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Porosity tailoring mechanisms in sonicated polymeric foams
C. Torres-Sanchez, J. R. Corney
School of Engineering & Physical Sciences
Institute of Mechanical, Process & Energy Engineering
Institute of Biological Chemistry, Biophysics and Bioengineering
Research output
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Contribution to journal
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Article
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peer-review
10
Citations (Scopus)
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INIS
porosity
100%
foams
100%
packing
60%
distribution
40%
diffusion
40%
bubbles
40%
irradiation
40%
polymerization
40%
gelation
40%
hypothesis
20%
control
20%
voids
20%
microstructure
20%
mechanical properties
20%
engineers
20%
engineering
20%
solids
20%
volume
20%
carbon dioxide
20%
mass transfer
20%
ultrasonics
20%
matrices
20%
increasing
20%
thermal properties
20%
convection
20%
energy balance
20%
chemical properties
20%
mass balance
20%
solidification
20%
Engineering
Porosity
100%
Polymeric Foam
100%
Polymerization
40%
Gelation
40%
Experimental Result
20%
Microstructure
20%
Convective
20%
Flexible Process
20%
Blowing Agent
20%
Engineering
20%
Energy Engineering
20%
Mass Transfer
20%
Ultrasonics
20%
Mass Balance
20%
Material Science
Polymerization
100%
Volume Fraction
50%
Solidification
50%
Thermal Property
50%
Chemical Property
50%
Blowing Agent
50%
Carbon Dioxide
50%
Chemical Engineering
Polymerization
100%
Gelation
100%
Mass Transfer
50%