Keyphrases
Infill Orientation
100%
Tensile Specimen
100%
Polylactic Acid
100%
Stiffness
100%
Mechanical Properties
100%
Temperature Effect
100%
Glass Transition Region
33%
Static Temperature
33%
Feeding System
33%
3D Printing Technology
33%
3D Printer
33%
Static Loading
33%
Optical Microscope
33%
Thermal Profile
33%
Strong Correlation
33%
Parabolic Profile
33%
Temperature Value
33%
Process Settings
33%
Fracture Surface
33%
Construction Parameters
33%
Young's Modulus
33%
Ultimate Tensile Strength
33%
Thermal Conditions
33%
3D Printed Composites
33%
Deposition Direction
33%
3D Printed Parts
33%
Recent Advancements
33%
Deposited Material
33%
Engineering Fields
33%
Failure Mechanism
33%
Constitutive Material Parameters
33%
Strain at Failure
33%
Gauge Length
33%
Final Failure
33%
Phenomenological Interpretation
33%
Middle Part
33%
Filament Orientation
33%
Feed Materials
33%
Micromechanical Behavior
33%
Deformed Geometry
33%
3D Printing
33%
Mechanical Testing
33%
Design Methodology
33%
Ambient Temperature
33%
Engineering
Tensile Specimen
100%
Three Dimensional Printing
100%
Failure Mechanism
50%
Glass Transition Region
50%
Static Loading
50%
Mechanical Property
50%
Engineering
50%
Gauge Length
50%
Feeding Material
50%
Setting Process
50%
Deposited Material
50%
Optical Microscope
50%
Middle Part
50%
Material Parameter
50%
Young's Modulus
50%
Fracture Surface
50%
Limitations
50%
Static Temperature
50%
Experimental Result
50%
Ultimate Tensile Strength
50%
Combined Effect
50%
Final Failure
50%
Material Science
Three Dimensional Printing
100%
Polylactide
100%
Glass Transition
50%
Young's Modulus
50%
Ultimate Tensile Strength
50%
Surface (Surface Science)
50%
Mechanical Testing
50%
Mechanical Property
50%
Static Loading
50%