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Investigation of particle-surface impacts in pneumatic conveying systems
Andrew Cowell
Mechanical Engineering
Research output
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Doctoral Thesis
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Research Outputs
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Dive into the research topics of 'Investigation of particle-surface impacts in pneumatic conveying systems'. Together they form a unique fingerprint.
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Keyphrases
Pneumatic Conveying
100%
Measurement System
100%
Surface Impact
100%
Particle Surface
100%
Contact Time
50%
Piezoelectric Force Transducer
40%
Piezoelectric Crystal
40%
Crystalline Materials
30%
Short Contact Time
30%
Particle Size
20%
Material Type
20%
LS-DYNA
20%
Electrical Resistance
20%
Mass-spring System
20%
Finite Element Analysis Model
20%
Hertz Theory
20%
Application Time
10%
Small Particles
10%
Particle Impact
10%
Outcome-based
10%
Contact Force
10%
Modeling Data
10%
Analytical Modeling
10%
Single Particle Impact
10%
Resonant Response
10%
Surface Mounting
10%
Impact Event
10%
Particle Material
10%
Time Impact
10%
Applied Force
10%
Elastic Contact
10%
Mass-spring Model
10%
Resonant System
10%
Time Event
10%
Actual Contact
10%
Conductive Particles
10%
Impact Point
10%
Relative Stiffness
10%
Particle Radius
10%
Commercial Solver
10%
Elastic Collision
10%
Varying Forces
10%
Flat Surface
10%
Two-particle
10%
Experimental Section
10%
Electromechanical Properties
10%
System Elements
10%
Relative Mass
10%
Simple Analytical Model
10%
Axisymmetric Model
10%
Engineering
Pneumatic Conveying System
100%
Measurement System
100%
Particle Surface
100%
Piezoelectric
80%
Contact Time
80%
Force Transducer
40%
Experimental Result
20%
Nodes
20%
Hertz Theory
20%
Mass-Spring System
20%
Finite Element Analysis
20%
Analytical Model
10%
Experimental Investigation
10%
Contact Force
10%
Model Data
10%
Experimental Measurement
10%
Good Agreement
10%
Impact Event
10%
Material Particle
10%
Particle Diameter
10%
Applied Force
10%
Axisymmetric
10%
System Element
10%
Elastic Contact
10%
Electromechanical Property
10%
Flat Surface
10%
Elastic Scattering
10%