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Table of Contents

  • Installation
  • Example Gallery
  • Tutorials
    • Graphical User Interface (GUI)
    • Stress and strain tensors
    • Computing and plotting engineering constants
    • Averaging methods
    • Thermal expansion
    • Computing wave velocities
    • Averaging multiple phases
    • Save, read and download stiffness values
    • Plasticity
    • Manipulation of 4th-order tensors
    • Working with crystallographic textures
  • API documentation
  • Cite this package
elasticipy
  • Tutorials
  • View page source

Tutorials

Table of Contents

  • Graphical User Interface (GUI)
  • Stress and strain tensors
    • Single tensors
    • Linear elasticity
    • The Mohr circles
    • Multidimensional tensor arrays
    • Apply rotations
  • Computing and plotting engineering constants
    • The isotropic case
    • Anisotropic cases
    • Shear moduli and Poisson ratios
    • Plotting
  • Averaging methods
    • Infinite number of orientations (the non-textured case)
    • Finite number of orientations
    • Plotting Voigt, Reuss and Hill averages at once
  • Thermal expansion
    • Isotropic case
    • Anisotropic case
  • Computing wave velocities
    • Creating the p- and s-wave velocity functions
    • Plotting the wave velocities
  • Averaging multiple phases
    • Example: duplex steel
    • Voigt and Reuss averages
    • Lower bounds of elastic moduli
    • Upper bound of elastic moduli
    • Plotting the averages as functions of the volume fraction
  • Save, read and download stiffness values
    • Read & write files
    • Download data from the Materials Project
  • Plasticity
    • The Johnson-Cook model
    • Incremental loading
    • Complex loading path
    • Tresca’s plasticity criterion
  • Manipulation of 4th-order tensors
    • Mapping conventions
    • Tensor algebra
  • Working with crystallographic textures
    • Define and compose textures
    • Random sampling
    • Plotting
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