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The energy-absorbing capacity of grid-domed textile composites
T. X. Yu
,
Xiaoming Tao
, P. Xue
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
43
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Citations (Scopus)
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Keyphrases
Energy Absorption Capacity
100%
Textile Composites
100%
Polyester
40%
Plastic Collapse
40%
Polyethylene Foam
40%
Nonwoven Fabric
20%
Knitted Fabric
20%
Fabric Preform
20%
Strain Rate
20%
Composite Sample
20%
High Pressure
20%
Pressure Level
20%
Truncated Conical Shell
20%
Cellular Composite
20%
Relative Density
20%
Energy Absorption Behavior
20%
Specific Energy
20%
Energy Absorption Mechanism
20%
Quasi-static Impact
20%
Quasi-static Compression
20%
Compression Condition
20%
Spherical Cap
20%
Impact Condition
20%
Engineering
Absorbing Capacity
100%
Composite Textile
100%
Experimental Result
25%
Energy Absorption Capacity
25%
Impact Condition
25%
Knitted Fabric
25%
Good Agreement
25%
Pressure Level
25%
Energy Absorption Mechanism
25%
Strain Rate
25%
Conical Shell
25%
Nonwoven Fabrics
25%
Energy Absorption
25%
Material Science
Composite Material
100%
Textile Composite
100%
Plastic Collapse
40%
Polyethylene
40%
Polyester
40%
Strain Rate
20%
Nonwoven Fabrics
20%
Density
20%