We studied the static and dynamic mechanical properties of crosslinked polymer matrices using multiscale simulations and experiments. We continued to develop the multiscale methodology for generating atomistic polymer networks, and applied it to the case of phthalonitrile resin. The mechanical properties of the resulting networks were analyzed using atomistic molecular dynamics (MD) and dissipative particle dynamics (DPD). The Young’s and storage moduli increased with conversion, due both to the appearance of a network of covalent bonds, and to freezing of degrees of freedom and lowering of the glass transition temperature during crosslinking. The simulations’ data showed good quantitative agreement with experimental dynamic mec...
Cross-linked polymers have unique and advantageous properties due to the infinite elastic...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
Molecular Dynamics simulations are used to study crosslinking of an epoxy polymer. OPLS force field ...
We studied the static and dynamic mechanical properties of crosslinked polymer matrices using multis...
We use all-atom molecular dynamics (MD) simulations to predict the mechanical and thermal properties...
Molecular dynamics and molecular mechanics simulations have been used to study thermo-mechanical res...
Cross-linked polymer networks are widely used as structural and protective materials, which requires...
In this work, molecular dynamics (MD) and molecular mechanics (MM) simulations are used to study wel...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The mechanical properties of HTPE/PEG interpenetrating polymer network (IPN) binders were systemical...
Atomistic simulations, also known as molecular dynamics simulations, can give significant insights o...
In this paper we aim at predicting material properties of a cross-linked polymer by using multi-scal...
Polymer systems have gained attention during the past years because of their technological and indus...
Molecular dynamics simulations have been performed to study the effects of the cross-link density an...
Cross-linked polymers have unique and advantageous properties due to the infinite elastic...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
Molecular Dynamics simulations are used to study crosslinking of an epoxy polymer. OPLS force field ...
We studied the static and dynamic mechanical properties of crosslinked polymer matrices using multis...
We use all-atom molecular dynamics (MD) simulations to predict the mechanical and thermal properties...
Molecular dynamics and molecular mechanics simulations have been used to study thermo-mechanical res...
Cross-linked polymer networks are widely used as structural and protective materials, which requires...
In this work, molecular dynamics (MD) and molecular mechanics (MM) simulations are used to study wel...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The mechanical properties of HTPE/PEG interpenetrating polymer network (IPN) binders were systemical...
Atomistic simulations, also known as molecular dynamics simulations, can give significant insights o...
In this paper we aim at predicting material properties of a cross-linked polymer by using multi-scal...
Polymer systems have gained attention during the past years because of their technological and indus...
Molecular dynamics simulations have been performed to study the effects of the cross-link density an...
Cross-linked polymers have unique and advantageous properties due to the infinite elastic...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
Molecular Dynamics simulations are used to study crosslinking of an epoxy polymer. OPLS force field ...