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ANSYS simulation technology enables you to predict with confidence that your
products will thrive in the real world. Customers trust our software to help ensure
the integrity of their products and drive business success through innovation.
ANSYS AIM
Simulation for Every Engineer
ANSYS AIM is a complete solution for design engineering simulations,
with all steps from geometry creation to optimization and results
generation in a single, modern, easy-to-use environment.
Lower the Barrier to Entry for Multiphysics Simulation
ANSYS AIM guides engineers through their single discipline and
multiphysics simulations using templates and task-based workflows,
enabling non-experts to rapidly learn the software and obtain
meaningful results that consider all the forces at play.
Automate Engineering Best Practices
ANSYS AIM makes it easy for simulation group managers and expert
analysts to create custom templates and workflows that enforce company-
specified best practices and minimize unnecessary options for all steps
in the simulation process.
Equivalent stress results in a mountain
bike frame assembly
Equivalent stress results from fluid forces and
thermal gradients in a flow control valve
Fluid velocity streamlines in a heat
exchanger
Current density in an IGBT package
Equivalent stress results in a
transmission assembly
MKT0000133
Strength Analysis
Static analysis with linear materials, large deflection analysis; bonded,
no-separation, joints, rough, frictionless and frictional contact modeling
Vibrations
Modal
Durability
Stress-life and strain-life fatigue
Thermal
Steady-state thermal conduction, convection and radiation
Fluids
Steady-state, single phase flow; incompressible and compressible fluids;
laminar, turbulent, and laminar/turbulent transition flows; polymer
extrusion; conjugate heat transfer; fluid buoyancy effects; external
radiation; flow pathlines (massless)
Low Frequency Electromagnetics
DC electric conduction; magnetostatics with linear and nonlinear
magnetic materials
Multiphysics
One-way fluid-structure interaction, thermal-electric, thermal-stress,
thermal-electric-stress, thermal-flow, magnetic-thermal, and
magnetic-thermal-stress
Automation and Customization
Journaling and scripting, expressions, user interface extensions, solver
command extensions, custom templates, and project wizards
Design Exploration
Design points, robust design and optimization
Geometry Modeling and Meshing
Direct model creation and editing; model import from all major CAD
sources and neutral formats; parameterization of created and imported
models; automatic, physics-aware tetrahedral and hexahedral meshing
with optional size controls.
ANSYS Multiphysics solutions
help cross-functional engineering
organizations predict the
performance of complex products
influenced by multiple physics
and improve their designs
through simulations of the
interactions between physics.
“For the simulation of different
physical domains, for example
structural mechanical simulation
coupled with fluid mechanics,
we have introduced ANSYS AIM
simulation software because of
its easy-to-use multiphysics
coupling. Now our technicians
and engineers with no special
simulation knowledge are able
to use multiphysics simulation
in their daily work.”
Richard Krellner,
Director Design Division,
Klubert + Schmidt
ANSYS AIM is being developed on a rapid release cycle with several releases
per year. These capabilities are current as of ANSYS AIM 17.1.
ANSYS, Inc.
www.ansys.com
ansysinfo@ansys.com
866.267.9724
© 2016 ANSYS, Inc. All Rights Reserved.

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ANSYS AIM

  • 1. ANSYS simulation technology enables you to predict with confidence that your products will thrive in the real world. Customers trust our software to help ensure the integrity of their products and drive business success through innovation. ANSYS AIM Simulation for Every Engineer ANSYS AIM is a complete solution for design engineering simulations, with all steps from geometry creation to optimization and results generation in a single, modern, easy-to-use environment. Lower the Barrier to Entry for Multiphysics Simulation ANSYS AIM guides engineers through their single discipline and multiphysics simulations using templates and task-based workflows, enabling non-experts to rapidly learn the software and obtain meaningful results that consider all the forces at play. Automate Engineering Best Practices ANSYS AIM makes it easy for simulation group managers and expert analysts to create custom templates and workflows that enforce company- specified best practices and minimize unnecessary options for all steps in the simulation process. Equivalent stress results in a mountain bike frame assembly Equivalent stress results from fluid forces and thermal gradients in a flow control valve Fluid velocity streamlines in a heat exchanger Current density in an IGBT package Equivalent stress results in a transmission assembly
  • 2. MKT0000133 Strength Analysis Static analysis with linear materials, large deflection analysis; bonded, no-separation, joints, rough, frictionless and frictional contact modeling Vibrations Modal Durability Stress-life and strain-life fatigue Thermal Steady-state thermal conduction, convection and radiation Fluids Steady-state, single phase flow; incompressible and compressible fluids; laminar, turbulent, and laminar/turbulent transition flows; polymer extrusion; conjugate heat transfer; fluid buoyancy effects; external radiation; flow pathlines (massless) Low Frequency Electromagnetics DC electric conduction; magnetostatics with linear and nonlinear magnetic materials Multiphysics One-way fluid-structure interaction, thermal-electric, thermal-stress, thermal-electric-stress, thermal-flow, magnetic-thermal, and magnetic-thermal-stress Automation and Customization Journaling and scripting, expressions, user interface extensions, solver command extensions, custom templates, and project wizards Design Exploration Design points, robust design and optimization Geometry Modeling and Meshing Direct model creation and editing; model import from all major CAD sources and neutral formats; parameterization of created and imported models; automatic, physics-aware tetrahedral and hexahedral meshing with optional size controls. ANSYS Multiphysics solutions help cross-functional engineering organizations predict the performance of complex products influenced by multiple physics and improve their designs through simulations of the interactions between physics. “For the simulation of different physical domains, for example structural mechanical simulation coupled with fluid mechanics, we have introduced ANSYS AIM simulation software because of its easy-to-use multiphysics coupling. Now our technicians and engineers with no special simulation knowledge are able to use multiphysics simulation in their daily work.” Richard Krellner, Director Design Division, Klubert + Schmidt ANSYS AIM is being developed on a rapid release cycle with several releases per year. These capabilities are current as of ANSYS AIM 17.1. ANSYS, Inc. www.ansys.com ansysinfo@ansys.com 866.267.9724 © 2016 ANSYS, Inc. All Rights Reserved.