Ansys Granta MI Pro
The following properties can be exported to Granta MI Pro, depending on which data table you are exporting from, and which model you select.
Data is exported to a text file, and converted to consistent SI units.
If engineering stress-strain is used in a datasheet, it will be converted to true plastic stress-strain. (This requires a tensile modulus value at the temperature of each exported stress-strain curve.)
MaterialUniverse
- Base material
- Coercive force Hc
- Compositional summary
- Condition
- Core loss (by weight)
- Core loss alpha
- Core loss Cm
- Core loss Kc
- Core loss Ke
- Core loss Kh
- Core loss X
- Core loss Y
- Density
- Density with temperature
- Designation
- Dielectric constant (relative permittivity)
- Dielectric loss tangent (Df) with frequency
- Dissipation factor (dielectric loss tangent)
- Dynamic viscosity (absolute viscosity)
- Dynamic viscosity with temperature
- Electrical conductivity
- Electrical conductivity with temperature
- Electrical resistivity
- Electrical resistivity with temperature
- Elongation
- Fatigue S-N curve
- Glass temperature
- Intrinsic coercive force Hci
- Magnetic B-H curve
- Maximum permeability
- Maximum service temperature
- Molecular mass
- Poisson's ratio
- Relative permittivity (Dk) with frequency
- Remanent induction Br
- Saturation induction Bs
- Specific heat capacity
- Specific heat capacity with temperature
- Tangent modulus
- Tensile strength
- Tensile strength with temperature
- Thermal conductivity
- Thermal conductivity with temperature
- Thermal expansion coefficient
- Thermal expansion coefficient with temperature
- Thermal expansion coefficient with temperature_Reference Temp
- Tradenames
- True plastic stress-strain
- UNS number
- Yield strength (elastic limit)
- Yield strength with temperature
- Young's modulus
- Young's modulus with temperature
ASME BPVC
- Alloy designation/UNS number
- Density
- Min. tensile strength
- Min. yield strength
- Moduli of elasticity
- Poisson's ratio
- Tensile strength
- Thermal conductivity
- Thermal expansion
- Yield strength
Electromagnetic Materials
- B-H curve, demagnetization
- B-H curve, initial magnetization
- Core loss (by weight)
- Core loss model (electrical steel)_Kc
- Core loss model (electrical steel)_Ke
- Core loss model (electrical steel)_Kh
- Core loss model (electrical steel)_y
- Core loss model (power ferrite)_Cm
- Core loss model (power ferrite)_X
- Core loss model (power ferrite)_Y
- Density
- Density vs. temperature
- Dielectric loss tangent (Df) with frequency
- Dielectric loss tangent (Df) with frequency_Notes
- Djordjevic-Sarkar model_Conductivity at DC
- Djordjevic-Sarkar model_Conductivity equation
- Djordjevic-Sarkar model_Frequency
- Djordjevic-Sarkar model_High frequency corner
- Djordjevic-Sarkar model_Loss tangent
- Djordjevic-Sarkar model_Permittivity equation
- Djordjevic-Sarkar model_Relative permittivity
- Djordjevic-Sarkar model_Relative permittivity at DC
- Electrical conductivity
- Electrical resistivity
- Glass transition temperature
- Magnetic coercivity (intrinsic, Hci)
- Magnetic coercivity (normal, Hc)
- Magnetic loss tangent with frequency
- Magnetic permeability with frequency
- Magnetic remanence (Br)
- Magnetic saturation
- Maximum service temperature
- Poisson's ratio
- Relative permittivity (Dk) with frequency
- Resin content
- Resin type
- Specific heat capacity
- Specific heat capacity vs. temperature
- Tensile strength
- Thermal conductivity
- Thermal conductivity vs. temperature
- Thermal expansion coefficient (xy)
- Thermal expansion coefficient vs. temperature
- Thickness
- Yield strength (elastic limit)
- Young's modulus
- Young's modulus vs. temperature
ESDU MMDH
- % elongation vs. Temperature
- 0.2% proof stress, tension (L)
- 0.2% proof stress, tension vs. Temperature (L)
- Coefficient of thermal expansion vs. Temperature
- Common name
- Density
- Electrical conductivity vs. Temperature
- Elongation (L)
- Fatigue S-N curve (L)
- Heat treatment/Condition
- Nominal composition
- Poisson's Ratio (L)
- Specific heat capacity vs. Temperature
- Thermal conductivity vs. Temperature
- Ultimate tensile strength (L)
- Ultimate tensile strength vs. Temperature (L)
- Young's modulus, tension (L)
- Young's modulus, tension vs. Temperature (L)
Global Metals Specifications
- Condition / heat treatment
- Density
- Description / applications
- Electrical resistivity with temp.
- Elongation
- Equivalent / similar grades
- Specific heat capacity (true) with temp.
- Thermal conductivity with temp.
- Thermal expansion coefficient (linear, mean) with temp.
- Ultimate tensile strength
- Yield strength
- Young's modulus
- Young's modulus with temperature
Global Polymers Plastics
- CLTE, Flow
- CLTE, Flow (TMA)
- CLTE, Transverse
- Coeff of Thermal Expansion vs. Temperature
- Density
- Density vs. Temperature
- Dielectric Constant (Cured)
- Dielectric Constant 1 to 999 GHz
- Dielectric Constant 1 to 999 Hz
- Dielectric Constant 1 to 999 kHz
- Dielectric Constant 1 to 999 MHz
- Dissipation Factor 1 to 999 GHz
- Dissipation Factor 1 to 999 Hz
- Dissipation Factor 1 to 999 kHz
- Dissipation Factor 1 to 999 MHz
- Elongation at Break MD (Films)
- Elongation at Break TD (Films)
- Flexural Modulus
- Generic Polymer Type
- Glass Transition Temperature
- Nominal Tensile Elongation at Break
- Poisson's Ratio
- Poisson's Ratio vs. Temperature
- Product Description
- Specific Heat Capacity
- Specific Heat Capacity vs. Temperature
- Tensile Elongation at Break
- Tensile Elongation at Break (Elastomers)
- Tensile Fatigue
- Tensile Modulus
- Tensile Modulus vs. Temperature
- Tensile Modulus vs. Temperature, Dynamic
- Tensile Strength
- Tensile Strength (Cured)
- Tensile Strength (Elastomers)
- Tensile Strength (Films)
- Tensile Strength at Break
- Tensile Strength at Yield
- Tensile Strength at Yield (Elastomers)
- Tensile Strength at Yield (Films)
- Tensile Strength at Yield MD (Films)
- Tensile Strength at Yield TD (Films)
- Tensile Strength at Yield vs. Temperature
- Thermal Conductivity
- Thermal Conductivity vs. Temperature
- True Stress vs. Plastic Strain
- Volume Resistivity
- Volume Resistivity (Cured)
- Volume Resistivity vs. Temperature
High Temperature Alloy Data
- 0.2% Yield strength
- Density
- Fatigue S-N curve
- Mean coefficient of thermal expansion
- Poisson's ratio
- Specific heat capacity
- Static modulus of elasticity
- Thermal conductivity
- True stress vs plastic strain
- Ultimate tensile strength
JAHM Curve Data
Temperature-dependent properties:
- Core loss model (electrical steel)_Kc
- Core loss model (electrical steel)_Ke
- Core loss model (electrical steel)_Kh
- Core loss model (electrical steel)_y
- Core loss model (power ferrite)_Cm
- Core loss model (power ferrite)_X
- Core loss model (power ferrite)_Y
- Density
- Dielectric loss tangent (Df)
- Elastic modulus
- Electrical conductivity
- Electrical resistivity
- Elongation
- Fatigue (S-N curve)
- Glass transition temperature
- Magnetic core loss
- Magnetization curve B-H
- Poisson's ratio
- Relative permittivity (Dk)
- Specific heat capacity
- Tensile strength
- Thermal conductivity
- Thermal expansion (mean)
- Thermal expansion (mean)_Reference temperature
- True stress-strain (tension)
- Viscosity
- Yield strength (tension)
MMPDS-2024
- Condition
- Density
- Electrical Conductivity
- Elongation with Temp.
- Elongation, L
- Fatigue Best Fit (S/N), L
- Modulus, L
- Poisson's Ratio, L
- Specific Heat
- Specific Heat with Temp.
- Tens. Ult. Stress (L-dir) with Temp.
- Tens. Yield Stress (L-dir) with Temp.
- Tensile Modulus (L-dir) with Temp.
- Tensile Stress/Strain, L
- Thermal Conductivity
- Thermal Conductivity with Temp.
- Thermal Expansion
- Thermal Expansion with Temp.
- Ultimate Tensile Strength, L
- Yield Strength, L