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Hardening-softening behaviour of tubular cantilever beams
T. X. Yu
*
,
S. R. Reid
, B. Wang
*
Corresponding author for this work
Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
18
Citations (Scopus)
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Dive into the research topics of 'Hardening-softening behaviour of tubular cantilever beams'. Together they form a unique fingerprint.
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Mathematics
Buckling
49%
Cantilever
29%
Cantilever Beam
92%
Carrying Capacity
82%
Experiment
15%
Hardening
77%
Influence
15%
Large Deformation
26%
Material Properties
25%
Moment
14%
Plastic Deformation
28%
Predict
19%
Radius
16%
Roots
15%
Softening
90%
Steel
24%
Strain Hardening
31%
Tend
31%
Tube
21%
Physics & Astronomy
buckling
67%
cantilever beams
71%
flattening
71%
hardening
57%
load carrying capacity
93%
moments
22%
plastic deformation
27%
radii
19%
softening
60%
steels
22%
strain hardening
34%
thickness ratio
38%
tubes
22%
Engineering & Materials Science
Buckling
54%
Cantilever beams
69%
Carbon steel
29%
Experiments
11%
Hardening
57%
Load limits
64%
Materials properties
26%
Plastic deformation
27%
Strain hardening
31%
Chemical Compounds
Cantilever Beam
100%
Force
21%
Plastic Deformation
38%
Strain Hardening
43%