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Dive into the research topics where Natallia Safronava is active.

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Featured researches published by Natallia Safronava.


Journal of Thermal Analysis and Calorimetry | 2013

A comparison of direct methods to determine n-th order kinetic parameters of solid thermal decomposition for use in fire models

Richard E. Lyon; Natallia Safronava

Pyrolysis models for burning solids in fire simulations are sensitive to the values of the activation energy, frequency factor, and reaction order that characterize the thermal decomposition of the solid to gaseous fuel, so direct measurement of these kinetic parameters is recommended, and simple methods are preferred. Three direct methods were evaluated with regard to the ability of their kinetic parameters to reproduce the thermal decomposition of five polymers measured by differential thermogravimetric analysis using the reaction order model. It was found that the two multiple heating rate methods produced identical, physically based kinetic parameters, while the peak property method produced non-physical kinetic parameters. However, all of these kinetic parameters in a single-step reaction order model gave reasonably good conversion histories for non-charring and moderately charring polymers. For a highly charring polymer, the conversion histories were poorly described without a multiple step reaction. The temperature at the maximum rate of conversion was found to be essentially independent of the reaction order, which decouples the frequency factor from the reaction order in the direct kinetic methods. Any of the direct methods are sufficiently accurate to obtain kinetic parameters for pyrolysis models because of the inherent spatial and temporal averaging of reaction rates at the burning surface of a thick solid and the uncertainty in the heat transfer mechanisms and thermo-physical parameters used in the models.


Polymer | 2009

A molecular basis for polymer flammability

Richard E. Lyon; Michael T. Takemori; Natallia Safronava; Stanislav I. Stoliarov; Richard N. Walters


Fire and Materials | 2009

The effect of variation in polymer properties on the rate of burning

Stanislav I. Stoliarov; Natallia Safronava; Richard E. Lyon


Polymer Degradation and Stability | 2011

Investigation of the thermal decomposition and flammability of PEEK and its carbon and glass-fibre composites

Parina Patel; T. Richard Hull; Richard E. Lyon; Stanislav I. Stoliarov; Richard N. Walters; Sean Crowley; Natallia Safronava


Thermochimica Acta | 2012

Thermokinetic model of sample response in nonisothermal analysis

Richard E. Lyon; Natallia Safronava; James Senese; Stanislav I. Stoliarov


Polymer Degradation and Stability | 2012

Flammability properties of PEEK and carbon nanotube composites

Parina Patel; Anna A. Stec; T. Richard Hull; Mohammed Naffakh; Ana M. Díez-Pascual; Gary Ellis; Natallia Safronava; Richard E. Lyon


Combustion and Flame | 2015

A microscale combustion calorimeter study of gas phase combustion of polymers

Richard N. Walters; Natallia Safronava; Richard E. Lyon


Fire Technology | 2015

Effect of Moisture on Ignition Time of Polymers

Natallia Safronava; Richard E. Lyon; Sean Crowley; Stanislav I. Stoliarov


Journal of Polymer Science Part A | 2017

Processable cyanate ester resin from Cis resveratrol

Lee R. Cambrea; Matthew C. Davis; Michael D. Garrison; Thomas J. Groshens; Richard E. Lyon; Natallia Safronava


Fuel | 2018

A simplified model on carbon monoxide yield in burning of polymeric solids containing flame retardants

Haiqing Guo; Richard E. Lyon; Natallia Safronava; Richard N. Walters; Sean Crowley

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Richard E. Lyon

Federal Aviation Administration

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Richard N. Walters

Federal Aviation Administration

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Sean Crowley

Federal Aviation Administration

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Parina Patel

University of Central Lancashire

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T. Richard Hull

University of Central Lancashire

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Haiqing Guo

Federal Aviation Administration

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Lee R. Cambrea

Naval Air Systems Command

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Matthew C. Davis

Oak Ridge National Laboratory

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Michael D. Garrison

Naval Air Warfare Center Weapons Division

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