Engineering
Plant Fibre
100%
Fiber Volume Fraction
100%
Polymer Yarn
100%
Plant Fibre Composite
100%
Porosity
66%
Tensile Property
66%
Humidity Conditioning
50%
Moisture Diffusion
50%
Axial Stiffness
50%
Reinforcement Efficiency
33%
Ultimate Tensile Strength
33%
Axial Strain
33%
Anisotropic
16%
Hemp Fiber
16%
Experimental Investigation
16%
Automotives
16%
Axis Angle
16%
Sorption Property
16%
Composite Fiber
16%
Thermoplastic Matrix
16%
Axial Direction
16%
Dimensional Change
16%
Fiber Content
16%
Industrial Product
16%
Diffusion Coefficient
16%
Matrix Bonding
16%
Aligned Fiber
16%
Building Industry
16%
Fiber Orientation
16%
Diffusion Behavior
16%
Effect of Porosity
16%
Keyphrases
Hemp Yarn
100%
Fiber Yarns
100%
Axial Stiffness
42%
Reinforcement Ratio
28%
Two-way Diffusion
14%
Axial Property
14%
Planar Model
14%
Composite Data
14%
Off-axis Properties
14%
Matrix Classes
14%
Failure Characteristics
14%
Axial Tensile
14%
Axial Tensile Strength
14%
Matrix Compatibility
14%
Yarn Types
14%
Synthetic Fiber Composites
14%
Thermoplastic Matrix
14%
Low Process Temperature
14%
Off-axis Angle
14%
Volume Porosity
14%
Aligned Fibers
14%
Material Science
Polymer Composite
100%
Volume Fraction
100%
Tensile Property
66%
Ultimate Tensile Strength
33%
Synthetic Fiber
33%
Mechanical Strength
16%
Fiber Reinforced Material
16%
Diffusivity
16%
Hemp Fiber
16%
Density
16%
Fiber Type
16%
Thermoplastics
16%
Orthotropic Material
16%