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Feeding properties and behavior of hammer- and knife-milled pine
Sergio Hernandez
,
Tyler L. Westover
,
Austin C. Matthews
, J. Chadron B. Ryan
,
C. Luke Williams
External Engagement and Communications
Integrated Energy Technologies
Materials, Manufacturing, & Bioenergy S&T
Research output
:
Contribution to journal
›
Article
›
peer-review
36
Scopus citations
Overview
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Keyphrases
Moisture Content
100%
Hammer
100%
Knife
100%
Hopper
50%
Feed Rate
50%
Particle Size
33%
Compressibility
33%
AuGe
33%
Time Variability
33%
Elastic Recovery
33%
Uniaxial Pressure
33%
Particle Size Distribution
16%
Bulk Density
16%
Shear Strength
16%
Size-and-shape
16%
Feeder
16%
Lodgepole pine
16%
Grind Size
16%
Coefficient of Determination
16%
Confidence Interval
16%
Strength of Materials
16%
Gravimetric Method
16%
Shear Test
16%
Small Particle Size
16%
Particle Shape Distribution
16%
Feeding Performance
16%
Feed Control
16%
Rheological Characterization
16%
Feeding Mode
16%
Effective Angle of Internal Friction
16%
Pressure-shear
16%
Gravimetric Feeding
16%
Engineering
Compressibility
100%
Feed Rate
100%
Elastic Recovery
100%
Bulk Density
50%
Shear Strength
50%
Upper Limit
50%
Mean Value
50%
Confidence Interval
50%
Internal Friction
50%
Increasing Moisture Content
50%
Effective Angle
50%
Material Feed Rate
50%