated styrene/butadiene copolymer latex films containing various levels of these microcapsules were subjected to various levels of pre-elongation and their tensile properties were examined. The addition of oil-filled microcapsules resulted in a significant improvement in the modulus, strain-to-break, and toughness of the films. The self-heal...
The failure of many structural polymers usually begins from the micro-cracks formed within the mater...
In recent years corrosion-resistant self-healing coatings have witnessed strong growth and their suc...
A protective coating is used to protect surface of a material from various deterioration factors. Wh...
Rapeseed oil-filled ethyl cellulose microcapsules were prepared using a two-step solvent evaporation...
Cracks caused by the effects of mechanical or chemicals forces on coatings may cause their performan...
Self-healing polymeric materials have a great potential to be explored and utilized in many applicat...
Generally, microcapsule-based self-healing materials have the limitation of single local self-healin...
The ability of polymeric coatings to self-heal itself from mechanical damage is explored in this pap...
Abstract – Microcapsules technology for smart materials application were developed recently years. O...
The purpose of this study was to develop a microcapsule-type self-healing coating system that could ...
The use of microcapsules containing healing agents, which can serve as source of self-healing for co...
WOS: 000460495800033In the present study, microcapsules (MCs) having either linseed oil (LO) or its ...
Linseed oil undergoes an oxidative drying reaction upon exposure to air, resulting in a soft film. T...
Core-shell microcapsules of urea-resorcinol-formaldehyde shell and linseed oil (LO) core material as...
Polymer materials incorporating microencapsulated self-healing agents have a wide range of applicati...
The failure of many structural polymers usually begins from the micro-cracks formed within the mater...
In recent years corrosion-resistant self-healing coatings have witnessed strong growth and their suc...
A protective coating is used to protect surface of a material from various deterioration factors. Wh...
Rapeseed oil-filled ethyl cellulose microcapsules were prepared using a two-step solvent evaporation...
Cracks caused by the effects of mechanical or chemicals forces on coatings may cause their performan...
Self-healing polymeric materials have a great potential to be explored and utilized in many applicat...
Generally, microcapsule-based self-healing materials have the limitation of single local self-healin...
The ability of polymeric coatings to self-heal itself from mechanical damage is explored in this pap...
Abstract – Microcapsules technology for smart materials application were developed recently years. O...
The purpose of this study was to develop a microcapsule-type self-healing coating system that could ...
The use of microcapsules containing healing agents, which can serve as source of self-healing for co...
WOS: 000460495800033In the present study, microcapsules (MCs) having either linseed oil (LO) or its ...
Linseed oil undergoes an oxidative drying reaction upon exposure to air, resulting in a soft film. T...
Core-shell microcapsules of urea-resorcinol-formaldehyde shell and linseed oil (LO) core material as...
Polymer materials incorporating microencapsulated self-healing agents have a wide range of applicati...
The failure of many structural polymers usually begins from the micro-cracks formed within the mater...
In recent years corrosion-resistant self-healing coatings have witnessed strong growth and their suc...
A protective coating is used to protect surface of a material from various deterioration factors. Wh...