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Repetitive impact loading causes local plastic deformation in wood
Ari Salmi
*
, Lauri Salminen
, Birgitta A. Engberg
, Thomas Björkqvist
, Edward Häggström
*
Corresponding author for this work
VTT Technical Research Centre of Finland
University of Helsinki
Mid Sweden University (MIUN)
Tampere University of Technology (TUT)
Research output
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Contribution to journal
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Article
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Scientific
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peer-review
12
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Keyphrases
Wood
100%
Strain Localization
100%
Repetitive Impact
100%
Ultrasonic Measurement
100%
Localized Plastic Deformation
100%
Norway Spruce
50%
Mechanical Behavior
50%
Mechanical Properties
50%
Earlywood
50%
Impactor
50%
High-speed Image
50%
Viscoelastic Material
50%
Low Modulus
50%
High-speed Camera
50%
Single Impact
50%
High Compression
50%
Fatigue Cycles
50%
Peak Amplitude
50%
Impact Compression
50%
Thin-walled Parts
50%
Classical Mechanics
50%
Stiffness Modulus
50%
Pitch-catch
50%
Cellular Solids
50%
Frequency Compression
50%
Cyclic Compression
50%
Strain Propagation
50%
Dynamic Material Tests
50%
Split-Hopkinson
50%
Custom-made Device
50%
Constrained Compression
50%
INIS
wood
100%
loading
100%
plasticity
100%
compression
100%
layers
60%
strains
60%
devices
40%
speed
40%
relaxation
40%
peaks
40%
ultrasonics
40%
spruces
20%
norway
20%
surfaces
20%
dynamics
20%
pitches
20%
images
20%
stiffness
20%
mechanical properties
20%
amplitudes
20%
walls
20%
velocity
20%
solids
20%
cameras
20%
fatigue
20%
time dependence
20%
strain rate
20%
hypothesis
20%
materials testing
20%
classical mechanics
20%
Engineering
Strain Localization
100%
Impact Loads
100%
Plastic Deformation
100%
Ultrasonics
100%
Simple Model
50%
High Strain Rate
50%
Function of Time
50%
Speed Camera
50%
Hopkinson
50%
Peak Amplitude
50%
Stiffness Modulus
50%
Single Impact
50%
Material Science
Plastic Deformation
100%
Impact Loads
100%
Strain Rate
50%
Viscoelastic Material
50%
Cellular Solid
50%
Surface (Surface Science)
50%
Materials Testing
50%