Cadfem SEA

Cadfem SEA CADFEM, pioneer of digital simulation based on the Finite Element Method (FEM) is a leading European

⚡ Is your EV battery innovation being slowed down by design complexity? Battery module and pack development demands the ...
05/08/2026

⚡ Is your EV battery innovation being slowed down by design complexity?

Battery module and pack development demands the right balance of performance, safety, weight, thermal efficiency, and compliance. Relying on physical prototypes alone can increase costs, extend development timelines, and limit design exploration.

With Ansys simulation, engineering teams can:
✔ Optimize battery thermal management and cooling
✔ Evaluate structural integrity under real-world conditions
✔ Analyze thermal runaway scenarios
✔ Perform virtual testing before physical prototypes
✔ Accelerate design optimization with confidence

Move beyond trial-and-error and make informed engineering decisions earlier in the development cycle—reducing risk, development time, and cost while delivering safer, more efficient battery systems.

How are you addressing battery design challenges in your EV development process? Share your thoughts in the comments.

Visit https://cadfem.ai/industries/automotive

Defy the impossible. Design with confidence. Reach the skies. Physics-driven simulation empowers engineers to innovate f...
04/08/2026

Defy the impossible. Design with confidence. Reach the skies.

Physics-driven simulation empowers engineers to innovate faster, reduce risk, and turn bold ideas into reality.

Industrial AI is entering its next phase—not just generating insights, but enabling intelligent systems to think, decide...
22/07/2026

Industrial AI is entering its next phase—not just generating insights, but enabling intelligent systems to think, decide, and act autonomously.

As Agentic AI and Physical AI converge, manufacturers are moving beyond isolated automation toward connected, autonomous operations. From engineering and production to robotics and digital workflows, AI is redefining how products are designed, validated, and manufactured.

At CADFEM, we're helping organizations build this future through simulation-driven digital engineering.

By combining Physics AI, AI-powered simulation, Digital Twins, Digital Mission Engineering, workflow automation, and intelligent engineering platforms, we enable businesses to:
✔ Accelerate engineering decisions with trusted simulation data
✔ Build predictive Digital Twin solutions
✔ Automate engineering workflows with AI
✔ Reduce development time while improving product quality
✔ Create the foundation for autonomous engineering and smart manufacturing

Industrial AI is most powerful when it's grounded in physics. By integrating simulation with AI, organizations can move from predictive insights to confident engineering decisions—unlocking greater speed, resilience, and innovation across the product lifecycle.

Swipe through the carousel to explore how Agentic AI and Physical AI are shaping the future of industrial engineering. To know more get in touch with us:

13/07/2026

Products don't fail when they're standing still, they fail when they're in motion.

In Episode 3 of TechTalk by CADFEM, Parthiva, Simulation Engineer at CADFEM India, discusses how Ansys Motion helps engineers understand the dynamic behaviour of mechanical systems long before physical prototypes are built.

The session explores how multibody dynamics simulation enables organizations to analyze motion, force transmission, vibration, and system performance across applications including automotive, industrial equipment, robotics, aerospace, and defence.

As engineering systems become increasingly complex, simulation-driven motion analysis is helping teams reduce development risks, optimize designs, and accelerate innovation with greater confidence.

🎥 Watch Episode 3 to discover how CADFEM is enabling smarter engineering through multibody dynamics simulation.

🚁 From Lift to Flight: Aerodynamic Optimization of Drones As UAVs continue to transform industries—from aerospace and de...
08/07/2026

🚁 From Lift to Flight: Aerodynamic Optimization of Drones

As UAVs continue to transform industries—from aerospace and defence to logistics, agriculture, and infrastructure inspection—optimizing aerodynamic performance has become essential for achieving greater efficiency, stability, and endurance.

Join our upcoming webinar to explore how Ansys simulation enables engineers to virtually evaluate and optimize drone designs, reducing reliance on physical prototypes while accelerating innovation.

📅 14 July 2026
🕚 11:00 AM – 12:00 PM IST
💻 Online
🎙️ Speaker: Kaushik Chavali

Key Takeaways:

✈️ Understand the aerodynamic principles behind UAV performance and flight stability.

⚙️ Learn how topology and material optimization contribute to lightweight, high-performance drone designs.

📈 Discover how simulation accelerates design validation, reduces development costs, and shortens time-to-market.

Who Should Attend?
R&D Heads | CTOs | Directors | Domain Experts

Industries: Aerospace & Defence | High-Tech

Register now and discover how simulation is shaping the future of drone engineering

https://cadfem.ai/resources/from-lift-to-flight-aerodynamic-optimization-of-drones

08/07/2026

Designing next-generation wireless infrastructure requires extreme precision at the component level before scaling to system deployment.

In this brief technical overview, we walk through the end-to-end design, optimization, and phase-shifting analysis of a Reconfigurable Intelligent Surface (RIS) operating at 28 GHz using Ansys HFSS.

This snippet provides a quick look into advanced beamforming workflow automation. Eager to dive deeper into the complete design methodology, tuning physics, and smart city infrastructure applications?

📺 Watch the full, unabridged webinar here: https://cadfem.ai/resources/smart-environments-designing-reconfigurable-intelligent-surfaces-ris-to-eliminate-6g-blind-spots

Don’t miss out! Book NOW and save 25% 🌍 The CADFEM World Conference is your gateway to mastering simulation and digital ...
07/07/2026

Don’t miss out! Book NOW and save 25%

🌍 The CADFEM World Conference is your gateway to mastering simulation and digital engineering.

Join us for 2.5 days with insights, innovation, networking:

Top Keynotes 👉 Decision-makers from industry and software development on the
megatrends of digital transformation…

Meet the Developers 👉 Direct exchange with leading Synopsys developers…

Expert Sessions 👉 Deep dives into physics-based simulation and digital engineering processes…

Secure your ticket now and get access to cutting-edge knowledge for your everyday work, featuring six keynotes, 12 dedicated sessions and over 100 presentations:

https://www.cadfem.net/en/cadfem-informs/events/cadfem-world-conference.html?c_red=1&utm_source=linkedin&utm_medium=social&utm_campaign=event_world-conference-2026&utm_content=event_conference.darmstadt_cadfem-group&utm_term=generic

How many CFD simulations does it take to evaluate the next aerodynamic design? Traditionally, every geometry change requ...
06/07/2026

How many CFD simulations does it take to evaluate the next aerodynamic design?

Traditionally, every geometry change requires a new simulation, adding significant computational cost and slowing down design exploration.

But what if engineers could predict aerodynamic performance in seconds instead of hours?

In this example, a Physics AI model was trained using just 45 aerodynamic simulations and is able to predict full pressure fields for new vehicle designs in less than 10 seconds, achieving a mean relative error of only 3.1%.

The result?
✔ Faster aerodynamic evaluation
✔ Rapid exploration of design alternatives
✔ Reduced dependence on repetitive CFD runs
✔ Accelerated path to optimized vehicle performance

As product development cycles continue to shrink, the combination of simulation and AI is enabling engineers to move from analysis-driven design to prediction-driven engineering.

Swipe through to see how Physics AI is transforming aerodynamic design workflows.

To know more visit: https://cadfem.ai/products/ai/

Today's engineering students won't just design vehicles, they'll develop the technologies that power, monitor, and optim...
02/07/2026

Today's engineering students won't just design vehicles, they'll develop the technologies that power, monitor, and optimize them.

As electrification reshapes the automotive landscape, universities have an opportunity to equip students with the skills needed to tackle complex multidisciplinary challenges and contribute meaningfully to the future of transportation.

How are educational institutions preparing the next generation of mobility innovators?

We are committed to bridging the gap between academia and industry by enabling students and researchers to explore real-world engineering challenges through simulation-driven learning and innovation.

When a rotating machine spins at thousands of RPM, where do you think the highest stress occurs? Most would assume it's ...
01/07/2026

When a rotating machine spins at thousands of RPM, where do you think the highest stress occurs?

Most would assume it's at the outer edge, where centrifugal forces are the greatest. But engineering often tells a different story.

In our latest blog, we explore how static structural analysis can be used to accurately evaluate centrifugal stresses in rotating components, validate results against theoretical calculations, and assess resonance risks through modal analysis—all before a physical prototype is built.

Key takeaways:
✔ Understanding centrifugal stress distribution in rotating components
✔ Why maximum stress may not occur where maximum force acts
✔ Validation of simulation results using analytical calculations
✔ Identifying potential resonance risks through modal analysis
✔ Improving reliability and performance through simulation-driven design

As rotating machinery continues to play a critical role across industries, virtual validation is becoming essential for ensuring safety, durability, and operational performance.

📖 Read the blog by Wakar Ali Mohammad Khan and discover how simulation helps engineers make smarter design decisions before the machine ever starts rotating.

https://cadfem.ai/blog/centrifugal-stress-analysis-ansys-mechanical

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CADFEM SEA Pte. Ltd. , 2 Venture Drive, #06-17 Vision Exchange
Singapore
608526

Opening Hours

Monday 09:00 - 18:00
Tuesday 09:00 - 18:00
Wednesday 09:00 - 18:00
Thursday 09:00 - 18:00
Friday 09:00 - 18:00

Telephone

+6565728886

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