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deck.yaml
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Problem Type:
Type: "Layers"
Dimension: 3
Number of Materials: 1
Number of Objects: 3
Material1:
Mechanical:
Coefficient of Thermal Expansion: 0.000041
Density [kg.m-3]: 1050
Thermal:
Convection Coefficient [W.m-2.K-1]: 30
Thermal Conductivity [W.m-1.K-1]:
x: 0.2
y: 0.2
z: 0.2
Specific Heat [J.kg-1.K-1]: 2100
Thermal Resistance Filament-Plate [m2.K.W-1]: 0.00005
Thermal Resistance Filament-Filament [m2.K.W-1]: 0.0001
Heating plate:
Density [kg.m-3]: 2210
Specific Heat [J.kg-1.K-1]: 730
Thermal Conductivity [W.m-1.K-1]: 1.4
Boundary Conditions:
Number of boundary conditions: 8
BD1:
Localisation: Bot
Model: Dirichlet
Value:
BD2:
Localisation: Top
Model: Neumann
Value: convection
BD3:
Localisation: Left
Model: Neumann
Value: convection
BD4:
Localisation: Right
Model: Neumann
Value: convection
BD5:
Localisation: Front
Model: Neumann
Value: convection
BD6:
Localisation: Behind
Model: Neumann
Value: convection
BD7:
Localisation: Inside
Model: conduction
Value:
BD8:
Localisation: Interlayer
Model: conduction
Value:
Dimensions:
Number of Objects:
Height: 3
Width: 1
Length: 1
Object:
Thickness [m]: 0.0008
Width [m]: 0.00125
Length [m]: 0.01
Experimental Conditions:
Extrusion Temperature [K]: 528
Bed Temperature [K]: 373
Room Temperature [K]: 368
Time between 2 filament depositions [s]: 8.9
Vcooling [K.s-1]: 0.5
Time before cooling [s]: 60
Time after cooling [s]: 60
Simulation:
Number of intervals per object:
Thickness: 4
Width: 6
Length: 50
Animation:
Color Map: 'plasma'
Time Interval: 5