Set
TYPE=ANISOTROPIC
to define fully anisotropic behavior.
Set
TYPE=BILAMINA
to define an orthotropic material with a different Young's modulus and
Poisson's ratio in tension and compression in plane stress. This
parameter setting is applicable only in Abaqus/Explicit.
Set TYPE=COUPLED TRACTION to define coupled traction behavior for cohesive elements.
Set TYPE=ENGINEERING CONSTANTS to define orthotropic behavior by giving the “engineering constants” (the generalized Young's moduli, the Poisson's ratios, and the shear moduli in the principal directions).
Set TYPE=ISOTROPIC (default) to define isotropic behavior.
Set TYPE=LAMINA to define an orthotropic material in plane stress.
Set TYPE=ORTHOTROPIC to define orthotropic behavior by giving the elastic stiffness matrix directly.
Set TYPE=SHEAR to define the (isotropic) shear elastic modulus. This parameter setting is applicable only in conjunction with the EOS option in Abaqus/Explicit.
Set TYPE=SHORT FIBER to define laminate material properties for each layer in each shell element. This parameter setting is applicable only when using Abaqus/Standard in conjunction with the abaqus moldflow execution procedure. Any data lines given will be ignored. Material properties will be read from the ASCII neutral file identified as jobid.shf. See Translating Moldflow Data to Abaqus Input Files for more information.
Set
TYPE=TRACTION
to define orthotropic shear behavior for 1-DOF warping elements or
uncoupled traction behavior for cohesive elements.
When using a distribution to define elastic moduli, the TYPE parameter must be used to indicate the level of anisotropy in the elastic behavior. The level of anisotropy must be consistent with that defined in the distribution. See Distribution Definition.