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Turn Challenges Into Breakthroughs

Facing engineering challenges? Our experienced, innovative team can help transform obstacles into opportunities for growth. Reach out today and let’s create solutions together.

Student & Academic

Ansys for Students

Empowering tomorrow’s engineers with free simulation software, courses, tutorials, and a global support community.

Technology Trends

Driving the Future of Autonomy

Advancing autonomous vehicles requires both simulation and real-world testing. By combining innovation with proven expertise, we’re helping the industry create safer, more efficient mobility solutions.

Applications

Real-World Applications of Simulation

Discover how leading companies solve complex challenges with Ansys simulation—unlocking innovation across automotive, aerospace, energy, healthcare, and more.

Industries

Transforming Industries with Simulation

Ansys empowers industries to design smarter and innovate faster with advanced simulation—driving progress in automotive, aerospace, energy, healthcare, and beyond.

Service & Support

AnsysGPT: AI-Powered Support

A multilingual virtual assistant for commercial customers, AnsysGPT delivers 24/7 answers on products, physics, and engineering topics—securely and reliably.

Developer Portal

Supercharge Your Ansys Workflow with the Ansys App Catalog

Discover apps to expand your Ansys capabilities, streamline workflows, and solve problems faster. Built by Ansys and trusted partners.

Additive Processes

Powder Bed Fusion (PBF)

What is it? Powder Bed Fusion (PBF) is a metal additive manufacturing technology using a bed of powder with a source of heat to create metal parts.

How Ansys helps:

  1. Predict the part shape, distortion, and stresses before printing with distortion prediction & compensation capabilities.
  2. Auto-generate supports, helping you predict maximum residual stresses that supports must withstand.
  3. Melt pool, porosity & microstructure predictions for process parameter development.
  4. Best-in-class material properties for powerful analytics to establish the process property relationships.
  5. Structural and thermal analysis design validation.

Directed Energy Deposition (DED)

What is it? Directed Energy Deposition is a 3D manufacturing process that combines metal feedstock and a laser to fabricate parts.

How Ansys helps:

  1. Full part thermal mechanical process simulation.
  2. Macro level temperature, deformation, strain and stress prediction.
  3. Intelligent Gcode commands support.
  4. Customizable fidelity-cost balance.
  5. Non-planar baseplate compatibility.

Metal Sintering

What is it? Metal Sintering micro-welds powdered metals to form metal components.

How Ansys helps:

  1. Predict shrinkage and bending before printing.
  2. Auto-generate supports, helping you predict maximum residual stresses that supports must withstand.
  3. Get insight into how parts will behave during a build and take corrective steps to get the details right the first time.
  4. Best-in-class material properties to ensure traceability of additive manufacturing data.
  5. Check for distortion, stress, and strain regions, predict blade crash.

Students get free access to world-class simulation software. Connect with Ansys to explore how simulation can power your next breakthrough.