Users:General FEM Analysis/Elements Reference/Quad1

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(Example of a Complete Input Block)
 
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[[Category: Users:General FEM Analysis]]
 
[[Category: Users:General FEM Analysis]]
  
{{Template:UnderDevelopment|Matthias, Helles, Michi|08/2010}}
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== General Description ==
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[[File:Quad.PNG|300px|center|4-noded quad element]]
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=== Element Type ===
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This class provides a purely displacement formulated four-noded plane stress/plane strain element. '''It is intended for comparisons and  introductory purpose only'''. The element is only able to perform geometrically linear static computations and cannot carry element loads.
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=== Degrees of Freedom ===
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All nodes of the plane stress/stain element have to be defined in the plane ''z=0'' and all movements take place in this plane. So nodal displacements can be described by the two remaining translatoric degrees of freedom, ''Disp_X'' and ''Disp_Y''.
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== Input Parameters ==
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=== Parameter Description ===
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{| border="1" cellpadding="3" cellspacing="0"
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|colspan="3" style="background:#efefef;"| Compulsory Parameters
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|-
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!Parameter
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!Values, Default(*)
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!Description
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|-
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!MAT
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|EL-MAT ''int''
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|Linking to a material input block
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|-
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!THICKNESS
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|''real''
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|Parameter for constant element thickness
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|-
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!INT_TYPE_QUAD
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|FULL
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|Only full integration is available
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|-
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!MODE
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|PSTRESS, PSRTAIN
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|Switch to choose plane stress or plane strain computation
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|-
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|}
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=== Example of a Complete Input Block ===
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<pre>
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EL-PROP 1: QUAD1
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MAT          = EL-MAT 1
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THICKNESS    = 0.1
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INT_TYPE_QUAD = FULL
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EAS          = PSTRESS    ! choose: PSTRESS, PSTRAIN
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</pre>
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<pre>
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!  ElementID  Part-ID      EL-PROP        Node-IDs
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NEL  1          1            1            1  2  3  4
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</pre>
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== References ==
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<references/>

Latest revision as of 07:24, 7 September 2010


Contents

General Description

4-noded quad element

Element Type

This class provides a purely displacement formulated four-noded plane stress/plane strain element. It is intended for comparisons and introductory purpose only. The element is only able to perform geometrically linear static computations and cannot carry element loads.

Degrees of Freedom

All nodes of the plane stress/stain element have to be defined in the plane z=0 and all movements take place in this plane. So nodal displacements can be described by the two remaining translatoric degrees of freedom, Disp_X and Disp_Y.

Input Parameters

Parameter Description

Compulsory Parameters
Parameter Values, Default(*) Description
MAT EL-MAT int Linking to a material input block
THICKNESS real Parameter for constant element thickness
INT_TYPE_QUAD FULL Only full integration is available
MODE PSTRESS, PSRTAIN Switch to choose plane stress or plane strain computation


Example of a Complete Input Block

EL-PROP 1: QUAD1
MAT           = EL-MAT 1
THICKNESS     = 0.1
INT_TYPE_QUAD = FULL
EAS           = PSTRESS    ! choose: PSTRESS, PSTRAIN
 !  ElementID  Part-ID       EL-PROP        Node-IDs
NEL  1           1             1            1  2  3  4 

References





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