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Heat transfer and microstructure in extrusion blowmolding
Musa R. Kamal,
Dilhan Kalyon
Department of Chemical Engineering and Materials Science
Stevens Institute of Technology
McGill University
Research output
:
Contribution to journal
›
Article
›
peer-review
15
Scopus citations
Overview
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Chemistry
Extrusion
100%
Microstructure
100%
Heat Transfer
100%
Cooling
100%
Rate
66%
Polymer
66%
Procedure
33%
Water Type
33%
Solid
33%
Reaction Temperature
33%
Crystallinity
33%
Birefringence
33%
Computer Simulation
33%
Heat Transfer Problem
33%
Engineering
Extrusion
100%
Microstructure
100%
Polymer
66%
Computer Simulation
33%
Determines
33%
Experimental Measurement
33%
Properties
33%
Good Agreement
33%
Stages
33%
Cooling Rate
33%
Crystallinity
33%
Internals
33%
Material Science
Microstructure
100%
Extrusion
100%
Polymer
66%
Solid
33%
Temperature
33%
Air
33%
Finite Difference
33%
Birefringence
33%
Physics
Cooling
100%
Differences
66%
Solid State
33%
Variations
33%
Injection
33%
Temperature
33%
Water
33%
Air
33%
Computerized Simulation
33%
Birefringence
33%