This core package includes static stress analysis
with linear material models; weight, center of gravity
and mass moment of inertia analysis; linear contact;
FEMPRO, an easy-to-use,
single user interface for finite element modeling,
results evaluation and presentation; and a suite of
modeling capabilities.
TYPICAL APPLICATIONS
- Annealing
- Design optimization
- Impact analysis
- Infrastructure design
- Interference analysis
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- Piezoelectric component design
- Press-fit
- Pressure vessel design
- Quenching
- Rotating machinery design
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- Snap-fit
- Tolerance testing
- Tower design
- Underwater design optimization
- Wind load simulation
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ANALYSIS
CAPABILITIES
- Static stress with linear material models
- Multiple-body contact and interaction
- Hertzian contact
- Weight, center of gravity and mass moment
of inertia
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- Thermal stress
- Sub-modeling
- Voltage-induced effects
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MODELING
- InCAD technology for direct CAD/CAE data exchange
with Alibre Design, Autodesk Inventor, CADKEY, KeyCreator,
Mechanical Desktop, Pro/ENGINEER, Solid Edge and SolidWorks
- Full associativity with each design change for
Alibre Design, Autodesk Inventor, Pro/ENGINEER, Solid
Edge and SolidWorks
- CAD support for Rhinoceros
- CAD support for 3-D solid models in ACIS, IGES,
STEP and STL file formats
- CAD support for 2-D and 3-D wireframe geometry
in CDL, DXF and IGES file formats
- Ability to create a CAD Transfer Utility installation
package to provide direct data exchange even when
ALGOR and the CAD package (Alibre Design, Autodesk
Inventor, CADKEY, KeyCreator, Mechanical Desktop,
Pro/ENGINEER, Solid Edge or SolidWorks) reside on
separate computers
- Capability to open CAD models in ALGOR even if
the CAD package (Alibre Design, Autodesk Inventor,
CADKEY, KeyCreator, Mechanical Desktop, Pro/ENGINEER,
Rhinoceros, Solid Edge or SolidWorks) is not open
- A user-controlled feature suppression tool with
the option to suppress details either manually or
based on feature size
- Ability to merge parts from any CAD source into
a single FEA model
- Part names from a CAD solid model captured in the
FEA model
- Part colors from a CAD solid model captured in
the FEA model
- Automatically selects the unit system based on
the unit of length of the CAD solid model
- Superdraw 2- and 3-D sketching tools including
capabilities to draw points, lines, rectangles, arcs,
circles, splines and tangent lines and modify sketch
objects with commands including copy, divide, fillet,
intersect, rotate, mirror, move, parallel, trim/extend
and delete
- Complex surface modeling using NURBS, polylines
and b-splines
- Joint Creation Utility for automatically creating
pin and ball joints based on either two specified
endpoints or a mid-point
- Capability to combine all element types available
for a given analysis type in a single model
- Capability to define loads and constraints relative
to a local coordinate system
- Provides direct access to AISC section property
data for use with beam elements
- Interactive definition of beam cross-section orientation
- Capability to define beam offset locations
- Capability to import FEA models that are stored
in ABAQUS, ANSYS, FEMAP, NASTRAN, PATRAN or SDRC file
formats
- Support for Tsai-Wu, Maximum Stress or Maximum
Strain failure criteria for composites
- 2- and 3-D parametric, structured meshing options
for 3-point triangular, 4-point rectangular, 8-point
3-D, between two objects and 4-object 3-D meshing
- Automatic, unstructured 2-D meshing
- Automatic, unstructured 3-D quadrilateral or triangular
surface mesh generation and refinement
- Automatic, intelligent, feature-based mesh refinement
and point-and-click definition of areas where a finer
mesh is desired
- A midplane mesh engine for reducing thin, solid
features in a CAD model to plate/shell elements with
automatic handling of parts, assemblies, multi-thickness
regions and mixed element type models
- Automatic, hex-dominant hybrid solid meshing to
produce higher quality elements on the first pass
and more accurate results
- One-step assembly meshing
ELEMENT LIBRARY
- Spring element
- 2-D element
- 3-D truss element
- 3-D beam element
- 3-D membrane plane stress element
- 3-D plate element
- Thin composite element
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- 3-D tetrahedral element
- Gap element
- Cable element
- Rigid element
- Sandwich (thick) composite element
- 3-D brick element
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MATERIAL MODELS
- Linear elastic isotropic
- Linear temperature-dependent isotropic
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- Linear elastic orthotropic
- Linear temperature-dependent orthotropic
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- Piezoelectric
- Composite laminate
- General piezoelectric
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LOADING AND CONSTRAINTS
- Static friction
- Edge forces
- Surface temperatures
- Prescribed displacements
- Prescribed rotations
- Pressures
- Hydrostatic pressures
- Centrifugal forces
- Global and off-axis edge constraints
- Variable-stiffness off-axis surface constraints
- Curing temperature difference
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- Forces
- Moments
- Voltages
- Surface prescribed displacements
- Surface prescribed rotations
- Tractions
- Distributed loads
- Global and off-axis constraints
- Variable-stiffness off-axis constraints
- Variable-stiffness off-axis edge constraints
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- Surface forces
- Temperatures
- Surface voltages
- Edge prescribed displacements
- Edge prescribed rotations
- Variable surface loads
- Gravitational forces
- End releases
- Global and off-axis surface constraints
- Mean temperature difference
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SOLVER OPTIONS
- Banded
- Symmetric sparse
- Skyline
- Iterative
- Parallel processing for multiple processors
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RESULTS EVALUATION
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Integrated environment for model
visualization and results evaluation
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3-D dynamic viewing options
and rich colors provided by OpenGL-based displays
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Material and result rendering
for model and analysis visualization
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Cross-sectional viewing options
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Dynamic clipping planes for
slicing models
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Capability to display parts
as transparent (translucent)
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Multiple methods for selecting
parts or elements in order to hide areas of the
model
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Result contours of:
- Displacement
- Strain
- Strain energy density
- Factor of safety
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- Stress
- Reaction force
- Vector plots of principal stress
directions
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Annotations to highlight the
location of minimum and maximum results
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Capability to define result
probes at desired locations
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Annotation of graph values
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Capability to display or graph
results in an arbitrary orientation using a local
coordinate system
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Capability to simultaneously
view varying result types through multiple view
windows
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Shear and bending moment
diagrams
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Text output of weight, volume,
center of gravity, mass moment of inertia and
products of inertia
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Precision contouring for accuracy
assessment
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Stress linearization utility
for use with a linear static stress analysis on
thin-walled structures
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Capability to combine the
results of multiple linear static stress analyses
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Built-in, virtual instrumentation
through Monitor for result graphs
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Automatic display of units
in the results legend
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Uses TrueType fonts for legend
and annotations
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Dynamic controls for positioning
the results legend, annotations and background
images
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Pre-defined and user-defined
color palettes for result contours
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Slider to dynamically control
the scale and display of the displaced model
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Capability to display the
undisplaced model using transparency
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Slider for controlling the
display of elements based on a lower or upper
result limit
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Capability to individually
control the color, mesh and display of results
for each part
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Realistic visualization of
beam elements
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Realistic visualization of
plate elements
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Point-and-click result inquiry
options
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Inquire mode enables results
from selected objects or load and constraint data
to be displayed and available for copy and paste
operations to other applications
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Support for exporting results
to common Windows applications
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Capability to save all settings
for a specific presentation and view that same
display at any time or use those settings with
a different model
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Graphical element orientation
display
For more information please visit
Algor
Professional Static LM
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