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Army vehicle primer properties during wet-dry cycling
Kerry N. Allahar
,
B. R. Hinderliter
, G. P. Bierwagen
, D. E. Tallman
Mechanical & Industrial Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Scopus citations
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Keyphrases
Army
100%
Sodium Chloride
100%
Diffusion Coefficient
100%
Capacitance
100%
Ingress
100%
Liquid Medium
100%
Egress
100%
Drying Process
100%
Coating Properties
100%
Wetting Process
100%
Dry-wet Cycling
100%
Testing Method
50%
Spectroscopic Measurement
50%
In Situ
50%
Temperature Effect
50%
Accelerated Testing
50%
Activation Energy
50%
Drying Conditions
50%
Water Volume
50%
Fickian
50%
Water Loss
50%
Barrier Properties
50%
Ionic Species
50%
Varying Temperature
50%
Fick's Second Law
50%
Water Uptake
50%
United States Military
50%
Wet Condition
50%
Room Temperature Ionic Liquid
50%
Impedance Measurement
50%
Impedance Spectroscopy
50%
Saturated Water
50%
Weathering Conditions
50%
Hydrophilic Ionic Liquid
50%
Electrochemical Impedance
50%
Single Frequency Impedance
50%
Water Species
50%
Engineering
Coating Property
100%
Liquid Medium
100%
Diffusion Coefficient
100%
Experimental Result
50%
Dry Condition
50%
Barrier Property
50%
Saturated Water
50%
Accelerated Testing Method
50%
Room Temperature
50%
Activation Energy
50%
Electrical Impedance
50%
United States
50%
Material Science
Diffusivity
100%
Capacitance
100%
Ionic Liquid
100%
Electrical Impedance
50%
Activation Energy
50%
Sodium
50%
Weathering
50%