Skip to main navigation
Skip to search
Skip to main content
New Jersey Institute of Technology Home
Help & FAQ
Home
Profiles
Research units
Facilities
Federal Grants
Research output
Press/Media
Search by expertise, name or affiliation
A rigorous breakage matrix methodology for characterization of multi-particle interactions in dense-phase particle breakage
E. Bilgili
, M. Capece
Chemical and Materials Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
13
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'A rigorous breakage matrix methodology for characterization of multi-particle interactions in dense-phase particle breakage'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Multi-particle Interactions
100%
Particle Breakage
100%
Dense Phase
100%
Breakage Matrix
100%
Comminution Processes
40%
Breakage
40%
Break Tests
40%
Breakage Function
40%
Population Balance Model
20%
Monodisperse
20%
Law
20%
Process Test
20%
First-order
20%
Function-based
20%
Polydispersity
20%
Disperse Sample
20%
Binary Mixture
20%
Effectiveness Factor
20%
Rational Approximation
20%
Feed Samples
20%
Uniaxial Compression Test
20%
Limestone Particle Size
20%
Engineering
Breakage
100%
Dense Phase
100%
Phase Particle
100%
Compression Test
8%
Binary Mixture
8%
Effectiveness Factor
8%
Fitting Capability
8%
Material Science
Particle Breakage
100%
Comminution
100%
Powder
50%
Binary Mixture
50%