The thermal decomposition of polyphenolic resins was studied by reactive molecular dynamics (RMD) simulation at elevated temperatures. Atomistic models of the polyphenolic resins to be used in the RMD were constructed using an automatic method which calls routines from the software package Materials Studio. In order to validate the models, simulated densities and heat capacities were compared with experimental values. The most suitable combination of force field and thermostat for this system was the Forcite force field with the Nosé–Hoover thermostat, which gave values of heat capacity closest to those of the experimental values. Simulated densities approached a final density of 1.05–1.08 g/cm3 which compared favorably wit...
The complex structural and chemical changes that occur during polymerization and pyrolysis criticall...
We carried out reactive molecular dynamics simulations based on the ReaxFF reactive force field to s...
The complex structural and chemical changes that occur during polymerization and pyrolysis criticall...
The thermal decomposition of polyphenolic resins was studied by reactive molecular dynamics (RMD) si...
The thermal decomposition of polyphenolic resins was studied by reactive molecular dynamics (RMD) si...
We examine the mechanism of pyrolysis and charring of large (> 10,000 atom) phenol-formaldehyde resi...
During terrestrial atmospheric re-entry, aerospace vehicles can be subjected to temperatures greater...
Materials science is beginning to adopt computational simulation to eliminate laboratory trial and e...
One of the challenges in understanding polymer flammability is the lack of information about microsc...
Ablative materials are an important component of spacecraft and hypersonic vehicles, and are applied...
Ablative materials are an important component of spacecraft and hypersonic vehicles, and are applied...
The theory and implementation of reactive molecular dynamics (RMD) are presented. The capabilities o...
To predict the high temperature behavior of a carbon/phenolic charring ablator, a model of the therm...
Research Objective: To develop a computer model for the prediction of flammability performance and ...
We carried out reactive molecular dynamics simulations based on the ReaxFF reactive force field to s...
The complex structural and chemical changes that occur during polymerization and pyrolysis criticall...
We carried out reactive molecular dynamics simulations based on the ReaxFF reactive force field to s...
The complex structural and chemical changes that occur during polymerization and pyrolysis criticall...
The thermal decomposition of polyphenolic resins was studied by reactive molecular dynamics (RMD) si...
The thermal decomposition of polyphenolic resins was studied by reactive molecular dynamics (RMD) si...
We examine the mechanism of pyrolysis and charring of large (> 10,000 atom) phenol-formaldehyde resi...
During terrestrial atmospheric re-entry, aerospace vehicles can be subjected to temperatures greater...
Materials science is beginning to adopt computational simulation to eliminate laboratory trial and e...
One of the challenges in understanding polymer flammability is the lack of information about microsc...
Ablative materials are an important component of spacecraft and hypersonic vehicles, and are applied...
Ablative materials are an important component of spacecraft and hypersonic vehicles, and are applied...
The theory and implementation of reactive molecular dynamics (RMD) are presented. The capabilities o...
To predict the high temperature behavior of a carbon/phenolic charring ablator, a model of the therm...
Research Objective: To develop a computer model for the prediction of flammability performance and ...
We carried out reactive molecular dynamics simulations based on the ReaxFF reactive force field to s...
The complex structural and chemical changes that occur during polymerization and pyrolysis criticall...
We carried out reactive molecular dynamics simulations based on the ReaxFF reactive force field to s...
The complex structural and chemical changes that occur during polymerization and pyrolysis criticall...