Title: Finite Element Method
1Finite Element Method
for readers of all backgrounds
G. R. Liu and S. S. Quek
CHAPTER 13
2CONTENTS
- ABAQUS INPUT FILE
- GENERAL PROCEDURES
3ABAQUS INPUT FILE
HEADING Model of a cantilever beam with a
downward force NODE 1, 0. 11, 2.0 NGEN 1,
11 ELEMENT, TYPEB21 1, 1, 2 ELGEN,
ELSETRECT_BEAM 1, 10 BEAM SECTION,
ELSETRECT_BEAM, SECTIONRECT, MATERIALALU 0.025,
0.040 0., 0., -1.0 MATERIAL,
NAMEALU ELASTIC, TYPEISOTROPIC 69.E9,
0.33 BOUNDARY 1, 1, 6, 0. STEP,
PERTURBATION STATIC CLOAD 11, 2,
-1000. NODE PRINT, FREQ1 U, NODE FILE,
FREQ1 U, ELEMENT PRINT, FREQ1 S, E ELEMENT
FILE, FREQ1 S, E ENDSTEP
Node cards
Element cards
Model data
Property cards
Option block
Material cards
Keyword line
ELEMENT, TYPEB23 1, 1, 2
Boundary cards
Data line
Control cards
Parameter
Keyword
Data
Load cards
History data
Output cards
4GENERAL PROCEDURES
Node Definitions
(NODE, NGEN, NCOPY, NFIL, NSET)
GEOMETRY
DEFINITION
Element Definitions
(ELEMENT, ELGEN, ELCOPY,
ELSET)
ELEMENT
BEAM SECTION, SHELL SECTION,
PROPERTIES
SOLID SECTION,
MEMBRANE
DEFINITION
SECTION,
etc.
MATERIAL
MATERIAL, ELASTIC, DE
NSITY,
PROPERTIES
VISCOELASTIC, DAMPING,
etc.
DEFINITION
BOUNDARY
BOUNDARY, CONTACT
AND
INITIAL
INTERFERENCE, CONTACT PAIR,
CONDITIONS
INITIAL CONDITIONS
, etc.
CLOAD, DLOAD, DFLUX,
LOADING
CECHARGE
, DECHARGE,
CONDITIONS
TEMPERATURE, etc.
STATIC, STEADY STATE DYNAMICS,
ANALYSIS
PIEZOELECTRIC, MASS DIFFUSION,
TYPES
HEAT TRANSFER, etc.
OUTPUT
NODE PRINT, NODE FILE, EL PRINT,
EL FILE,
etc.
REQUESTS