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Opposed flow burning of PMMA cylinders in normoxic atmospheres
Maria Thomsen
, Carlos Fernandez-Pello
, Xinyan Huang
, Sandra L. Olson
, Paul V. Ferkul
Faculty of Engineering and Science
Research output
:
Contribution to journal
›
Article
›
peer-review
11
Scopus citations
Overview
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INIS
atmospheres
100%
oxygen
100%
cylinders
100%
methacrylates
100%
concentration
83%
space vehicles
83%
flammability
50%
seas
33%
environment
33%
fires
33%
safety
33%
gravitation
33%
data
16%
volume
16%
space
16%
information
16%
partial pressure
16%
solids
16%
design
16%
exploration
16%
sea level
16%
velocity
16%
flames
16%
Keyphrases
Poly(methyl methacrylate)
100%
Oxygen Concentration
100%
Normoxic
100%
Opposing Flow
100%
Ambient Pressure
60%
Flammability
60%
Normoxic Conditions
60%
Reduced Pressure
40%
Environmental Conditions
20%
Work Study
20%
Oxygen Partial Pressure
20%
Opposed-flow Flame Spread
20%
Fire Safety
20%
Modified Gravity
20%
Normal Gravity
20%
Preparation Time
20%
Reduced Oxygen
20%
Manned Spacecraft
20%
Space Exploration
20%
Combustible Solid
20%
Spacecraft Fire Safety
20%
Standard Atmosphere
20%
Spacewalk
20%
Space Materials
20%
Cylindrical Sample
20%
Earth and Planetary Sciences
Spacecraft
100%
Protective Atmosphere
100%
Combustibility
75%
Accident Prevention
50%
Partial Pressure
25%
Microgravity
25%
Sea Level
25%
Space Exploration
25%
Manned Spacecraft
25%
Extravehicular Activity
25%
Engineering
Spacecraft
100%
Oxygen Concentration
100%
Ambient Pressure
60%
Combustibility
60%
Fire Safety
40%
Reduced Pressure
40%
Partial Pressure
20%
Spacewalk
20%
Material Science
Protective Atmosphere
100%
Spacecraft
100%
Cylinder
100%
Flammability
60%
Physics
Spacecraft
100%
Protective Atmosphere
100%
Microgravity
25%
Space Exploration
25%
Manned Spacecraft
25%
Extravehicular Activity
25%
Chemical Engineering
Polymethyl Methacrylate
100%