!PLASTIC¶
Definition of plastic material
When !PLASTIC is defined, within the same !MATERIAL, !ELASTIC must also be defined.
Parameters¶
YIELD = MISES (Default), Mohr-Coulomb, DRUCKER-PRAGER, USER
HARDEN = BILINEAR (Default), MULTILINEAR, SWIFT, RAMBERG-OSGOOD, KINEMATIC, COMBINED
DEPENDENCIES = 0 (Default) / 1
INFINITESIMAL When specified, the infinitesimal-deformation assumption is applied
** 2nd line and subsequent lines **
When YIELD = MISES (Default)¶
** When HARDEN = BILINEAR (Default) **
** When HARDEN = MULTILINEAR **
** When HARDEN = SWIFT **
** When HARDEN = RAMBERG-OSGOOD **
** When HARDEN = KINEMATIC **
** When HARDEN = COMBINED **
When YIELD = Mohr-Coulomb or Drucker-Prager¶
** When HARDEN = BILINEAR (Default) **
** When HARDEN = MULTILINEAR **
HARDEN = are ignored, and the default value (BILINEAR) is used.
| Variable | Type | Description |
|---|---|---|
| YIELD0 | R | Initial yield stress |
| H | R | Hardening coefficient |
| PSTRAIN | R | Plastic strain |
| YIELD | R | Yield stress |
| \(\varepsilon0, K, n\) | R | \(\overline{\sigma} = k\left( \varepsilon_{0} + \overline{\varepsilon} \right)^{n}\) |
| \(\varepsilon0, D, n\) | R | \(\varepsilon = \frac{\sigma}{E} + \varepsilon_{0}\left( \frac{\sigma}{D} \right)^{n}\) |
| \(\phi\) | R | Internal friction angle |
| \(\psi\) | R | Dilatancy angle (default: same value as \(\phi\)) |
| c | R | Cohesion |
| C | R | Linear kinematic hardening coefficient |
| Tempearture | R | Temperature (required when DEPENDENCIES=1) |
| v1, v2...v10 | R | Material constants |
** When YIELD= USER **
Example¶
!PLASTIC, YIELD=MISES, HARDEN=MULTILINEAR, DEPENDENCIES=1
276.0, 0.0, 20.
296.0, 0.0018, 20.
299.0, 0.0053, 20.
303.0, 0.008, 20.
338.0, 0.0173, 20.
372.0, 0.0271, 20.
400.0, 0.037, 20.
419.0, 0.0471, 20.
437.0, 0.0571, 20.
450.0, 0.0669, 20.
460.0, 0.0767, 20.
469.0, 0.0867, 20.
477.0, 0.0967, 20.
276.0, 0.0, 100.
276.0, 0.0018, 100.
282.0, 0.0053, 100.
295.0, 0.008, 100.
330.0, 0.0173, 100.
370.0, 0.0271, 100.
392.0, 0.037, 100.
410.0, 0.0471, 100.
425.0, 0.0571, 100.
445.0, 0.0669, 100.
450.0, 0.0767, 100.
460.0, 0.0867, 100.
471.0, 0.0967, 100.
128.0, 0.0, 400.
208.0, 0.0018, 400.
243.0, 0.0053, 400.
259.0, 0.008, 400.
309.0, 0.0173, 400.
340.0, 0.0271, 400.
366.0, 0.037, 400.
382.0, 0.0471, 400.
396.0, 0.0571, 400.
409.0, 0.0669, 400.
417.0, 0.0767, 400.
423.0, 0.0867, 400.
429.0, 0.0967, 400.
The work-hardening coefficient is calculated by interpolation from the input data above for the specified temperature or plastic strain. The same PSTRAIN array must be entered for each temperature value.