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nagrađivanje Obogaćenje vrijeme fracture of polymers nature čestica inovacija izvodljiv

A comparative study of nano-fillers to improve toughness and modulus of  polymer-derived ceramics | Scientific Reports
A comparative study of nano-fillers to improve toughness and modulus of polymer-derived ceramics | Scientific Reports

Fracture of Polymer Networks Containing Topological Defects | Macromolecules
Fracture of Polymer Networks Containing Topological Defects | Macromolecules

Plastic flow anisotropy drives shear fracture | Scientific Reports
Plastic flow anisotropy drives shear fracture | Scientific Reports

Prolonged in situ self-healing in structural composites via  thermo-reversible entanglement | Nature Communications
Prolonged in situ self-healing in structural composites via thermo-reversible entanglement | Nature Communications

Universally autonomous self-healing elastomer with high stretchability |  Nature Communications
Universally autonomous self-healing elastomer with high stretchability | Nature Communications

Hydraulic fracture during epithelial stretching | Nature Materials
Hydraulic fracture during epithelial stretching | Nature Materials

Brittle Fracture - an overview | ScienceDirect Topics
Brittle Fracture - an overview | ScienceDirect Topics

Ultrarobust, tough and highly stretchable self-healing materials based on  cartilage-inspired noncovalent assembly nanostructure | Nature  Communications
Ultrarobust, tough and highly stretchable self-healing materials based on cartilage-inspired noncovalent assembly nanostructure | Nature Communications

Material properties and applications of mechanically interlocked polymers |  Nature Reviews Materials
Material properties and applications of mechanically interlocked polymers | Nature Reviews Materials

A universal method to easily design tough and stretchable hydrogels | NPG  Asia Materials
A universal method to easily design tough and stretchable hydrogels | NPG Asia Materials

In situ mechanical reinforcement of polymer hydrogels via metal-coordinated  crosslink mineralization | Nature Communications
In situ mechanical reinforcement of polymer hydrogels via metal-coordinated crosslink mineralization | Nature Communications

Solution-processable, soft, self-adhesive, and conductive polymer  composites for soft electronics | Nature Communications
Solution-processable, soft, self-adhesive, and conductive polymer composites for soft electronics | Nature Communications

Healable, memorizable, and transformable lattice structures made of stiff  polymers | NPG Asia Materials
Healable, memorizable, and transformable lattice structures made of stiff polymers | NPG Asia Materials

Tailoring inorganic–polymer composites for the mass production of  solid-state batteries | Nature Reviews Materials
Tailoring inorganic–polymer composites for the mass production of solid-state batteries | Nature Reviews Materials

Mechanically robust supramolecular polymer co-assemblies | Nature  Communications
Mechanically robust supramolecular polymer co-assemblies | Nature Communications

Fracture mechanisms of polymer nanocomposites with different additive... |  Download Scientific Diagram
Fracture mechanisms of polymer nanocomposites with different additive... | Download Scientific Diagram

3D printing of conducting polymers | Nature Communications
3D printing of conducting polymers | Nature Communications

Rapid energy-efficient manufacturing of polymers and composites via frontal  polymerization | Nature
Rapid energy-efficient manufacturing of polymers and composites via frontal polymerization | Nature

Anti-fatigue-fracture hydrogels
Anti-fatigue-fracture hydrogels

3D printing of inherently nanoporous polymers via polymerization-induced  phase separation | Nature Communications
3D printing of inherently nanoporous polymers via polymerization-induced phase separation | Nature Communications

Polymers with autonomous life-cycle control | Nature
Polymers with autonomous life-cycle control | Nature

Polymers | Free Full-Text | Clay-Based Polymer Nanocomposites: Essential  Work of Fracture
Polymers | Free Full-Text | Clay-Based Polymer Nanocomposites: Essential Work of Fracture

Fracture of model end-linked networks | PNAS
Fracture of model end-linked networks | PNAS