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Low velocity impact on shape memory alloy stitched composite plates
Kin Tak Lau
, Hang Yin Ling
, Li Min Zhou
The Hong Kong Polytechnic University
Department of Mechanical Engineering
Research output
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Journal article publication
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Journal article
›
Academic research
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peer-review
56
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Citations (Scopus)
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Dive into the research topics of 'Low velocity impact on shape memory alloy stitched composite plates'. Together they form a unique fingerprint.
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Keyphrases
Shape Memory Alloy
100%
Composite Plate
100%
Shape Memory Alloy Wire
100%
Low-velocity Impact
100%
Stitched Composites
100%
Delamination
75%
Composite Structures
50%
Shape Memory Alloy Materials
50%
Energy Absorption
25%
Tensile Strength
25%
Stiffness
25%
Resistance Properties
25%
Advanced Composites
25%
Aerospace
25%
High Strain Rate
25%
Compressive Strength
25%
Thermomechanical Properties
25%
Structural Applications
25%
External Excitation
25%
Composite Properties
25%
Superelastic Properties
25%
Hysteresis Properties
25%
Delamination Energy
25%
Damage Resistance
25%
Ballistic Impact
25%
Through-thickness Reinforcement
25%
Glass-epoxy Composite
25%
Translaminar
25%
Superelastic Shape Memory Alloy
25%
Engineering
Shape Memory Alloy
100%
Laminated Composite Plate
100%
Delamination
50%
Composite Structure
25%
Major Problem
12%
Structural Application
12%
Automotives
12%
Epoxy Composite
12%
Advanced Composite Material
12%
Absorbed Energy
12%
High Strain Rate
12%
Thickness Reinforcement
12%
Resistance Property
12%
Conventional Material
12%
Ultimate Tensile Strength
12%
Theoretical Study
12%
Compression Strength
12%
Compressive Strength
12%
Material Science
Shape Memory Effect
100%
Laminated Plate
100%
Delamination
50%
Composite Material
37%
Compressive Strength
12%
Strain Rate
12%
Surface (Surface Science)
12%
Composite Material
12%
Ultimate Tensile Strength
12%