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Early plastic deformation behaviour and energy absorption in porous β-type biomedical titanium produced by selective laser melting
Y. J. Liu
, S. J. Li
, L. C. Zhang
, Y. L. Hao
,
T. B. Sercombe
School of Engineering
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
140
Citations (Scopus)
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(2)
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Dive into the research topics of 'Early plastic deformation behaviour and energy absorption in porous β-type biomedical titanium produced by selective laser melting'. Together they form a unique fingerprint.
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Engineering
Deformation Behavior
100%
Deformation Energy
100%
Selective Laser Melting
100%
Plastic Deformation
100%
Porosity
100%
Energy Absorption
100%
Porous Structure
66%
Early Stage
33%
Local Stress
33%
Buckling Stress
33%
Bending Stress
33%
Elastic Energy
33%
Energy Absorption Mechanism
33%
Stress Concentration
33%
Young's Modulus
33%
Fem Model
33%
Compression Strength
33%
Compressive Strength
33%
Edge Dislocation
33%
Material Science
Plastic Deformation
100%
Compressive Strength
100%
Selective Laser Melting
100%
Young's Modulus
100%
Stress Concentration
100%
Titanium
100%
Finite Element Modeling
100%
Edge Dislocation
100%